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Genome wide expression analysis of CBS domain containing proteins in Arabidopsis thaliana (L.) Heynh and Oryza sativa L. reveals their developmental and stress regulation

机译:拟南芥Heynh和水稻Oryza sativa L.中含有CBS结构域蛋白的基因组全表达分析显示了它们的发育和胁迫调控

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Background In Arabidopsis thaliana (L.) Heynh and Oryza sativa L., a large number of genes encode proteins of unknown functions, whose characterization still remains one of the major challenges. With an aim to characterize these unknown proteins having defined features (PDFs) in plants, we have chosen to work on proteins having a cystathionine β-synthase (CBS) domain. CBS domain as such has no defined function(s) but plays a regulatory role for many enzymes and thus helps in maintaining the intracellular redox balance. Its function as sensor of cellular energy has also been widely suggested. Results Our analysis has identified 34 CBS domain containing proteins (CDCPs) in Arabidopsis and 59 in Oryza. In most of these proteins, CBS domain coexists with other functional domain(s), which may indicate towards their probable functions. In order to investigate the role(s) of these CDCPs, we have carried out their detailed analysis in whole genomes of Arabidopsis and Oryza, including their classification, nomenclature, sequence analysis, domain analysis, chromosomal locations, phylogenetic relationships and their expression patterns using public databases (MPSS database and microarray data). We have found that the transcript levels of some members of this family are altered in response to various stresses such as salinity, drought, cold, high temperature, UV, wounding and genotoxic stress, in both root and shoot tissues. This data would be helpful in exploring the so far obscure functions of CBS domain and CBS domain-containing proteins in plant stress responses. Conclusion We have identified, classified and suggested the nomenclature of CDCPs in Arabidopsis and Oryza. A comprehensive analysis of expression patterns for CDCPs using the already existing transcriptome profiles and MPSS database reveals that a few CDCPs may have an important role in stress response/tolerance and development in plants, which needs to be validated further through functional genomics.
机译:背景技术在拟南芥Heynh和水稻Oryza sativa L.中,大量基因编码功能未知的蛋白质,其表征仍然是主要挑战之一。为了表征植物中这些具有定义特征的未知蛋白质(PDF),我们选择研究具有胱硫醚β-合酶(CBS)域的蛋白质。 CBS结构域本身没有定义的功能,但对许多酶起调节作用,因此有助于维持细胞内氧化还原平衡。其作为细胞能量传感器的功能也被广泛提出。结果我们的分析确定了拟南芥中的34个CBS结构域蛋白(CDCP)和Oryza中的59个蛋白。在大多数这些蛋白质中,CBS结构域与其他功能结构域共存,这可能表明它们可能具有功能。为了研究这些CDCP的作用,我们在拟南芥和Oryza的整个基因组中进行了详细的分析,包括它们的分类,命名,序列分析,结构域分析,染色体位置,系统发生关系以及它们的表达模式。公共数据库(MPSS数据库和微阵列数据)。我们已经发现,该家族中某些成员的转录本水平响应于根和芽组织中的各种胁迫例如盐度,干旱,寒冷,高温,紫外线,伤口和遗传毒性胁迫而改变。该数据将有助于探索迄今为止CBS结构域和CBS结构域蛋白在植物胁迫响应中的模糊功能。结论我们已经鉴定,分类并建议了拟南芥和稻中CDCP的命名。使用已经存在的转录组图谱和MPSS数据库对CDCP的表达模式进行全面分析,发现一些CDCP可能在植物的胁迫响应/耐受性和发育中起重要作用,这需要通过功能基因组学进一步验证。

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