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Molecular and chemical mechanisms involved in aphid resistance in cultivated tomato

机译:栽培番茄抗蚜性的分子和化学机理

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An integrated approach has been used to obtain an understanding of the molecular and chemical mechanisms underlying resistance to aphids in cherry-like tomato (Solanum lycopersicum) landraces from the Campania region (southern Italy). The aphid-parasitoid system Macrosiphum euphorbiae-Aphidius ervi was used to describe the levels of resistance against aphids in two tomato accessions (AN5, AN7) exhibiting high yield and quality traits and lacking the tomato Mi gene. Aphid development and reproduction, flight response by the aphid parasitoid A. ervi, gas chromatography-mass spectrometry headspace analysis of plant volatile organic compounds and transcriptional analysis of aphid responsive genes were performed on selected tomato accessions and on a susceptible commercial variety (M82). When compared with the cultivated variety, M82, AN5 and AN7 showed a significant reduction of M. euphorbiae fitness, the release of larger amounts of specific volatile organic compounds that are attractive to the aphid parasitoid A. ervi, a constitutively higher level of expression of plant defence genes and differential enhancement of plant indirect resistance induced by aphid feeding. These results provide new insights on how local selection can offer the possibility of the development of innovative genetic strategies to increase tomato resistance against aphids.
机译:已使用一种综合方法来了解来自坎帕尼亚地区(意大利南部)的樱桃状番茄(Solanum lycopersicum)地方品种对蚜虫的抗性的分子和化学机理。蚜虫-拟寄生物系统Macrosiphum euphorbiae-Aphidius ervi被用于描述两个表现出高产和优质性状且缺乏番茄Mi基因的番茄(AN5,AN7)对蚜虫的抗性水平。蚜虫的发育和繁殖,蚜虫类寄生虫A. ervi的飞行应答,植物挥发性有机化合物的气相色谱-质谱顶空分析和蚜虫响应基因的转录分析均在部分番茄品种和易感商品上进行(M82)。与栽培品种相比,M82,AN5和AN7显着降低了大戟支原体的适应性,释放了大量特定的挥发性有机化合物,这些化合物对蚜虫寄生性拟南芥(A. ervi)具有吸引力,构成了较高水平的表达。植物防御基因与蚜虫摄食诱导的植物间接抗性的差异增强。这些结果为本地选择如何提供创新的遗传策略以增加番茄对蚜虫的抗性提供了新的见解。

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