首页> 外文期刊>Journal of proteomics >Proteomic analysis of secreted saliva from Russian Wheat Aphid (Diuraphis noxia Kurd.) biotypes that differ in virulence to wheat
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Proteomic analysis of secreted saliva from Russian Wheat Aphid (Diuraphis noxia Kurd.) biotypes that differ in virulence to wheat

机译:蛋白质毒力分析从俄罗斯小麦蚜虫(Diuraphis noxia Kurd。)生物型中分泌的唾液,其对小麦的毒力不同

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摘要

Diuraphis noxia, Russian Wheat Aphid (RWA), biotypes are classified by their differential virulence to wheat varieties containing resistance genes. RWA salivary proteins, unlike those of most aphid species, cause foliar damage and physiological alterations in plants. A comparative proteomic analysis of secreted saliva from four differentially virulent RWA biotypes identified thirty-four individual proteins. The five major proteins were glucose dehydrogenase, lipophorin, chitinase, CiV16.8g1-like, and lava lamp. Fourteen proteins quantitatively varied among biotypes; trehalase, β-N-acetylglucosaminidase (chitinase), two separate glucose dehydrogenases, calreticulin, aminopeptidase, acetylglucosaminyltransferase, hydroxymethylglutaryl-CoA lyase, acyltransferase, ficolin-3, lava lamp, retinaldehyde-binding protein, and two proteins of unknown function. Fifty-four percent of spectral counts were associated with glucose dehydrogenase, which is thought to detoxify plant defensive compounds. One-dimensional electrophoresis detected nine protein bands from 9 to 60. kDa that quantitatively differed. Two-dimensional electrophoresis identified six major gel zones with quantitative and qualitative variance in proteins. Our findings reveal that the salivary proteome of RWA, a phytotoxic aphid, differs considerably from those reported for nonphytotoxic aphids. The potential roles of proteins used in the general plant feeding processes of aphids and those that are potential phytotoxins related to aphid virulence are discussed.
机译:根据俄罗斯小麦蚜虫(RWA)的Diuraphis noxia生物型,根据其对含有抗性基因的小麦品种的差异毒力进行分类。与大多数蚜虫物种不同,RWA唾液蛋白会引起植物的叶面损伤和生理变化。对四种不同毒性RWA生物型分泌唾液的蛋白质组学比较分析确定了三十四种单独的蛋白质。五个主要蛋白质是葡萄糖脱氢酶,脂蛋白,几丁质酶,CiV16.8g1样和熔岩灯。 14种蛋白质在生物类型之间定量变化;海藻糖酶,β-N-乙酰氨基葡糖苷酶(几丁质酶),两种单独的葡萄糖脱氢酶,钙网蛋白,氨基肽酶,乙酰基氨基葡萄糖基转移酶,羟甲基戊二酰辅酶A裂解酶,酰基转移酶,ficolin-3,熔岩灯,视黄醛结合蛋白和两种功能未知的蛋白。光谱计数的百分之五十四与葡萄糖脱氢酶有关,葡萄糖脱氢酶被认为可以解毒植物防御性化合物。一维电泳检测到从9到60. kDa的9个蛋白带,在数量上存在差异。二维电泳确定了六个主要的凝胶区域,蛋白质中存在定量和定性变化。我们的发现表明,RWA(一种植物毒性蚜虫)的唾液蛋白质组与非植物毒性蚜虫的唾液蛋白质组有很大差异。讨论了在蚜虫一般植物饲养过程中使用的蛋白质的潜在作用,以及与蚜虫毒力相关的潜在植物毒素的蛋白质的潜在作用。

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