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Functional characterization of cotton genes responsive to Verticillium dahliae through bioinformatics and reverse genetics strategies

机译:通过生物信息学和逆向遗传学策略对棉花对黄萎病作出反应的棉花基因的功能表征

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摘要

Verticillium wilt causes dramatic cotton yield loss in China. Although some genes or biological processes involved in the interaction between cotton and Verticillium dahliae have been identified, the molecular mechanism of cotton resistance to this disease is still poorly understood. The basic innate immune response for defence is somewhat conserved among plant species to defend themselves in complex environments, which makes it possible to characterize genes involved in cotton immunity based on information from model plants. With the availability of Arabidopsis databases, a data-mining strategy accompanied by virus-induced gene silencing (VIGS) and heterologous expression were adopted in cotton and tobacco, respectively, for global screening and gene function characterization. A total of 232 Arabidopsis genes putatively involved in basic innate immunity were screened as candidate genes, and bioinformatic analysis suggested a role of these genes in the immune response. In total, 38 homologous genes from cotton were singled out to characterize their response to V. dahliae and methyl jasmonate treatment through quantitative real-time PCR. The results revealed that 24 genes were differentially regulated by pathogen inoculation, and most of these genes responded to both Verticillium infection and jasmonic acid stimuli. Furthermore, the efficiency of the strategy was illustrated by the functional identification of six candidate genes via heterologous expression in tobacco or a knock-down approach using VIGS in cotton. Functional categorization of these 24 differentially expressed genes as well as functional analysis suggest that reactive oxygen species, salicylic acid- and jasmonic acid-signalling pathways are involved in the cotton disease resistance response to V. dahliae. Our data demonstrate how information from model plants can allow the rapid translation of information into non-model species without complete genome sequencing, via high-throughput screening and functional identification of target genes based on data-mining and VIGS.
机译:黄萎病导致中国棉花单产大幅下降。尽管已经确定了棉花和黄萎病菌相互作用中涉及的一些基因或生物学过程,但棉花对这种疾病的抗性的分子机制仍知之甚少。在复杂的环境中,防御的基本先天免疫反应在植物物种中可以保守一些,从而可以根据来自模型植物的信息表征参与棉花免疫的基因。随着拟南芥数据库的可用性,棉花和烟草分别采用了伴随病毒诱导的基因沉默(VIGS)和异源表达的数据挖掘策略,用于全局筛选和基因功能表征。筛选出总共232个拟定参与基本先天免疫的拟南芥基因作为候选基因,生物信息学分析表明这些基因在免疫应答中的作用。总共,从棉花中分离出38个同源基因,以通过定量实时PCR表征它们对大丽花弧菌和茉莉酸甲酯处理的反应。结果表明,有24个基因受到病原菌接种的差异调节,这些基因中的大多数对黄萎病菌感染和茉莉酸刺激均具有反应。此外,该策略的有效性通过烟草中的异源表达或棉花中使用VIGS的敲除方法对六个候选基因的功能鉴定来说明。这24个差异表达基因的功能分类以及功能分析表明,活性氧,水杨酸和茉莉酸信号通路与棉铃虫对棉花的抗病性反应有关。我们的数据证明了来自模型植物的信息如何通过基于数据挖掘和VIGS的高通量筛选和目标基因的功能鉴定,无需完整的基因组测序即可将信息快速翻译为非模型物种。

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