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POCCO, M. A. R. T. I. N. A. E., GUZMÁN, N. O. E. L. I. A., PLISCHUK, S. A. N. T. I. A. G. O., CONFALONIERI, V. I. V. I. A. N. A., LANGE, C. A. R. L. O. S. E., and CIGLIANO, MARÍA M. A. R. T. A.
Systematic Entomology . Apr2018, Vol. 43 Issue 2, p290-307. 18p.
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BIODIVERSITY, GRASSHOPPER behavior, BIOMES, PHYLOGENY, and SPECIES distribution
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Abstract: The open vegetation biomes, within the limits of the Chacoan subregion, occur along a diagonal in eastern South America covering a large range of environmental conditions. In order to contribute to the knowledge on the biodiversity of these open biomes, we analysed the phylogenetic relationships of the grasshopper genus Zoniopoda to the remaining South American Romaleinae, and examined the biogeographical patterns of diversification of the genus. The study is based on morphological and molecular (COI and H3) evidence, including 12 species of Zoniopoda and 17 species of four tribes of South American Romaleinae. We describe a new species of Zoniopoda, and test its taxonomic placement within the group. Results of our phylogenetic analyses recovered Zoniopoda as a monophyletic group with high support values. According to the dispersion–vicariance analysis, the ancestor of Zoniopoda may have been distributed in an area corresponding to the Chacoan and Cerrado provinces. A vicariant event, that could be explained by the uplift of the Brazilian Plateau and the subsidence of the Chaco, is hypothesized to have occurred splitting the ancestral distribution of Zoniopoda, resulting in the independent evolution of the Tarsata group within the Cerrado and the Iheringi group in the Chacoan subregion. This published work has been registered in ZooBank, http://zoobank.org/urn:lsid:zoobank.org:act:FCFB4C5D-1741-46F1-8E25-B37ED2B9D872. [ABSTRACT FROM AUTHOR]
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Edghill, E. L., Stals, K., Oram, R. A., Shepherd, M. H., Hattersley, A. T., and Ellard, S.
Diabetic Medicine . Jan2013, Vol. 30 Issue 1, p114-117. 4p.
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Edghill, E. L., Stals, K., Oram, R. A., Shepherd, M. H., Hattersley, A. T., and Ellard, S.
Diabetic Medicine . Jan2013, Vol. 30 Issue 1, p114-117. 4p. 1 Diagram.
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DIAGNOSIS of diabetes, KIDNEY disease diagnosis, LIVER, GENETIC polymorphisms, GENETICS, BIOLOGICAL mutation, and ANATOMY
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Diabet. Med. 30, 114-117 (2013) Abstract Aims Hepatocyte nuclear factor 1β ( HNF1B) mutations cause a syndrome of renal cysts and diabetes, with whole gene deletions accounting for approximately 50% of cases. The severity of the renal phenotype is variable, from enlarged cystic kidneys incompatible with life to normal renal development and function. We investigated the prevalence of HNF1B deletions in patients with diabetes but no known renal disease. Methods We tested 461 patients with familial diabetes diagnosed before 45 years, including 258 probands who met clinical criteria for maturity-onset diabetes of the young (two generations affected and at least one family member diagnosed under 25 years). A fluorescent polymerase chain reaction assay was used to analyse two intragenic polymorphic HNF1B markers and identify heterozygous patients who therefore did not have whole gene deletions. Those patients homozygous for both markers were then tested for an HNF1B deletion using multiplex ligation-dependent probe amplification. Results Heterozygous HNF1B intragenic polymorphisms were identified in 337/461 subjects. Multiplex ligation-dependent probe amplification analysis showed an HNF1B gene deletion in three of the remaining 124 probands, all of whom met the criteria for maturity-onset diabetes of the young. Testing of their relatives identified three additional deletion carriers and ultrasound scanning showed renal developmental abnormalities in three of these six patients. Conclusions We estimate that HNF1B mutations account for < 1% of cases of maturity-onset diabetes of the young. Although HNF1B mutations are a rare cause of diabetes in the absence of known renal disease, a genetic diagnosis of renal cysts and diabetes syndrome is important as it raises the possibility of subclinical renal disease and the 50% risk of renal cysts and diabetes syndrome in the patient's offspring. [ABSTRACT FROM AUTHOR]
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Davey, M.W., Stals, E., Panis, B., Keulemans, J., and Swennen, R.L.
Analytical Biochemistry . Dec2005, Vol. 347 Issue 2, p201-207. 7p.
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MALONDIALDEHYDE, PEROXIDATION, CRYOBIOLOGY, and ALCOHOLS (Chemical class)
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Abstract: Malondialdehyde (MDA) is a widely used marker of oxidative lipid injury whose concentration varies in response to biotic and abiotic stress. Commonly, MDA is quantified as a strong light-absorbing and fluorescing adduct following reaction with thiobarbituric acid (TBA). However, plant tissues in particular contain many compounds that potentially interfere with this reaction and whose concentrations also vary according to the tissue type and stress conditions. As part of our studies into the stress responses of plant tissues, we were interested in developing a rapid, accurate, and robust protocol for MDA analysis using reverse-phased HPLC to avoid these problems with reaction specificity. We demonstrate that a partitioning step into n-butanol during sample preparation is essential and that gradient HPLC analysis is necessary to prevent sample carryover between injections. Furthermore, the starting composition of the mobile phase must be sufficiently hydrophobic to allow direct injection of the n-butanol extracts without peak splitting, tailing, and other artifacts. To minimize analysis times, we used a short, so-called “Rocket” HPLC column and high flow rates. The optimized HPLC separation has a turnaround time of 2.5min per sample. Butanolic extracts of MDA(TBA)2 were stable for at least 48h, and recoveries were linear between 0.38 and 7.5pmol MDA added. Importantly, this procedure proved to be compatible with existing extraction procedures for l-ascorbate and glutathione analysis in different plant species, allowing multiple “stress metabolite” analyses to be carried out on a single tissue extract. [Copyright &y& Elsevier]
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Ferguson, M. E., Berro, A. M., Lindenmayer, J. C., Singleton, C., and Royer, T. A.
Southwestern Entomologist . Mar2020, Vol. 45 Issue 1, p17-30. 14p.
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TAMARISKS, ASSASSIN bugs, LIFE history, PREDATORY animals, BODY size, and NATURAL history
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The harpactorine assassin bug, Zelus tetracanthus (Stål) (Hemiptera: Reduviidae), is an insect predator frequently found in surveys of saltcedar (Tamarix spp.) in Oklahoma. Previous studies in a laboratory showed it could prey on Diorhabda carinulata (Desbrochers) (Coleoptera: Chrysomelidae), a recently introduced biological control agent for Tamarix. An F2 cohort of Z. tetracanthus was reared from egg to adult to measure stage-specific development rates and describe immature stages at 22 ± 1.0°C and 16:8 light:dark hours. The mean times for development of the five instars were 6.96 ± 0.13, 5.18 ± 0.13, 6.94 ± 0.29, 10.92 ± 0.43, and 17.93 ± 0.76 days, respectively. Several anatomical characters to distinguish instars, including body size, body color, and select morphological characters were described. Data from museum collections of Z. tetracanthus suggested the insect has a univoltine life cycle. The development data contrast with a previous description of Z. socius (= Z. tetracanthus) and illustrate the need to further study the variable morphology, natural history, and genetic makeup of the species. [ABSTRACT FROM AUTHOR]
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Tillman, P. Glynn, Cottrell, Ted E., and Buntin, G. David
Florida Entomologist . Apr2019, Vol. 102 Issue 1, p222-226. 5p.
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MELIACEAE, HOST plants, HEMIPTERA, STINKBUGS, and INSECT antifeedants
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Currently, the invasive brown marmorated stink bug, Halyomorpha halys (Stål) (Hemiptera: Pentatomidae), is considered an agricultural and nuisance pest in Georgia. The invasive chinaberry tree, Melia azedarach L. (Meliaceae), commonly grows in dense thickets along roadsides, and in woodlands adjacent to agricultural crops across the southeastern USA. Thus, the objective of this study was to determine the potential of M. azedarach to serve as a host plant of H. halys by examining mortality and feeding of first and second instars on M. azedarach leaves vs. carrot (i.e., a control diet), and documenting presence of H. halys on M. azedarach in woodlands at 2 locations in Georgia where this stink bug has become established. Over all sampling dates and locations, the number of H. halys in chinaberry was very low (0.1 per tree), and only 3 late instars and 1 adult were observed feeding on M. azedarach at 1 field site late in the season. Percentage feeding by second instars of H. halys was lower for individuals given M. azedarach leaves vs. those provided with carrot, most likely indicating that compounds in M. azedarach have an antifeeding effect. In fact, mortality for second instars on M. azedarach leaves was very high, and thus we conclude that M. azedarach is an unsuitable host plant for H. halys. [ABSTRACT FROM AUTHOR]
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Zhi-Hui ZHAN, Akane MATSUO, and Chul-Sa KIM
Journal of Pesticide Science . 2016, Vol. 41 Issue 4, p163-166. 4p. 5 Black and White Photographs, 1 Graph.
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STIMULANTS, LEAFHOPPERS, RICE diseases & pests, BIOLOGICAL assay, and METHANOL
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A crude rice extract caused a higher probing response than did the control in the green rice leafhopper, Nephotettix nigropictus. Bioassay-guided separation led to the isolation of four active compounds, isoscoparin 2"-O-glucoside, isoscoparin 2"-O-(6"'-(E)-feruloyl)glucoside, isoscoparin 2"-O-(6"'-(E)-p-coumaroyl)glucoside, and isovitexin 2"-O-(6"'- (E)-feruloyl)glucoside from ODS 40% methanol in water faction. Each of the compounds, or any combination without one of the four compounds, caused weaker probing responses than the crude rice extract. The activity was recovered only when all the compounds were combined. [ABSTRACT FROM AUTHOR]
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Withers, Toni M., Allen, Geoff R., Todoroki, Christine L., Pugh, Andrew R., and Gresham, Belinda A.
Entomologia Experimentalis et Applicata . Jan2021, Vol. 169 Issue 1, p97-110. 14p.
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BIOLOGICAL weed control, BIOLOGICAL pest control agents, CHRYSOMELIDAE, BEETLES, HYMENOPTERA, and EUCALYPTUS
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The solitary larval endoparasitoid Eadya daenerys Ridenbaugh (Hymenoptera: Braconidae) is a proposed biocontrol agent of Paropsis charybdis Stål (Coleoptera: Chrysomelidae, Chrysomelinae), a pest of eucalypts in New Zealand. Eadya daenerys oviposition behaviour was examined in two assay types during host range testing, with the aim of improving ecological host range prediction. No‐choice sequential and two‐choice behavioural observations were undertaken against nine closely related species of New Zealand non‐target beetle larvae, including a native beetle, introduced weed biocontrol agents, and invasive paropsine beetles. No behavioural measure was significantly different between no‐choice and two‐choice tests. In sequential no‐choice assays the order of first presentation (target–non‐target) had no significant effect on the median number of attacks or the attack rate while on the plant. Beetle species was the most important factor. Parasitoids expressed significantly lower on‐plant attack rates against non‐targets compared to target P. charybdis larvae. The median number of attacks was always higher towards target larvae than towards non‐target larvae, except for the phylogenetically closest related non‐target Trachymela sloanei (Blackburn) (Coleoptera: Chrysomelidae, Chrysomelinae). Most non‐target larvae were disregarded upon contact, which suggests that the infrequent attack behaviour observed by two individual E. daenerys against Allocharis nr. tarsalis larvae in two‐choice tests and the frass of Chrysolina abchasica (Weise) was probably abnormal host selection behaviour. Results indicate that E. daenerys is unlikely to attack non‐target species apart from Eucalyptus‐feeding invasive paropsines (Chrysomelinae). Non‐lethal negative impacts upon less preferred non‐target larvae are possible if E. daenerys does attack them in the field; however, this is likely to be rare. [ABSTRACT FROM AUTHOR]
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Assefa, Yoseph, Tiroesele, Bamphitlhi, Segwagwe, Amogelang, and Madisa, Mogapi E.
African Journal of Ecology . Sep2015, Vol. 53 Issue 3, p381-384. 4p.
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LANTANA camara, ORNAMENTAL plants, BIOSAFETY, QUARANTINE, ECOSYSTEM dynamics, NATURALIZATION, and WEEDS
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The article presents a research focused on analyzing the status of ornamental plant lantana camara that grows in the urban areas and also discusses its implication on the biosafety and quarantine of the region. Various topics discussed in the research includes natural enemies of lantana, natural ecosystem of Botswana and impact of naturalization on weed removal.
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Balachiranjeevi, C. H., Prahalada, G. D., Mahender, A., Jamaloddin, Md., Sevilla, M. A. L., Marfori-Nazarea, C. M., Vinarao, R., Sushanto, U., Baehaki, S. E., Li, Z. K., and Ali, J.
Euphytica . Nov2019, Vol. 215 Issue 11, pN.PAG-N.PAG. 1p.
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NILAPARVATA lugens, RICE, INSECT pests, SINGLE nucleotide polymorphisms, FOOD crops, and IDENTIFICATION
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Rice is the most important staple food crop, and it feeds more than half of the world population. Brown planthopper (BPH) is a major insect pest of rice that causes 20–80% yield loss through direct and indirect damage. The identification and use of BPH resistance genes can efficiently manage BPH. A molecular marker-based genetic analysis of BPH resistance was carried out using 101 BC1F5 mapping population derived from a cross between a BPH-resistant indica variety Khazar and an elite BPH-susceptible line Huang–Huan–Zhan. The genetic analysis indicated the existence of Mendelian segregation for BPH resistance. A total of 702 high-quality polymorphic single nucleotide polymorphism (SNP) markers, genotypic data, and precisely estimated BPH scores were used for molecular mapping, which resulted in the identification of the BPH38(t) locus on the long arm of chromosome 1 between SNP markers 693,369 and id 10,112,165 of 496.2 kb in size with LOD of 20.53 and phenotypic variation explained of 35.91%. A total of 71 candidate genes were predicted in the detected locus. Among these candidate genes, LOC_Os01g37260 was found to belong to the FBXL class of F-box protein possessing the LRR domain, which is reported to be involved in biotic stress resistance. Furthermore, background analysis and phenotypic selection resulted in the identification of introgression lines (ILs) possessing at least 90% recurrent parent genome recovery and showing superior performance for several agro-morphological traits. The BPH resistance locus and ILs identified in the present study will be useful in marker-assisted BPH resistance breeding programs. [ABSTRACT FROM AUTHOR]
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Roell, Talita, Winter, Ingrid C., Asipuela, René, and Campos, Luiz A.
CheckList . 2017, Vol. 13 Issue 2, p1-9. 9p.
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HEMIPTERA and STINKBUGS
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The Neotropical genus Lincus Stål, 1867 is frequently associated with the transmission of diseases to palms and coconut trees (Elaeis guineensis and Cocos nucifera) in commercial plantations in South America. Here we update the geographical distribution of 15 species of Lincus collected in E. guineensis and C. nucifera in the Neotropics. The geographical range of five species is expanded with new countries recorded for L. malevolus and L. styliger, and detailed geographic information is given for the first time for L. lobuliger and L. securiger. [ABSTRACT FROM AUTHOR]
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BUENO, V. H. P., CALIXTO, A. M., MONTES, F. C., and VAN LENTEREN, J. C.
Israel Journal of Entomology . 2018, Vol. 48 Issue 2, p1-22. 22p.
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MIRIDAE, EGGS as food, PREDATORY animals, TEMPERATURE effect, and MEDITERRANEAN flour moth
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Three Neotropical predators Campyloneuropsis infumatus (Carvalho), Engytatus varians (Distant) and Macrolophus basicornis (Stål) (Hemiptera: Miridae) are considered in Brazil as potential biological control agents of Tuta absoluta Meyrick (Lepidoptera: Gelechiidae) and other tomato pests. This study evaluated the effect of five constant temperatures (16, 20, 24, 28 and 32°C, all ±1°C) on the reproduction, population growth and longevity of these predatory mirids. Adults freshly emerged from nymphs reared at each temperature, were separated in couples and kept in 1.7 l glass pots with tobacco plant seedlings (Nicotiana tabacum L., cv. TNN) as oviposition substrate and ad libitum Ephestia kuehniella (Zeller) (Lepidoptera: Pyralidae) eggs as food. The shortest pre-oviposition and the longest oviposition periods were observed at 24°C and 28°C in all three mirid species. At 24°C all three species showed the highest daily and total fecundities. The population growth parameters represented by the intrinsic rate of increase (rm) and the finite rate of increase (λ) were highest at 24°C and 28°C, and the net reproductive rate (R0) was highest at 24°C for all three species. Longevities of both males and females were longest at 24°C and 28°C in all three mirids. The size of tibia and adult weight in the three species were greatest at 20°C and 28°C, respectively. Differences in values for all above variables were small and often statistically non-significant for the three mirid species at the same temperature. Also, not a single significant difference was found for any of the growth parameters at each of the temperatures, including rm. The results indicate that temperatures in the range from 24-28°C are best for reproduction and population growth of C. infumatus, E. varians and M. basicornis. The factitious prey E. kuehniella is an excellent food source and tobacco plants provide a good rearing substrate for these mirids. The obtained results may assist in developing a mass rearing method for C. infumatus, E. varians and M. basicornis, in determining optimal timing and frequency of mirid releases in the crop, and in determining whether they are active at the temperature spectrum observed during tomato production in the field or greenhouse. [ABSTRACT FROM AUTHOR]
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Melo Machado, R.C., Sant'Ana, J., Blassioli-Moraes, M.C., Laumann, R.A., and Borges, M.
Bulletin of Entomological Research . Jun2014, Vol. 104 Issue 3, p347-356. 10p.
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HEMIPTERA, ORYZA, PARASITOIDS, RICE, PLANTING, STINKBUGS, and PARASITES
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The rice stem bug, Tibraca limbativentris Stal. (Hemiptera: Pentatomidae) is one of the most important pests of rice crops, especially irrigated crops. Plant defence strategies against these bugs may involve the emission of chemical compounds, which are released following herbivore attacks, directly or indirectly harming pest performance. The aim of this study was to evaluate the influence of constitutive and herbivory-induced volatiles from rice plants (Oryza sativa L.) on the behavioural responses of T. limbativentris adults and egg parasitoids Trissolcus basalis (Wollaston) and Telenomus podisi (Ashmead) (Hymenoptera, Platygastridae). Plant volatiles were collected from undamaged plants of the rice cultivar IRGA 424 and from plants that suffered herbivory by five males or five females of T. limbativentris. Air-entrainment extracts were analysed by GC–flame ionization detector and GC–MS, and insect responses evaluated in a ‘Y’ olfactometer. T. limbativentris feeding damaged on rice plants induced the release of 16 volatiles compounds in a higher amounts compared to undamaged plants The main compounds induced were (E)-2-hexenal, (E)-2-octen-1-ol, methyl salicylate and α-muurolene. Female bugs were significantly attracted to air-entrainment extracts containing volatiles from undamaged plants compared with air-entrainment extracts containing volatiles emitted from plants damaged by T. limbativentris, whereas males showed no preference. Telenomus podisi females were significantly attracted to volatiles from air-entrainment extracts of plants damaged by females, whereas T. basalis showed no preference. These results suggest that rice plants may be emitting defence compounds, which could be avoided by T. limbativentris females and also acted indirectly by attracting natural enemies. [ABSTRACT FROM AUTHOR]
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Zhang, Q.‐H., Schneidmiller, R. G., Hoover, D. R., Zhou, G., Margaryan, A., and Bryant, P.
Journal of Applied Entomology . Aug2014, Vol. 138 Issue 7, p490-499. 10p.
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ESSENTIAL oils, REPELLENTS, STINKBUGS, HEMIPTERA, LEMONGRASS oil, SPEARMINT oil, and METHYL benzoate
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The brown marmorated stink bug ( BMSB), Halyomorpha halys ( Stål), native to Northeastern Asia, is a serious invasive pest in the United States, Canada, Switzerland, Germany and France. Several common essential oils and their compositions were tested against BMSBs as potential repellents. All the tested individual essential oils and a ternary oil blend showed significant repellency to both BMSB nymphs and adults. Clove oil, lemongrass oil, spearmint oil, ylang-ylang oil, and the ternary oil mixture (clove, lemongrass and spearmint) almost completely blocked attraction of BMSBs to the stink bug attractant-baited traps; whereas wintergreen oil, geranium oil, pennyroyal oil and rosemary oil resulted in 60-85% trap catch reductions. Over 20 BMSB antennally active compounds were identified from SPME headspace samples of the eight repellent essential oils using GC- EAD and GC- MS techniques. Among the synthetic EAD-active compounds tested in the field, eugenol, l-carvone, p/l-menthone, pulegone, methyl salicylate, trans/ cis-citral, methyl benzoate and β-caryophyllene significantly reduced trap catches of BMSBs by 72-99%; these compounds are likely responsible for the repellency of their corresponding essential oils. Surprisingly, a synthetic mixture of the predacious spined soldier bug ( SSB) [ Podisus maculiventris (Say)] aggregation pheromone ( trans-2-hexenal, α-terpineol and benzyl alcohol) also showed a significant inhibition of BMSB response to its attractants. These repellent essential oils and their active compounds, as well as the synthetic SSB pheromone, are potentially useful as part of an efficient, environmentally sound semiochemical-based IPM programme to combat this serious invasive stink bug. [ABSTRACT FROM AUTHOR]
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Koona, P., Osisanya, E. O., Lajide, L., Jackai, L. E. N., and Tamo, M.
Journal of Applied Entomology . Jun2003, Vol. 127 Issue 5, p293. 6p.
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PLANT chemical defenses, VIGNA, and COREIDAE
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The effects of secondary metabolites in different Vigna species on the development of Clavigralla tomentosicollis were investigated in an artificial seed system using different fractions of crude pod extracts, while the orientation response of this pod-bug to volatile extracts was studied using a dual-choice olfactometer. Feeding on the neutral fraction extracts, in contrast to the basic and acidic fractions, resulted in significantly higher mortalities, longer total developmental time, and lower growth index of the insects in comparison with controls. All volatile extracts elicited an avoidance reaction by C. tomentosicollis, except the volatile from the susceptible genotype IT84S-2246 which generally attracted as many insects as controls. Extracts from wild Vigna species showed higher activity than those from their cultivated relatives. The present study which has established that most secondary metabolites in cowpea pods were localized in the neutral fraction of the crude extract, could facilitate experiments on the separation and characterization of the toxic factors involved. [ABSTRACT FROM AUTHOR]
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Conti, Eric, Avila, Gonzalo, Barratt, Barbara, Cingolani, Fernanda, Colazza, Stefano, Guarino, Salvatore, Hoelmer, Kim, Laumann, Raul Alberto, Maistrello, Lara, Martel, Guillaume, Peri, Ezio, Rodriguez‐Saona, Cesar, Rondoni, Gabriele, Rostás, Michael, Roversi, Pio Federico, Sforza, René F.H., Tavella, Luciana, and Wajnberg, Eric
Entomologia Experimentalis et Applicata . Jan2021, Vol. 169 Issue 1, p28-51. 24p.
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STINKBUGS, BROWN marmorated stink bug, BIOLOGICAL control of insects, HEMIPTERA, BIOLOGICAL pest control agents, BIOLOGICAL pest control, and INTEGRATED pest control
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Invasive stink bugs (Hemiptera: Pentatomidae) are responsible for high economic losses to agriculture on a global scale. The most important species, dating from recent to old invasions, include Bagrada hilaris (Burmeister), Halyomorpha halys (Stål), Piezodorus guildinii (Westwood), Nezara viridula (L.), and Murgantia histrionica (Hahn). Bagrada hilaris, H. halys, and N. viridula are now almost globally distributed. Biological control of these pests faces a complex set of challenges that must be addressed to maintain pest populations below the economic injury level. Several case studies of classical and conservation biological control of invasive stink bugs are reported here. The most common parasitoids in their geographical area of origin are egg parasitoids (Hymenoptera: Scelionidae, Encyrtidae, and Eupelmidae). Additionally, native parasitoids of adult stink bugs (Diptera: Tachinidae) have in some cases adapted to the novel hosts in the invaded area and native predators are known to prey on the various instars. Improving the efficacy of biocontrol agents is possible through conservation biological control techniques and exploitation of their chemical ecology. Moreover, integration of biological control with other techniques, such as behavioural manipulation of adult stink bugs and plant resistance, may be a sustainable pest control method within organic farming and integrated pest management programs. However, additional field studies are needed to verify the efficacy of these novel methods and transfer them from research to application. [ABSTRACT FROM AUTHOR]
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Arellano, Rubí, Medal, Julio, Arellano, Gregorio, and Pérez, Juan
Florida Entomologist . Sep2019, Vol. 102 Issue 3, p658-569. 2p.
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BROWN marmorated stink bug, STINKBUGS, HEMIPTERA, BIOLOGICAL control of insects, and PHYSIOLOGICAL control systems
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The Florida predatory stink bug, Euthyrhynchus floridanus L. (Hemiptera: Pentatomidae), is a generalist predator native to North America that feeds on a broad range of lepidopterous and heteropterous key pests in a great diversity of crops and non-crop situations. Feeding tests conducted in the laboratory to determine the most susceptible stage of the brown marmorated stink bug, Halyomorpha halys (Stål) (Hemiptera: Pentatomidae), to third nymphal instar, and male and female E. floridanus, indicated that this predator has great potential for biological control of H. halys nymphs and adult stages. [ABSTRACT FROM AUTHOR]
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van Lenteren, J.C., Bueno, V.H.P., Burgio, G., Lanzoni, A., Montes, F.C., Silva, D.B., de Jong, P.W., and Hemerik, L.
Bulletin of Entomological Research . Dec2019, Vol. 109 Issue 6, p812-820. 9p.
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BIOLOGICAL control systems, BIOLOGICAL pest control, PEST control, PESTS, TOMATOES, and SPECIES pools
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Tuta absoluta (Meyrick), a key pest of tomato, is quickly spreading over the world and biological control is considered as one of the control options. Worldwide more than 160 species of natural enemies are associated with this pest, and an important challenge is to quickly find an effective biocontrol agent from this pool of candidate species. Evaluation criteria for control agents are presented, with the advantages they offer for separating potentially useful natural enemies from less promising ones. Next, an aggregate parameter for ranking agents is proposed: the pest kill rate k m. We explain why the predator's intrinsic rate of increase cannot be used for comparing the control potential of predators or parasitoids, while k m can be used to compare both types of natural enemies. As an example, kill rates for males, females and both sexes combined of three Neotropical mirid species (Campyloneuropsis infumatus (Carvalho), Engytatus varians (Distant) and Macrolophus basicornis (Stål)) were determined, taking all life-history data (developmental times, survival rates, total nymphal and adult predation, sex ratios and adult lifespan) into account. Based on the value for the intrinsic rate of increase (r m) for T. absoluta and for the kill rate k m of the predators, we predict that all three predators are potentially able to control the pest, because their k m values are all higher than the r m of the pest. Using only k m values, we conclude that E. varians is the best candidate for control of T. absoluta on tomato, with C. infumatus ranking second and M. basicornis last. [ABSTRACT FROM AUTHOR]
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Wan, Pin-Jun, Tang, Yao-Hua, Yuan, San-Yue, Wang, Wei-Xia, Lai, Feng-Xiang, Yu, Xiao-Ping, and Fu, Qiang
Amino Acids . Nov2016, Vol. 48 Issue 11, p2605-2617. 13p.
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NILAPARVATA lugens, PHOSPHORIBOSYLTRANSFERASES, HISTIDINE, PROTEIN synthesis, and MESSENGER RNA
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Histidine is an essential amino acid assumed to be synthesized by an obligatory yeast-like symbiont ( Entomomyces delphacidicola str. NLU) in Nilaparvata lugens, an important rice pest. The adenosine-triphosphate phosphoribosyltransferase (ATP-PRTase) facilities the committed first step of the histidine biosynthesis pathway. In the current study, a putative ATP- PRTase was cloned and verified to be of E. delphacidicola origin ( EdePRTase). The expression of the gene was spatial and temporal universal with a profile that matched the distribution of the fungal symbiont. RNA interference aided the knockdown of the EdePRTase-suppressed EdePRTase expression by 32-48 %. Hemolymph histidine level was also reduced followed by significant reduction of adult body weight. However, other performance characters including nymph development, survival, and adult sex ratio were not adversely affected by the knockdown. Furthermore, forced histidine exposure (through injection or feeding) significantly inhibited the EdePRTase mRNA levels at higher concentrations, but significantly increased EdePRTase expression levels at lower concentrations (feeding only). The significance of these findings support that the EdePRTase is from symbiont E. delphacidicola, and its involvement in histidine biosynthesis of N. lugens was discussed. The results provide a better understanding of EdePRTase and the encoded functional ATP-PRTase enzyme regulation in N. lugens and insects in general. [ABSTRACT FROM AUTHOR]
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SOTO-VIVAS, Ana, LIRIA, Jonathan, and DE LUNA, EfraÍn
Acta Zoológica Mexicana . 2011, Vol. 27 Issue 1, p87-102. 16p. 1 Black and White Photograph, 1 Diagram, 2 Charts, 1 Graph.
- Subjects
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RHODNIUS, CONENOSES, CLASSIFICATION of insects, and SPECIES diversity
- Abstract
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Tribe Rhodniini includes Rhodnius Stål and Psammolestes Bergroth. Enzymatic and molecular evidence suggest the tribe is monophyletic. Most species are wild, living in palms and bird nests. Traditionally both genera were considered related; nevertheless, molecular studies don't support the Rhodnius monophyly. The goal was to phylogenetically analyze morphometric variation in wing architecture in support of Rhodniini taxonomy and systematics. We photographed 524 wings of five representatives of Rhodniini: Psammolestes arthuri (Pinto) (n = 89), Rhodnius pictipes Stål (n = 21), R. robustus Larrousse (n = 24), R. prolixus Stål (n = 16), and R. neivai Lent (n = 22). As outgroups we studied four representatives of Triatomini: Eratyrus mucronatus Stål (n = 15), Panstrongylus rufotuberculatus (Champion) (n = 45), P. geniculatus (Latreille) (n = 183), and Triatoma maculata (Erichson) (n = 109). Landmark coordinate (x, y) configurations were registered and aligned by Generalized Procrustes Analysis. Covariance Analyses were implemented with proportions of re-classified groups and MANOVA. Then, wing shape variables (confidence intervals from relative warps) and centroid size were cladistically analysed. Statistical analyses of variance found not significant differences in wing isometric size (Kruskal-Wallis) among P. arthuri-R. neivai-R. pictipes; R. robustus-R. prolixus-T. maculata and between P. rufotuberculatus-P. geniculatus. The a posteriori re-classification was perfect in E. mucrunatus 100% and R. pictipes, followed by T. maculata 96%, R. neivai 95%, P arthuri 93.2%; R. prolixus 87.5%, P. geniculatus 87.4%, P. rufotuberculatus 84.4%, and R. robustus 76%. Cladistic analyses under parsimony selected two most parsimonious trees (L=4.461 IC=0.973 and IR=0.979), where the strict consensus showed a monophyletic group with Panstrongylus (rufotuberculatus + geniculatus) and Triatoma + Rhodniini (Rhodinus + Psammolestes), but internally it shows the paraphyly of Rhodnius regarding Psammolestes. The congruence between these results and previous molecular analyses in Rhodniini, reveal the phylogenetic information of our morphometric characters as support to systematic studies, allowing the combination of geometric morphometrics and phylogenetic methods for the first time in this group. [ABSTRACT FROM AUTHOR]
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