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Inspection of the Grapevine BURP Superfamily Highlights an Expansion of RD22 Genes with Distinctive Expression Features in Berry Development and ABA-Mediated Stress Responses

机译:葡萄BURP超家族的检查突出了在浆果发育和ABA介导的应激反应中具有独特表达特征的RD22基因的扩增

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摘要

The RESPONSIVE TO DEHYDRATION 22 (RD22) gene is a molecular link between abscisic acid (ABA) signalling and abiotic stress responses. Its expression has been used as a reliable ABA early response marker. In Arabidopsis, the single copy RD22 gene possesses a BURP domain also located at the C-terminus of USP embryonic proteins and the beta subunit of polygalacturonases. In grapevine, a RD22 gene has been identified but putative paralogs are also found in the grape genome, possibly forming a large RD22 family in this species. In this work, we searched for annotations containing BURP domains in the Vitis vinifera genome. Nineteen proteins were defined by a comparative analysis between the two genome predictions and RNA-Seq data. These sequences were compared to other plant BURPs identified in previous genome surveys allowing us to reconceive group classifications based on phylogenetic relationships and protein motif occurrence. We observed a lineage-specific evolution of the RD22 family, with the biggest expansion in grapevine and poplar. In contrast, rice, sorghum and maize presented highly expanded monocot-specific groups. The Vitis RD22 group may have expanded from segmental duplications as most of its members are confined to a region in chromosome 4. The inspection of transcriptomic data revealed variable expression of BURP genes in vegetative and reproductive organs. Many genes were induced in specific tissues or by abiotic and biotic stresses. Three RD22 genes were further studied showing that they responded oppositely to ABA and to stress conditions. Our results show that the inclusion of RNA-Seq data is essential while describing gene families and improving gene annotations. Robust phylogenetic analyses including all BURP members from other sequenced species helped us redefine previous relationships that were erroneously established. This work provides additional evidence for RD22 genes serving as marker genes for different organs or stresses in grapevine.
机译:响应脱水22(RD22)基因是脱落酸(ABA)信号传导与非生物胁迫反应之间的分子联系。它的表达已被用作可靠的ABA早期反应标记。在拟南芥中,单拷贝RD22基因具有BURP结构域,该结构域也位于USP胚胎蛋白的C末端和多半乳糖醛酸酶的β亚基。在葡萄树中,已鉴定出RD22基因,但在葡萄基因组中也发现了假定的旁系同源物,可能在该物种中形成了较大的RD22家族。在这项工作中,我们搜索了在葡萄树基因组中包含BURP域的注释。通过对两个基因组预测和RNA-Seq数据之间的比较分析,定义了19种蛋白质。将这些序列与先前的基因组调查中确定的其他植物BURP进行了比较,从而使我们能够重新认识基于系统发生关系和蛋白质基序发生的群体分类。我们观察到RD22家族的特定谱系进化,其中葡萄和杨树最大。相反,稻米,高粱和玉米则表现出高度扩展的单子叶植物特异性群体。 Vitis RD22组可能已从节段复制中扩展出来,因为它的大多数成员都局限于4号染色体上的一个区域。转录组数据的检查揭示了BURP基因在营养和生殖器官中的可变表达。许多基因是在特定组织中或通过非生物和生物胁迫诱导的。进一步研究了三个RD22基因,显示它们对ABA和胁迫条件的反应相反。我们的结果表明,在描述基因家族和改善基因注释时,必须包含RNA-Seq数据。稳健的系统发育分析(包括来自其他测序物种的所有BURP成员)帮助我们重新定义了先前建立的错误关系。这项工作为RD22基因作为葡萄中不同器官或胁迫的标记基因提供了额外的证据。

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