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在与黑森瘿蚊的不相容互作过程中,小麦叶鞘膜脂的快速动员。

Rapid mobilization of membrane lipids in wheat leaf sheaths during incompatible interactions with Hessian fly.

机构信息

Department of Biological Science, Fayetteville State University, Fayetteville, NC 28301, USA.

出版信息

Mol Plant Microbe Interact. 2012 Jul;25(7):920-30. doi: 10.1094/MPMI-01-12-0022-R.

Abstract

Hessian fly (HF) is a biotrophic insect that interacts with wheat on a gene-for-gene basis. We profiled changes in membrane lipids in two isogenic wheat lines: a susceptible line and its backcrossed offspring containing the resistance gene H13. Our results revealed a 32 to 45% reduction in total concentrations of 129 lipid species in resistant plants during incompatible interactions within 24 h after HF attack. A smaller and delayed response was observed in susceptible plants during compatible interactions. Microarray and real-time polymerase chain reaction analyses of 168 lipid-metabolism-related transcripts revealed that the abundance of many of these transcripts increased rapidly in resistant plants after HF attack but did not change in susceptible plants. In association with the rapid mobilization of membrane lipids, the concentrations of some fatty acids and 12-oxo-phytodienoic acid (OPDA) increased specifically in resistant plants. Exogenous application of OPDA increased mortality of HF larvae significantly. Collectively, our data, along with previously published results, indicate that the lipids were mobilized through lipolysis, producing free fatty acids, which were likely further converted into oxylipins and other defense molecules. Our results suggest that rapid mobilization of membrane lipids constitutes an important step for wheat to defend against HF attack.

摘要

麦长管蚜(HF)是一种生物专性寄生昆虫,与小麦之间存在基因对基因的相互作用。我们对两种同源小麦系(感病系及其含有抗性基因 H13 的回交后代)的膜脂变化进行了分析。结果显示,在麦长管蚜攻击后 24 小时内,抗性植株中 129 种膜脂总浓度降低了 32%至 45%,而在亲和互作中,感病植株中的这种响应较小且延迟。对 168 种脂质代谢相关转录本的微阵列和实时聚合酶链反应分析表明,在麦长管蚜攻击后,这些转录本中的许多转录本在抗性植株中的丰度迅速增加,但在感病植株中没有变化。与膜脂的快速动员相关,一些脂肪酸和 12-氧-植二烯酸(OPDA)的浓度在抗性植株中特异性增加。OPDA 的外源施用显著增加了麦长管蚜幼虫的死亡率。总的来说,我们的数据以及以前发表的结果表明,脂质通过脂解动员,产生游离脂肪酸,这些脂肪酸可能进一步转化为氧化脂和其他防御分子。我们的结果表明,膜脂的快速动员是小麦抵御麦长管蚜攻击的重要步骤。

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