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Genome-wide analysis of expansin superfamily in wild Arachis discloses a stress-responsive expansin-like B gene

机译:全基因组分析野生荒地中的expansin超家族揭示了一种应激反应性expansin样B基因

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摘要

Expansins are plant cell wall-loosening proteins involved in adaptive responses to environmental stimuli and various developmental processes. The first genome-wide analysis of the expansin superfamily in the Arachis genus identified 40 members in A. duranensis and 44 in A. ipaënsis, the wild progenitors of cultivated peanut (A. hypogaea). These expansins were further characterized regarding their subfamily classification, distribution along the genomes, duplication events, molecular structure, and phylogeny. A RNA-seq expression analysis in different Arachis species showed that the majority of these expansins are modulated in response to diverse stresses such as water deficit, root-knot nematode (RKN) infection, and UV exposure, with an expansin-like B gene (AraEXLB8) displaying a highly distinct stress-responsive expression profile. Further analysis of the AraEXLB8 coding sequences showed high conservation across the Arachis genotypes, with eight haplotypes identified. The modulation of AraEXLB8 expression in response to the aforementioned stresses was confirmed by qRT-PCR analysis in distinct Arachis genotypes, whilst in situ hybridization revealed transcripts in different root tissues according to the stress imposed. The overexpression of AraEXLB8 in soybean (Glycine max) composite plants remarkably decreased the number of galls in transformed hairy roots inoculated with RKN. This study improves the current understanding of the molecular evolution, divergence, and gene expression of expansins in Arachis, and provides molecular and functional insights into the role of expansin-like B, the less-studied plant expansin subfamily.Electronic supplementary materialThe online version of this article (doi:10.1007/s11103-017-0594-8) contains supplementary material, which is available to authorized users.
机译:扩展蛋白是植物细胞壁松弛蛋白,参与对环境刺激和各种发育过程的适应性反应。首次对Arachis属的expansin超家族进行全基因组分析,确定了杜兰曲霉(A. duranensis)中有40个成员,而栽培花生(A. hypogaea)的野生祖先A.ipaënsis中则有44个成员。这些扩展蛋白的亚家族分类,沿基因组的分布,重复事件,分子结构和系统发育被进一步表征。在不同的Arachis物种中进行的RNA-seq表达分析表明,这些expanins中的大多数是通过对多种压力的响应而被调节的,例如水分缺乏,根结线虫(RKN)感染和紫外线暴露,并具有expansin-like B基因( AraEXLB8)显示了高度不同的应激反应表达特征。对AraEXLB8编码序列的进一步分析显示,整个Arachis基因型具有高度保守性,已鉴定出八种单倍型。通过qRT-PCR分析在不同的Arachis基因型中证实了响应于上述压力的AraEXLB8表达的调节,而原位杂交根据所施加的压力显示了在不同根组织中的转录本。大豆(Glycine max)复合植物中AraEXLB8的过表达显着降低了接种RKN的转化毛状根中的胆汁数量。这项研究提高了人们对花生中Expansin的分子进化,差异和基因表达的了解,并提供了分子和功能方面的见解,即研究较少的植物expansin亚家族类expansin-like B的作用。本文(doi:10.1007 / s11103-017-0594-8)包含补充材料,授权用户可以使用。

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