FAILED
首站-论文投稿智能助手
典型文献
Evaluation of Thellungiella halophila ST7 for improving salt tolerance in cotton
文献摘要:
Background:Gossypium hirsutum(upland cotton)is one of the principal fiber crops in the world.Cotton yield is highly affected by abiotic stresses,among which salt stress is considered as a major problem around the globe.Trans-genic approach is efficient to improve cotton salt tolerance but depending on theavailability of salt tolerance genes.Results:In this study we evaluated salt tolerance candidate gene ST7from Thellungiella halophila,encoding a homolog of Arabidopsis aluminum-induced protein,in cotton.Our results showed that ThST7 overexpression in cotton improved germination under NaCl stress as well as seedling growth.Our field trials also showed that ThST7 transgenic cotton lines produced higher yield under salt stress conditions.The improved salt tolerance of the transgenic cotton lines was partially contributed by enhanced antioxidation as shown by diaminobenzidine(DAB)and nitrotetrazolium blue chloride(NBT)staining.Moreover,transcriptomic analysis of ThST7overexpression lines showed a significant upregulation of the genes involved in ion homeostasis and antioxidation,consistent with the salt tolerance pheno-type of the transgenic cotton.Conclusions:Our results demonstrate that ThST7 has the ability to improve salt tolerance in cotton.The ThST7 trans-genic cotton may be used in cotton breeding for salt tolerance cultivars.
文献关键词:
作者姓名:
ALI Mohsin;NAZISH Tahmina;JAVAID Ayesha;ZHU Yonghong;LI Jing;ZHANG Huangyang;WU Jie;XIANG Chengbin;WU Shenjie;ALFATIH Alamin
作者机构:
Division of Molecular&Cell Biophysics,School of Life Sciences,Hefei National Science Center for Physical Sciences at the Microscale,University of Science andTTechnology of China,The Innovative Academy of Seed Design,Chinese Academy of Sciences,Hefei,Anhui,China;Institute of Cotton Research,Shanxi Agricultural University,Yuncheng 044000,China;College of Life Sci-ences,Shanxi Agricultural University,Taiyuan 030031,China
引用格式:
[1]ALI Mohsin;NAZISH Tahmina;JAVAID Ayesha;ZHU Yonghong;LI Jing;ZHANG Huangyang;WU Jie;XIANG Chengbin;WU Shenjie;ALFATIH Alamin-.Evaluation of Thellungiella halophila ST7 for improving salt tolerance in cotton)[J].棉花研究(英文),2022(01):1-11
A类:
Thellungiella,theavailability,ST7from,ThST7,nitrotetrazolium,ThST7overexpression
B类:
Evaluation,halophila,improving,salt,tolerance,cotton,Background,Gossypium,hirsutum,upland,one,principal,fiber,crops,world,Cotton,yield,highly,affected,by,abiotic,stresses,among,which,considered,major,problem,around,globe,Trans,approach,efficient,depending,genes,Results,In,this,study,evaluated,candidate,encoding,homolog,Arabidopsis,aluminum,induced,protein,Our,results,showed,that,improved,germination,under,NaCl,well,seedling,growth,field,trials,also,transgenic,lines,produced,higher,conditions,was,partially,contributed,enhanced,antioxidation,shown,diaminobenzidine,DAB,blue,chloride,NBT,staining,Moreover,transcriptomic,analysis,significant,upregulation,involved,homeostasis,consistent,pheno,type,Conclusions,demonstrate,has,may,used,breeding,cultivars
AB值:
0.478802
相似文献
RNAi-mediated suppression of the abscisic acid catabolism gene OsABA8ox1 increases abscisic acid content and tolerance to saline-alkaline stress in rice(Oryza sativa L.)
Xiaolong Liu;Xianzhi Xie;Chongke Zheng;Lixing Wei;Xiaowei Li;Yangyang Jin;Guohui Zhang;Chang-Jie Jiang;Zhengwei Liang-Northeast Institute of Geography and Agroecology,Chinese Academy of Sciences,Changchun 130102,Jilin,China;College of Life Science and Resources and Environment,Yichun University,Yichun 336000,Jiangxi,China;Shandong Rice Research Institute,Shandong Academy of Agricultural Sciences,Jinan 250100,Shandong,China;Dongying Academy of Agricultural Sciences,Dongying 257091,Shandong,China;College of Life Sciences,Engineering Research Center of the Chinese Ministry of Education for Bioreactor and Pharmaceutical Development,Jilin Agricultural University,Changchun 130118,Jilin,China;Da'an Sodic Land Experiment Station,Da'an 131317,Jilin,China;Institute of Agrobiological Sciences,NARO,Kannondai 2-1-2,Tsukuba 305-8602,Japan
Agronomical selection on loss-of-function of GIGANTEA simultaneously facilitates soybean salt tolerance and early maturity
Lidong Dong;Zhihong Hou;Haiyang Li;Zhaobo Li;Chao Fang;Lingping Kong;Yongli Li;Hao Du;Tai Li;Lingshuang Wang;Milan He;Xiaohui Zhao;Qun Cheng;Fanjiang Kong;Baohui Liu-Guangdong Key Laboratory of Plant Adaptation and Molecular Design,Guangzhou Key Laboratory of Crop Gene Editing,Innovative Center of Molecular Genetics and Evolution,School of Life Sciences,Guangzhou University,Guangzhou Higher Education Mega Center,Guangzhou 510006,China;College of Agriculture,Heilongjiang Bayi Agricultural University,Daqing 510062,China;National Key Laboratory of Crop Genetics and Germplasm Enhancement,National Center for Soybean Improvement,Jiangsu Collaborative Innovation Center for Modern Crop Production,Nanjing Agricultural University,Nanjing 210095,China;College of Agriculture,Jilin Agricultural Science and Technology University,Jilin 132101,China;The Innovative Academy of Seed Design,Key Laboratory of Soybean Molecular Design Breeding,Northeast Institute of Geography and Agroecology,Chinese Academy of Sciences,Harbin 150081,China
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。