Results 151 to 160 of about 6,179 (192)
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Management of Bemisia tabaci Whiteflies
2011This review presents and discusses the merits of the methodologies available for implementing integrated pest management (IPM) of B. tabaci populations: namely, chemical control with selective insecticides, biological control, crop plant resistance and physical/mechanical methods.
A. Rami Horowitz +2 more
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Biological control of Bemisia tabaci with fungi
Crop Protection, 2001Recent advances in production, formulation, and application of insect pathogenic fungi have resulted in improvements in long-standing whitefly mycoinsecticide products based on Verticillium lecanii, and development and registration of several new products based on Paecilomyces fumosoroseus and Beauveria bassiana.
Marcos Faria, Stephen P. Wraight
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Chemical control of Bemisia tabaci
Agriculture, Ecosystems & Environment, 1986Abstract The sweetpotato whitefly, Bemisia tabaci Genn., vector of many plant viral diseases, remains a serious threat to the production of different economic crops in various countries unless practical control methods for the diseases or the vector are achieved.
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Glucosinolate Desulfation by the Phloem-Feeding Insect Bemisia tabaci
Journal of Chemical Ecology, 2016Glucosinolates are plant secondary defense metabolites confined nearly exclusively to the order Brassicales. Upon tissue rupture, glucosinolates are hydrolyzed to various bioactive breakdown products by the endogenous plant enzyme myrosinase. As the feeding of chewing insect herbivores is associated with plant tissue damage, these insects have ...
Malka, O. +5 more
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EPPO Bulletin, 2002
Bemisia tabaci was reported for the first time in the Mediterranean part of Croatia in 2000. It was found in glasshouses in the agricultural area between the towns of Trogir and Omis, on the following crops: Euphorbia pulcherrima, Thunbergia grandiflora, Cucumis sativus (cucumber), Solanum melongena (aubergine), Phaseolus spp.
T. Masten, M. Simala
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Bemisia tabaci was reported for the first time in the Mediterranean part of Croatia in 2000. It was found in glasshouses in the agricultural area between the towns of Trogir and Omis, on the following crops: Euphorbia pulcherrima, Thunbergia grandiflora, Cucumis sativus (cucumber), Solanum melongena (aubergine), Phaseolus spp.
T. Masten, M. Simala
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Bemisia tabaci, the Capacity to Invade
2011Bemisia tabaci (Gennadius) (Hemiptera: Aleyrodidae) is a cryptic species complex composed of numerous morphologically indistinguishable species, a number of which have been shown to be either completely or partially reproductively isolated. Several members of the complex have invaded beyond their home ranges and two, Middle East-Asia Minor 1 (commonly
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Bemisia tabaci nomenclature: lessons learned
Pest Management Science, 2014AbstractBACKGROUNDThe nomenclature used within the whitefly research community for different putative species within Bemisia tabaci (sensu Russell) remains highly variable and confused. This was evident by the many different naming schemes researchers were using in their presentations at the 1st International Whitefly Symposium in Kolymbari, Crete ...
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Host plant resistance to Bemisia tabaci
Agriculture, Ecosystems & Environment, 1986Abstract Bemisia tabaci has a wide host range, attacking and damaging plants of several botanical families. Adults and larvae feed by sucking from the phloem bundles of the leaves. B. tabaci is attracted by the colour yellow and is believed not to react to odours.
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Identification and characterization of doublesex in Bemisia tabaci
Insect Molecular Biology, 2018Abstract Bemisia tabaci (Gennadius) is an important agricultural pest with a worldwide distribution. Although B. tabaci is known to have a unique haplodiploid reproductive strategy, its sex determination mechanism is largely unknown.
L. Guo +8 more
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Transovarial Transmission of Begomoviruses in Bemisia tabaci
2009Transovarial transmission of viral nucleic acid in insect vectors, or more precisely of viral infectivity, can be very important in maintaining a source of infection and therefore has great epidemiological relevance. The first clear case of transovarial transmission of an arbovirus demonstrated the ability of sand fly and black fly vector populations ...
Gian Paolo Accotto, Luca Sardo
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