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The ability to manipulate plant glucosinolates and nutrients explains the better performance of Bemisia tabaci Middle East‐Asia Minor 1 than Mediterranean on cabbage plants

机译:操纵植物芥子油苷和营养素的能力解释了烟粉虱在亚洲小白菜上的表现优于地中海烟粉虱。

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摘要

The performance of herbivorous insects is greatly affected by host chemical defenses and nutritional quality. Some herbivores have developed the ability to manipulate plant defenses via signaling pathways. It is currently unclear, however, whether a herbivore can benefit by simultaneously reducing plant defenses and enhancing plant nutritional quality. Here, we show that the better performance of the whitefly Bemisia tabaci Middle East‐Asia Minor 1 (MEAM1; formerly the “B” biotype) than Mediterranean (MED; formerly the “Q” biotype) on cabbage is associated with a suppression of glucosinolate (GS) content and an increase in amino acid supply in MEAM1‐infested cabbage compared with MED‐infested cabbage. MEAM1 had higher survival, higher fecundity, higher intrinsic rate of increase (r m), a longer life span, and a shorter developmental time than MED on cabbage plants. Amino acid content was higher in cabbage infested with MEAM1 than MED. Although infestation by either biotype decreased the levels of total GS, aliphatic GS, glucoiberin, sinigrin, glucobrassicin, and 4OH‐glucobrassicin, and the expression of related genes in cabbage, MED infestation increased the levels of 4ME‐glucobrassicin, neoglucobrassicin, progoitrin, and glucoraphanin. The GS content and expression of GS‐related genes were higher in cabbage infested with style="fixed-case">MED than with style="fixed-case">MEAM1. Our results suggest that style="fixed-case">MEAM1 performs better than style="fixed-case">MED on cabbage by manipulating host defenses and nutritional quality.
机译:寄主化学防御和营养质量极大地影响了草食性昆虫的性能。一些草食动物已经开发出通过信号传导途径操纵植物防御的能力。但是,目前尚不清楚草食动物是否可以通过同时降低植物防御能力和增强植物营养质量而受益。在这里,我们显示了粉虱“烟粉虱”(Bemisia tabaci)中东小亚种(MEAM1;以前为“ B”生物型)在地中海白菜上的表现优于地中海菜(MED;以前为“ Q”生物型),这与芥子油苷的抑制作用有关与MED感染的甘蓝相比,MEAM1感染的甘蓝(GS)含量和氨基酸供应增加。与甘蓝型植物上的MED相比,MEAM1具有更高的存活率,更高的繁殖力,更高的内在增长率(r m),更长的寿命和更短的发育时间。受MEAM1侵扰的甘蓝中的氨基酸含量高于MED。尽管这两种生物型均会降低总GS,脂肪族GS,葡萄糖素,西尼格林,葡糖苷和4OH-葡糖苷的水平,并且相关基因的表达在甘蓝中,但MED侵染会增加4ME-葡糖苷,新葡糖苷,普罗戈林和糖尿素。 style =“ fixed-case”> MED 感染的甘蓝中的GS含量和GS相关基因的表达高于 style =“ fixed-case”> MEAM 1。我们的结果表明,通过控制宿主防御能力和营养品质, style =“ fixed-case”> MEAM 1在白菜上的表现优于 style =“ fixed-case”> MED

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