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首页> 外文期刊>Genetics and molecular biology: publication of the Sociedade Brasileira de Genetica >In silico identification of known osmotic stress responsive genes from Arabidopsis in soybean and Medicago
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In silico identification of known osmotic stress responsive genes from Arabidopsis in soybean and Medicago

机译:在计算机上鉴定大豆和紫花苜蓿中拟南芥已知的渗透胁迫应答基因

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摘要

Plants experience various environmental stresses, but tolerance to these adverse conditions is a very complex phenomenon. The present research aimed to evaluate a set of genes involved in osmotic response, comparing soybean and medicago with the well-described Arabidopsis thaliana model plant. Based on 103 Arabidopsis proteins from 27 categories of osmotic stress response, comparative analyses against Genosoja and Medicago truncatula databases allowed the identification of 1,088 soybean and 1,210 Medicago sequences. The analysis showed a high number of sequences and high diversity, comprising genes from all categories in both organisms. Genes with unknown function were among the most representative, followed by transcription factors, ion transport proteins, water channel, plant defense, protein degradation, cellular structure, organization & biogenesis and senescence. An analysis of sequences with unknown function allowed the annotation of 174 soybean and 217 Medicago sequences, most of them concerning transcription factors. However, for about 30% of the sequences no function could be attributed using in silico procedures. The establishment of a gene set involved in osmotic stress responses in soybean and barrel medic will help to better understand the survival mechanisms for this type of stress condition in legumes.
机译:植物经受各种环境压力,但是对这些不利条件的耐受性是非常复杂的现象。本研究旨在评估与渗透反应有关的一组基因,将大豆和药用植物与著名的拟南芥模型植物进行比较。根据来自27种渗透胁迫响应的103种拟南芥蛋白,对Genosoja和Medicago truncatula数据库进行的比较分析可鉴定1,088株大豆和1,210株Medicago序列。该分析显示出大量的序列和高度的多样性,包括两种生物中所有类别的基因。功能未知的基因是最具代表性的基因,其次是转录因子,离子转运蛋白,水通道,植物防御,蛋白质降解,细胞结构,组织与生物发生和衰老。通过对功能未知序列的分析,可以注释174个大豆序列和217个Medicago序列,其中大多数与转录因子有关。但是,对于约30%的序列,无法使用计算机程序归因于功能。建立涉及大豆和桶装医学中渗透性应激反应的基因集将有助于更好地了解豆类中这种应激状态的生存机制。

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