Isolation and Abiotic Stress Resistance Analyses of a Catalase Gene fromIpomoea batatas(L.) Lam

过氧化氢酶 甘薯 打开阅读框 非生物胁迫 活性氧 生物 基因 非生物成分 旋花科 生物化学 植物 抗氧化剂 肽序列 古生物学
作者
Bin Yong,Xiaoyan Wang,Pan Xu,Haiyan Zheng,Xueting Fei,Zixi Hong,Qianli Ma,Yuzhi Miao,Xianghua Yuan,Yi Jiang,Huanhuan Shao
出处
期刊:BioMed Research International [Hindawi Publishing Corporation]
卷期号:2017: 1-10 被引量:21
标识
DOI:10.1155/2017/6847532
摘要

As an indicator of the antioxidant capability of plants, catalase can detoxify reactive oxygen species (ROS) generated by environmental stresses. Sweet potato is one of the top six most important crops in the world. However, its catalases remain largely unknown. In this study, a catalase encoding gene, IbCAT2 (accession number: KY615708), was identified and cloned from sweet potato cv. Xushu 18. It contained a 1479 nucleotides’ open reading frame (ORF). S-R-L, Q-K-L, and a putative calmodulin binding domain were located at the C-terminus of IbCAT2, which suggests that IbCAT2 could be a peroxisomal catalase. Next-generation sequencing (NGS) based quantitative analyses showed that IbCAT2 was mainly expressed in young leaves and expanding tuberous roots under normal conditions. When exposed to 10% PEG6000 or 200 mmol/L NaCl solutions, IbCAT2 was upregulated rapidly in the first 11 days and then downregulated, although different tissues showed different degree of change. Overexpression of IbCAT2 conferred salt and drought tolerance in Escherichia coli and Saccharomyces cerevisiae . The positive response of IbCAT2 to abiotic stresses suggested that IbCAT2 might play an important role in stress responses.

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