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Transcriptional responses of tolerant and susceptible soybeans to soybean aphid (Aphis glycines Matsumura) herbivory

机译:耐性和易感性大豆对大豆蚜虫(Aphis glycines Matsumura)食草植物的转录响应

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摘要

The soybean aphid, Aphis glycines Matsumura, was introduced in 2000 to North America and has become one of the most significant pests to soybean, Glycine max (L.) Merrill, production. Possible solutions to this problem are the use of resistant plants and the understanding of the genes involved in plant resistance. In this study, we sought to better understand the genes involved in the tolerance response of soybean plants to the soybean aphid, utilizing tolerant (KS4202) and susceptible (K-03-4686) plants. Studies were conducted under greenhouse conditions. Leaf samples of both tolerant and susceptible plants were collected at day 5 and day 15 after infestation and analyzed by sequencing-by-synthesis on an Illumina GA II X instrument. In the tolerant genotype, 3 and 36 genes were found to be differentially expressed in the infested plants compared to the control treatments at day 5 and day 15, respectively. A similar comparison in the susceptible genotype revealed 0 and 11 genes to be differentially expressed at day 5 and day 15, respectively. Predominately, genes related to plant defense, such as WRKY transcription factors, peroxidases, and cytochrome p450s, were up-regulated in the tolerant genotype 15 days post-infestation by aphids. In contrast, none of these genes were similarly up-regulated in the susceptible plants, suggesting that consistent elevation of defense responses is important to plant tolerance. However, significant genotypic differences in global gene expression were also found when transcriptomes from control uninfested plants were compared at both day 5 and 15. qPCR validation of select genes confirmed our RNA-seq data. These comparisons indicate that potentially broader regulation of transcriptomes also contributes to the tolerance response and provides data that the tolerant genotype (KS4202) could be useful in soybean breeding programs trying to minimize production losses accruing from soybean aphid feeding.
机译:大豆蚜虫Aphis glycines Matsumura于2000年引入北美,现已成为对大豆最重要的害虫之一Glycine max(L.)Merrill生产。解决该问题的可能方法是使用抗性植物以及对涉及植物抗性的基因的理解。在这项研究中,我们试图利用耐性(KS4202)和易感性(K-03-4686)植物更好地了解与大豆植物对大豆蚜虫的耐性响应有关的基因。研究是在温室条件下进行的。在侵染后第5天和第15天收集耐受和易感植物的叶片样品,并在Illumina GA II X仪器上通过合成测序进行分析。在耐受基因型中,与第5天和第15天的对照处理相比,在受侵染的植物中发现3和36个基因差异表达。易感基因型的类似比较显示,第5天和第15天分别有0和11个基因差异表达。绝大多数情况下,蚜虫在侵染后15天的耐性基因型中都上调了与植物防御相关的基因,例如WRKY转录因子,过氧化物酶和细胞色素p450。相反,这些基因在易感植物中均没有类似地上调,表明防御反应的持续升高对植物耐受性很重要。但是,当在第5天和第15天比较来自未受侵染的对照植物的转录组时,也发现了全球基因表达的显着基因型差异。选择基因的qPCR验证证实了我们的RNA序列数据。这些比较表明,可能更广泛的转录组调控也有助于耐受性应答,并提供了耐受基因型(KS4202)在大豆育种计划中可能有用,以尽量减少因大豆蚜虫饲养而造成的生产损失。

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