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Cloning and Expression Vector Construction of BnOPR1 from Brassica napus
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作者 CHENG Yi-yuan YUAN Yu-hui +5 位作者 WANG Yan-hong GONG Sha LING Hui HUANG Jing-yi ZHONG Pin-tian LIU Xian-jun 《Agricultural Science & Technology》 2025年第3期6-14,共9页
The 12-oxophytodienoate reductase(OPR),a flavin mononucleotide-dependent oxidoreductase,regulates plant responses to stress conditions such as heavy metals,drought,saline-alkali,pests,and diseases by participating in ... The 12-oxophytodienoate reductase(OPR),a flavin mononucleotide-dependent oxidoreductase,regulates plant responses to stress conditions such as heavy metals,drought,saline-alkali,pests,and diseases by participating in the synthesis of plant hormones such as jasmonic acid(JA).In this study,homologous cloning was employed to obtain the Brassica napus‘Zhongshuang 11’OPR1 gene(BnOPR1).Bioinformatics analysis was conducted for the deduced protein BnOPR1,and a plant expression vector for BnOPR1 was constructed.The bioinformatics analysis revealed that BnOPR1 was 1125 bp in length,encoding 375 amino acid residues.The deduced protein had a molecular weight of 41.604 kDa,an isoelectric point of 6.05,a molecular formula of C1853H2855N511O550S16,an aliphatic index of 35.47,a lipophilicity index of 74.87,and an instability index of 39.49.It had 49 phosphorylation sites and lacked transmembrane domains and signal peptides.The phylogenetic analysis indicated that BnOPR1 had a close relationship with the OPR1 protein from Brassica rapa since they shared the same clade,while it had a distant relationship with the OPR1 protein from Raphanus sativus.In this paper,the expression vector for BnOPR1 was successfully constructed by seamless cloning and named pBnOPR1.The findings laid a foundation for further studying the roles of BnOPR1 in the response to antimony stress. 展开更多
关键词 Brassica napus bnopr1 gene Homologous cloning Vector construction
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甘蓝型冬油菜亚麻酸代谢参与应答低温胁迫的转录组学分析
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作者 李国斌 党林学 +7 位作者 郑国强 董小云 魏家萍 崔俊美 李辉 王莹 田海燕 刘自刚 《分子植物育种》 北大核心 2025年第9期2866-2876,共11页
低温胁迫下有机体可通过改变膜系统脂肪酸组成与比例,以调节其流动性应答与适应冷环境,亚麻酸及其代谢中间产物是油菜脂肪酸代谢的重要组成部分,本研究以两个抗寒性不同的甘蓝型冬油菜品种NS(强抗寒)和NF(低温敏感)为试验材料,通过转录... 低温胁迫下有机体可通过改变膜系统脂肪酸组成与比例,以调节其流动性应答与适应冷环境,亚麻酸及其代谢中间产物是油菜脂肪酸代谢的重要组成部分,本研究以两个抗寒性不同的甘蓝型冬油菜品种NS(强抗寒)和NF(低温敏感)为试验材料,通过转录组学分析,探讨甘蓝型冬油菜亚麻酸代谢参与调控低温应答的分子机制。结果表明,亚麻酸代谢通路在常温和-4℃处理12 h时均显著富集,在两个品种间筛选得30个仅在低温胁迫下显著差异表达的特异基因,其中27个基因上调表达,3个基因下调表达。RT-qPCR证实BnAOC和BnOPR基因均为显著上调基因,BnAOC编码丙二烯氧化物环化酶,属于亲水蛋白,分布在叶绿体上,包含一个Allene-ox-cyc结构域;BnOPR编码12-氧-植物二烯酸还原酶,属于亲水蛋白,主要分布在细胞质,包含一个OYE-like-FMN结构域。不同抗寒性冬油菜的BnAOC和BnOPR基因的碱基均有有义突变的发生,但碱基总数保持不变。 展开更多
关键词 甘蓝型油菜 低温胁迫 亚麻酸代谢 BnAOC bnopr
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