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小麦与麦长管蚜(Sitobion avenae)的分子互作:小麦蛋白质组变化分析。

Molecular interactions between wheat and cereal aphid (Sitobion avenae): analysis of changes to the wheat proteome.

机构信息

School of Environment and Life Science, Salford University, Salford, UK.

出版信息

Proteomics. 2011 May;11(10):1985-2002. doi: 10.1002/pmic.200900801. Epub 2011 Apr 18.

DOI:10.1002/pmic.200900801
PMID:21500340
Abstract

Aphids are major insect pests of cereal crops, acting as virus vectors as well as causing direct damage. The responses of wheat to infestation by cereal aphid (Sitobion avenae) were investigated in a proteomic analysis. Approximately, 500 protein spots were reproducibly detected in the extracts from leaves of wheat seedlings after extraction and 2-DE. Sixty-seven spots differed significantly between control and infested plants following 24 h of aphid feeding, with 27 and 11 up-regulated, and 8 and 21 down-regulated, in local or systemic tissues, respectively. After 8 days, 80 protein spots differed significantly between control and aphid treatments with 13 and 18 up-regulated and 27 and 22 down-regulated in local or systemic tissues, respectively. As positive controls, plants were treated with salicylic acid or methyl jasmonate; 81 and 37 differentially expressed protein spots, respectively, were identified for these treatments. Approximately, 50% of differentially expressed protein spots were identified by PMF, revealing that the majority of proteins altered by aphid infestation were involved in metabolic processes and photosynthesis. Other proteins identified were involved in signal transduction, stress and defence, antioxidant activity, regulatory processes, and hormone responses. Responses to aphid attack at the proteome level were broadly similar to basal non-specific defence and stress responses in wheat, with evidence of down-regulation of insect-specific defence mechanisms, in agreement with the observed lack of aphid resistance in commercial wheat lines.

摘要

蚜虫是谷类作物的主要害虫,既是病毒载体,又会造成直接损害。本研究采用蛋白质组学分析方法研究了小麦对麦长管蚜(Sitobion avenae)侵害的反应。从小麦幼苗叶片提取物中通过提取和 2-DE 可重复性地检测到大约 500 个蛋白斑点。在取食 24 小时后,与对照相比,67 个蛋白斑点在局部或系统组织中差异显著,其中 27 个和 11 个上调,8 个和 21 个下调。8 天后,与对照相比,80 个蛋白斑点差异显著,其中在局部或系统组织中,13 个和 18 个上调,27 个和 22 个下调。作为阳性对照,用水杨酸或茉莉酸甲酯处理植物;分别鉴定出 81 和 37 个差异表达蛋白斑点。PMF 鉴定出约 50%的差异表达蛋白斑点,表明受蚜虫侵害而改变的大多数蛋白参与代谢过程和光合作用。鉴定出的其他蛋白参与信号转导、应激和防御、抗氧化活性、调节过程和激素反应。在蛋白质组水平上对蚜虫攻击的反应与小麦的基础非特异性防御和应激反应大致相似,昆虫特异性防御机制下调的证据与商业小麦品系缺乏抗蚜性的观察结果一致。

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