数字农科院2.0

Cloning and characterization of gene encoding a Mn-containing superoxide dismutase in Eutrema halophilum

文献类型: 外文期刊

作者: Xu, X. J.;Zhou, Y. J.;Bu, H. H.;Feng, J. C.;Ren, D. T.;Wang, G. Y.

作者机构:

关键词: gene expression;NaCl;RACE;RT-PCR;salt cress;ThMSD;transgenic plants

期刊名称: BIOLOGIA PLANTARUM

ISSN: 0006-3134

年卷期: 2014 年 58 卷 1 期

页码:

收录情况: SCI

摘要: A gene encoding Mn-containing superoxide dismutase (Mn-SOD), designated as ThMSD, was cloned from salt cress (Eutrema halophilum) by reverse transcriptase - polymerase chain reaction (RT-PCR) and rapid amplification of cDNA ends (RACE). The full length of ThMSD (acc. No. EF413171) is 1 047 bp with an open reading frame (ORF) of 693 bp. The deduced 231-amino acid polypeptide had a predicted molecular mass of 25.5 kDa, an estimated pI of 9.08, and a putative Mn-binding site. Recombinant ThMSD protein was expressed in Escherichia coli and characterized. The SOD activity of ThMSD was inactivated by sodium azide but not by potassium cyanide or hydrogen peroxide confirming that ThMSD is a Mn-SOD. Real-time PCR revealed that ThMSD was expressed in roots, rosette leaves, stems, stem leaves, flowers, and siliques. ThMSD mRNA reached the highest content in roots and its content increased when plants were treated with NaCl (in a concentration dependent manner), ABA, and subjected to drought. ThMSD was transformed into Arabidopsis and the stress tolerance properties of transgenic lines were assayed. The seeds of transgenic lines exhibited significantly higher germination rate under 100 and 150 mM NaCl than the wild type. The root growth of transgenic lines was affected less obviously than the wild type under 100 mM NaCl. The above results indicate that ThMSD played an important role in E. halophilum tolerance to environmental stresses, especially NaCl stress.

分类号:

  • 相关文献

[1]Cloning and Expression of the Chloroplast Copper/Zinc-Superoxide Dismutase Gene in Upland Cotton (Gossypium hirsutum L.). Yu Shuxun,Fan Shuli,Song Meizhen. 2007

[2]Deletion of the 3′ End of the Introduced cry1Ac Gene Retains the Insecticidal Activity in Transgenic Cotton. Chunmeng Huang,Yongjun Zhang,Huilin Yu,Chenhui Hou,Haoyuan Guan,Xiuping Chen,Jiajian Xie. 2024

[3]陆地棉耐盐相关基因(GhVP)的克隆及分析. 叶武威,赵云雷,王俊娟,樊保香,王德龙. 2010

[4]镰形扇头蜱IgG结合蛋白基因的克隆与表达分析. 万修红,周勇志,向飞宇,张文杰,周金林. 2007

[5]草地螟触角普通气味结合蛋白基因的克隆及序列分析. 尹姣,刘怀,王进军,李克斌,韦永贵,曹雅忠. 2008

[6]差异显示和RACE技术的发展与应用. 孔凡晶,马有志,陈孝,辛志勇. 2003

[7]紫花苜蓿LEA第3组基因(MsLEA3-1)的克隆与分析. 金后聪,杨青川,孙彦,康俊梅,晁跃辉,金洪,龙瑞才,李燕. 2010

[8]牛FABGL基因cDNA的克隆与序列分析. 马云,许尚忠,高雪,张英汉,辛亚平,高树新,任红艳. 2006

[9]Drought and salinity adaptive mechanisms in japonica and indica/japonica rice varieties: a bilateral comparative study. Hazman, Mohamed,Guo, Longbiao,Tong, Hanhua,Hause, Bettina,Eiche, Elisabeth,Riemann, Michael,Fawzy, Samer,Nick, Peter. 2025

[10]Molecular cloning and characterization of a novel stress responsive gene in alfalfa. Sun, Y.,Long, R.,Yang, Q.,Kang, J.,Chao, Y.,Wu, M.,Long, R.,Wang, P.,Qin, Z.. 2012

[11]A 90-day safety study of genetically modified rice expressing rhIGF-1 protein in C57BL/6J rats. Tang, Maoxue,Cheng, Wenke,Qian, Lili,Yang, Shulin,Cui, Wentao,Li, Kui,Tang, Maoxue,Cheng, Wenke,Qian, Lili,Yang, Shulin,Cui, Wentao,Li, Kui,Xie, Tingting,Yang, Daichang.

[12]Xuhuai Goat H-FABP Gene Clone, Subcellular Localization of Expression Products and the Preparation of Transgenic Mice. Yin, Yan-hui,Li, Bi-chun,Wei, Guang-hui,Zhu, Cai-ye,Li, Wei,Zhang, Ya-ni,Du, Li-xin,Cao, Wen-guang.

[13]Tissue-specific mRNA expression profiles of GDF9, BMP15, and BMPR1B genes in prolific and non-prolific goat breeds. Pan, Z. Y.,Di, R.,Tang, Q. Q.,Jin, H. H.,Chu, M. X.,Huang, D. W.,He, J. N.,Liu, Q. Y.,Hu, W. P.,Wang, X. Y.,Yao, Y. X.,Liu, L.,Song, C. L..

[14]Improved salt tolerance and delayed leaf senescence in transgenic cotton expressing the Agrobacterium IPT gene. Y.D. Liu,Z.J. Yin,J.W. YU,J. LI,H.L. WEI,X.L. HAN,F.F. SHEN.

[15]PHYSIOLOGICAL AND BIOCHEMICAL RESPONSES TO NACl SALINITY STRESS IN THREE ROEGNERIA (POACEAE) SPECIES. Xie, Jihong,Dai, Yating,Mu, Huaibin,De, Ying,Wu, Zinian,Yu, Linqing,Ren, Weibo,Xie, Jihong,Dai, Yating,Mu, Huaibin,De, Ying,Wu, Zinian,Yu, Linqing,Ren, Weibo,Chen, Hao. 2016

[16]NaCl Facilitates Cell Wall Phosphorus Reutilization in Abscisic Acid Dependent Manner in Phosphorus Deficient Rice Root. Yang Xiaozheng,Liu Yusong,Huang Jing,Tao Ye,Wang Yifeng,Shen Renfang,Zhu Xiaofang. 2023

[17]Pretreatment with h2 o2 alleviates the negative impacts of nacl stress on seed germination of tartary buckwheat (Fagopyrum tataricum). Xin Yao,Meiliang Zhou,Jingjun Ruan,Yan Peng,Hao Yang,Yong Tang,Anjing Gao,Jianping Cheng. 2021

[18]Combined transcriptomic and metabolomic analyses elucidate key salt-responsive biomarkers to regulate salt tolerance in cotton. Mingge Han,Ruifeng Cui,Delong Wang,Hui Huang,Cun Rui,Waqar Afzal Malik,Jing Wang,Hong Zhang,Nan Xu,Xiaoyu Liu,Yuqian Lei,Tiantian Jiang,Liangqing Sun,Kesong Ni,Yapeng Fan,Yuexin Zhang,Junjuan Wang,Xiugui Chen,Xuke Lu,Zujun Yin,Shuai Wang,Lixue Guo,Lanjie Zhao,Chao Chen,Wuwei Ye. 2023

[19]Exploring changes in aggregation and gel network morphology of soybean protein isolate induced by pH, NaCl, and temperature in view of interactions. Ang Meng,Binyu Luan,Wenjing Zhang,Yan Zheng,Boli Guo,Bo Zhang. 2024

[20]Genome-wide transcriptome profiling reveals molecular response pathways of Trichoderma harzianum in response to salt stress. Qihong Yang,Zhenchuan Mao,Yali Hao,Shijie Zheng,Jianlong Zhao,Yan Li,Yuhong Yang,Bingyan Xie,Jian Ling,Yanlin Li. 2024

作者其他论文 更多>>