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Structural and functional analysis of the gras gene family in grapevine indicates a role of GRAS proteins in the control of development and stress responses

机译:葡萄中gras基因家族的结构和功能分析表明GRAS蛋白在控制发育和应激反应中的作用

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摘要

GRAS transcription factors are involved in many processes of plant growth and development (e.g., axillary shoot meristem formation, root radial patterning, nodule morphogenesis, arbuscular development) as well as in plant disease resistance and abiotic stress responses. However, little information is available concerning this gene family in grapevine (Vitis vinifera L.), an economically important woody crop. We performed a model curation of GRAS genes identified in the latest genome annotation leading to the identification of 52 genes. Gene models were improved and three new genes were identified that could be grapevine- or woody-plant specific. Phylogenetic analysis showed that GRAS genes could be classified into 13 groups that mapped on the 19. V. vinifera chromosomes. Five new subfamilies, previously not characterized in other species, were identified. Multiple sequence alignment showed typical GRAS domain in the proteins and new motifs were also described. As observed in other species, both segmental and tandem duplications contributed significantly to the expansion and evolution of the GRAS gene family in grapevine. Expression patterns across a variety of tissues and upon abiotic and biotic conditions revealed possible divergent functions of GRAS genes in grapevine development and stress responses. By comparing the information available for tomato and grapevine GRAS genes, we identified candidate genes that might constitute conserved transcriptional regulators of both climacteric and non-climacteric fruit ripening. Altogether this study provides valuable information and robust candidate genes for future functional analysis aiming at improving the quality of fleshy fruits.
机译:GRAS转录因子参与植物生长和发育的许多过程(例如腋生分生组织形成,根放射状图案,根瘤形态发生,丛枝发育)以及植物抗病性和非生物胁迫响应。但是,关于这种基因家族的葡萄(Vitis vinifera L.),在经济上很重要的木本作物,目前知之甚少。我们对最新的基因组注释中鉴定的GRAS基因进行了模型编辑,从而鉴定了52个基因。基因模型得到改进,并鉴定了三个新的基因,这些基因可能是葡萄树或木本植物特有的。系统发育分析表明,GRAS基因可分为19个V. vinifera染色体上的13个组。确定了五个以前在其他物种中没有特征的新亚科。多序列比对显示蛋白质中典型的GRAS结构域,并且还描述了新的基序。正如在其他物种中观察到的那样,节段和串联重复都对葡萄中GRAS基因家族的扩展和进化做出了重要贡献。在各种组织中以及在非生物和生物条件下的表达模式表明,GRAS基因在葡萄发育和胁迫反应中可能存在不同的功能。通过比较可用于番茄和葡萄GRAS基因的信息,我们鉴定了可能构成更年期和非更年期果实成熟的保守转录调节因子的候选基因。总之,这项研究为未来的功能分析提供了有价值的信息和强大的候选基因,旨在提高肉质水果的质量。

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