白菜型油菜RbohCRbohF基因克隆与表达分析
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国家自然科学基金(31460099)


Cloning and Expression Analysis of RbohC and RbohF Genes in Brassica rapa L.
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    摘要:

    该研究以白菜型油菜(Brassica rapa L.)‘陇油6号’为实验材料,采用RTPCR方法克隆油菜RbohCRbohF基因,并采用实时荧光定量PCR技术对RbohCRbohF基因在不同组织及非生物胁迫下的表达进行分析,为深入研究油菜RbohCRbohF基因的生物学功能提供依据。结果显示:(1) 成功克隆得到2个全长分别为3 050 bp和2 995 bp的油菜RbohC (GenBank登录号:XM_009134386) 和RbohF (GenBank登录号:XM_009114548) 基因序列。(2) 生物信息学分析显示,油菜RbohCRbohF基因开放阅读框(ORF)分别为2 733 bp和2 847 bp,编码910和948个氨基酸,推测二者的蛋白质分子量分别为103 kDa和108 kDa,理论等电点分别为9.47和9.21; 油菜RbohCRbohF编码的氨基酸序列与萝卜等多种植物相应蛋白氨基酸序列具有较高的同源性,且这些序列高度保守并含有NADPH氧化酶的典型保守结构域,包括2个可以与Ca2+结合的EF手性模体结构、6个跨膜结构域、黄素腺嘌呤二核苷酸结合结构域、NAD焦磷酸结合结构域和C末端区域中的NADP核糖保守结合位点。(3) 油菜RbohCRbohF基因在根、茎、叶和下胚轴中均表达,无组织特异性,但RbohC基因在根中表达量最高, RbohF基因在下胚轴中表达量最高。(4) 低温、干旱、盐、ABA、H2O2处理都能够诱导油菜RbohCRbohF基因的表达,但抗寒性强的 ‘陇油6号’的RbohCRbohF基因对胁迫的响应更敏感,且RbohC基因的表达量均高于RbohF基因。(5) 用H2O2清除剂DMTU、NADPH氧化酶抑制剂DPI和IMD、MAPKK抑制剂U0126处理后,油菜RbohCRbohF基因的表达均较对照下降,说明U0126和DMTU对油菜RbohCRbohF基因的表达有抑制作用。研究认为,油菜RbohCRbohF基因在油菜适应逆境胁迫中具有重要作用,两基因的表达均受MAPK激酶信号途径的调节,并受到H2O2的反馈调节,而且抗寒性强的‘陇油6号’品种中RbohCRbohF基因对H2O2和MAPK激酶信号途径的响应更敏感。

    Abstract:

    In the study, the RbohC and RbohF gene sequences of rapeseed (Brassica rapa L.) were cloned from ‘Long you 6’ by RTPCR. And realtime quantitative PCR was used to analyze the expression of RbohC and RbohF genes under different tissues and abiotic stresses, which provided a basis for further study on the biological functions of RbohC and RbohF genes in rapeseed. The results indicated: (1) two fulllength 3 050 bp and 2 995 bp rapeseed RbohC (GenBank accession number: XM_009134386) and RbohF (GenBank accession number: XM_009114548) gene sequences were successfully cloned. (2) Bioinformatic analysis showed that RbohC and RbohF contained 2 733 bp and 2 847 bp ORFs, encoding 910 and 948 amino acid residues, respectively. It is predicted that the molecular mass of RbohC and RbohF proteins were 103 kDa and 108 kDa which isoelectric points were 9.47 and 9.21. The amino acid sequences encoding RbohC and RbohF of rapeseed have high homology with the amino acid sequences of various plant corresponding proteins such as radish. These sequences are highly conserved and contain a typical conserved domain of NADPH oxidase, including two the EF chiral motif structures, which can bind to Ca2+, the six transmembrane domains, the flavin adenine dinucleotide binding domain, the NAD pyrophosphate binding domain, and the NADP ribose conserved binding site in the Cterminal region. (3) RTPCR analysis showed that RbohC and RbohF were expressed in root, stem, leaf and hypocotyl of rapeseed with nontissue specificity. However, RbohC had the highest level expression in roots, while RbohF gene in hypocotyl. (4) Low temperature, drought, salt, ABA and H2O2 all induced the expression of RbohC and RbohF, indicating that RbohC and RbohF play an important role in rapeseed adaptation to stress. However, the RbohC and RbohF genes of ‘Long you 6’, which is highly resistant to cold, are more sensitive to stress, and the expression of RbohC gene is higher than that of RbohF gene. (5) After treatment with H2O2 scavenger DMTU, NADPH oxidase inhibitor DPI and IMD, MAPKK inhibitor U0126, the expression of RbohC and RbohF in rapeseed decreased, indicating that U0126 and DMTU can inhibit the expression of RbohC and RbohF. Studies have shown that RbohC and RbohF genes have an important role in adapting to stress in rapeseed. The expression of both genes is regulated by MAPK kinase signaling pathway, and is regulated by H2O2 feedback. The RbohC and RbohF genes in the cultivar, the coldresistant ‘Long you 6’, are more sensitive to the H2O2 and MAPK kinase signaling pathways.

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张腾国,李 瑶,刁志宏,等.白菜型油菜RbohCRbohF基因克隆与表达分析[J].西北植物学报,2018,38(10):1767-1776

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  • 在线发布日期: 2018-11-23
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