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Genome-Wide Identification and Analysis of the Cytochrome B5 Protein Family in Chinese Cabbage (Brassica rapa L. ssp. Pekinensis)

机译:大白菜细胞色素B5蛋白家庭的基因组鉴定与分析(Brassica Rapa L. SSP。Pekinensis)

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摘要

Cytochrome B5 (CB5) family proteins play an important role in various oxidation/reduction reactions in cells as the electron donor and are involved in a variety of biotic and abiotic stress processes. However, the function of the CB5s in Brassica rapa is still unclear. In this study, we carried out genome-wide identification, characterization, and expression analysis of BrCB5s in different tissues under adversities and stresses. It was identified that fifteen BrCB5s were distributed on different chromosomes, which were classified into seven groups (A-G) according to its phylogenetic relationship. Phylogenetic analysis of the CB5 protein sequences from six species showed that the BrCB5s conduct a close evolutionary process with the CB5s of Arabidopsis thaliana and far from those of Oryza sativa. Protein interaction analysis showed that 40 interaction patterns were predicted including two Sucrose Transporter 4 subfamily proteins (SUT 4) and Fatty Acid Hydroxylase 2 protein (FAH 2) can interact with most members of BrCB5s. The expression profile analysis indicated that BrCB5s were differentially expressed in different tissues, and the transcript abundances were significantly different under various abiotic stresses and plant hormone treatments. Our study provides a basis for a better understanding of the characteristics and biological functions of the CB5 family genes in Chinese cabbage during plant development, especially in plant responses to multiple stresses.
机译:细胞色素B5(CB5)家族蛋白在细胞中作为电子给体发挥各种氧化/还原反应中起重要作用,并参与各种生物和非生物胁迫处理。然而,CB5s的芜菁的功能目前还不清楚。在这项研究中,我们进行了全基因组的鉴定,表征和在逆境下和应力不同组织BrCB5s的表达分析。经鉴定,15个BrCB5s分发不同的染色体上,将其分类成根据其亲缘关系七组(A-G)。从六个种CB5蛋白质序列的系统发生分析表明,BrCB5s进行密切的进化过程与远离那些稻的拟南芥和CB5s。蛋白质相互作用分析表明,40种交互模式被预测其中包括两个蔗糖转运4个亚家族蛋白(SUT 4)和脂肪酸羟化酶2蛋白(FAH 2)可与BrCB5s的大多数成员交互。表达谱分析表明,分别BrCB5s在不同组织中差异表达,并转录丰度分别为下多种非生物胁迫和植物激素处理显著不同。我们的研究提供了一个更好地了解的特点和植物发育过程中中国白菜CB5家族基因的生物学功能的基础,尤其是在植物对多重压力。

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