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Aphid saliva: a powerful recipe for modulating host resistance towards aphid clonal propagation

机译:蚜虫唾液:一种强大的配方,用于调节持续蚜虫克隆传播的宿主阻力

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The successful colonization of an aphid requires intimate/compatible association which is achieved in the susceptible host plant. During development of intimate association with the susceptible host plant, aphid explores 'effector' molecules enriched in saliva that translocate into the host cell to modulate host cell's function (physiology) as well as structure for assuring the nutrient availability. 'Effectors' are saliva proteins and/or small molecules having ability to manipulate the host cell's structure as well as function. These molecules are originated from an aphid saliva gland and move through the aphid stylet during interaction with the host plant. The compatibility between aphid and its susceptible host plant depends on successful effector molecules exchange for better access of nutrient from the host plant. The compatible interaction which is also known as intimate association promotes aphid's growth and multiplication due to well access of host's phloem sap. In resistant host plant, aphid saliva enriched with effector molecules are recognized by the host plant defense machinery resulting in inducing effective plant defense response that negatively impacts on aphid's survival, growth, and multiplication. The interaction of saliva secreted effector molecules with the host defense machinery results in two extreme reactions-susceptible and resistance types. Genetic mutant study reveals that the salivary secreted effector molecules are required for sustained contact with the host plant and play pivotal role in establishing compatibility with the susceptible host plant. Recent findings are also quite indicative that the silencing of salivary effector gene in aphid reduces the sustained contact with the susceptible host plant resulting in reduced survival and multiplication in aphid. This knowledge of salivary gland secreted effector genes could be potentially explored in aphid control in agricultural as well as horticultural crops as a novel strategy for next generation aphid control to bypass the heavy use of insecticide which causes imbalance in ecology.
机译:蚜虫的成功定植需要亲密/兼容的关联,其在易感宿主植物中实现。在与敏感的宿主植物亲密关系的开发过程中,蚜虫探讨富含唾液的“效应子”分子,该分子易于转化为宿主细胞,以调节宿主细胞的功能(生理学)以及用于确保营养可用性的结构。 '效果'是唾液蛋白和/或具有操纵宿主细胞结构的能力以及功能的唾液蛋白。这些分子源自蚜虫唾液腺,并在与宿主植物的相互作用期间穿过蚜虫鼻孔。蚜虫及其敏感宿主工厂之间的相容性取决于成功的效应分子交换,从宿主植物中更好地获得营养素。由于主机的Phloem SAP的批量访问,兼容互动且促进了蚜虫的增长和乘法。在抗宿主植物中,富含效应分子的蚜虫唾液被宿主植物防御机构认识到,导致诱导有效的植物防御反应,对蚜虫的生存,生长和繁殖产生负面影响。唾液分泌的效应分子与宿主防御机械的相互作用导致两种极端反应易感和阻力类型。遗传突变体研究表明,唾液分泌的效应分子需要与宿主植物持续接触,并在与易感宿主植物建立相容性方面发挥枢转作用。最近的发现也非常指示于蚜虫中唾液效应基因的沉默减少了与敏感宿主植物的持续接触,导致蚜虫中的存活率降低和倍增。这种唾液腺分泌效应基因的知识可以潜在探讨农业和园艺作物的蚜虫控制中,作为下一代蚜虫控制的新策略,以绕过杀虫剂的繁重使用,这导致生态不平衡。

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