Overexpression of ScALDH21 gene in cotton improves drought tolerance and growth in greenhouse and field conditions

被引:43
作者
Yang, Honglan [1 ,2 ]
Zhang, Daoyuan [1 ,4 ]
Li, Xiaoshuang [1 ]
Li, Haiyan [1 ]
Zhang, Dawei
Lan, Haiyan [3 ]
Wood, Andrew J. [5 ]
Wang, Jiancheng [1 ]
机构
[1] Chinese Acad Sci, Xinjiang Inst Ecol & Geog, Key Lab Biogeog & Bioresource Arid Land, Xinjiang 830011, Urumqi, Peoples R China
[2] Xinjiang Univ, Coll Resource & Environm Sci, Urumqi 830046, Peoples R China
[3] Xinjiang Univ, Coll Life Sci & Technol, Xinjiang Key Lab Biol Resources & Genet, Urumqi 830046, Peoples R China
[4] Xinjiang Acad Agr Sci, Econ Crop Res Inst, Urumqi 830091, Peoples R China
[5] Southern Illinois Univ Carbondale, Dept Plant Biol, Carbondale, IL 62901 USA
关键词
Syntrichia caninervis; ScALDH21; Transgenic cotton; Drought tolerance; Cotton yield; ALDEHYDE-DEHYDROGENASE GENE; GOSSYPIUM-HIRSUTUM L; INCREASES FIBER YIELD; OXIDATIVE STRESS; ABIOTIC STRESS; SALT TOLERANCE; GLYCINEBETAINE SYNTHESIS; ARABIDOPSIS-THALIANA; LIPID-PEROXIDATION; TRANSGENIC COTTON;
D O I
10.1007/s11032-015-0422-2
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Aldehyde dehydrogenase (ALDH) is essential for scavenging redundant aldehydes when plants are exposed to stress. The aim of the present study was to validate the ectopic expression of the ScALDH21 gene, which is isolated from Syntrichia caninervis, an extremely drought-tolerant moss, to improve drought tolerance in cotton (Gossypium hirsutum L.). In our study, the ScALDH21-transformed cotton was identified via PCR, RT-PCR, and DNA gel blotting, and the growth and physiological characteristics related to drought tolerance were compared between the transgenic cotton (TC) and non-transgenic cotton (NT) grown in a greenhouse and in field conditions. The results indicated that TC accumulated approximately 11.8-304 % more proline than did NT under drought stress, and produced a lower concentration of lipid peroxidation-derived reactive aldehydes and had a higher peroxidase activity under oxidative stress. Moreover, TC showed reduced loss of the net photosynthetic rate compared with NT. Under field conditions, TC showed greater plant height, larger bolls, and greater cotton fiber yield than NT, but no significant difference in fiber quality between TC and NT following different water-withholding treatments. These results suggest that overexpression of ScALDH21 can greatly improve the drought tolerance of cotton without reduction in yield and fiber quality.
引用
收藏
页数:13
相关论文
共 50 条
  • [21] Co-overexpression of AVP1 and AtNHX1 in Cotton Further Improves Drought and Salt Tolerance in Transgenic Cotton Plants
    Guoxin Shen
    Jia Wei
    Xiaoyun Qiu
    Rongbin Hu
    Sundaram Kuppu
    Dick Auld
    Eduardo Blumwald
    Roberto Gaxiola
    Paxton Payton
    Hong Zhang
    Plant Molecular Biology Reporter, 2015, 33 : 167 - 177
  • [22] Genetic parameters of drought tolerance in cacao germplasm under field and greenhouse conditions
    de Carvalho, Mariana Rocha
    Lopes, Uilson Vanderlei
    Oliveira, Bruna Santos
    Novaes, Danilo Sampaio
    Valle, Raul Rene Melendez
    EUPHYTICA, 2024, 220 (07)
  • [23] Overexpression of cphA gene from Nostoc flagelliforme improves the drought tolerance of Arabidopsis thaliana
    Wang, Lingxia
    Wang, Shuping
    Li, Xiaoxu
    Wang, Meng
    Zhang, Zheng
    Shi, Jing
    Xu, Tingting
    Liang, Wenyu
    SOUTH AFRICAN JOURNAL OF BOTANY, 2020, 132 : 127 - 131
  • [24] Overexpression of rice NAC gene SNAC1 in ramie improves drought and salt tolerance
    An, Xia
    Liao, Yiwen
    Zhang, Jingyu
    Dai, Lunjin
    Zhang, Na
    Wang, Bo
    Liu, Lijun
    Peng, Dingxiang
    PLANT GROWTH REGULATION, 2015, 76 (02) : 211 - 223
  • [25] Overexpression of a chrysanthemum transcription factor gene DgNAC1 improves drought tolerance in chrysanthemum
    Qian Zhao
    Ming Zhong
    Ling He
    Bei Wang
    Qing-lin Liu
    Yuan-zhi Pan
    Bei-bei Jiang
    Lei Zhang
    Plant Cell, Tissue and Organ Culture (PCTOC), 2018, 135 : 119 - 132
  • [26] Overexpression of an H+-PPase gene from Thellungiella halophila in cotton enhances salt tolerance and improves growth and photosynthetic performance
    Lv, Sulian
    Zhang, Kewei
    Gao, Qiang
    Lian, Lijun
    Song, Yingjie
    Zhang, Juren
    PLANT AND CELL PHYSIOLOGY, 2008, 49 (08) : 1150 - 1164
  • [27] Overexpression of rice NAC gene SNAC1 in ramie improves drought and salt tolerance
    Xia An
    Yiwen Liao
    Jingyu Zhang
    Lunjin Dai
    Na Zhang
    Bo Wang
    Lijun Liu
    Dingxiang Peng
    Plant Growth Regulation, 2015, 76 : 211 - 223
  • [28] Overexpression of AtERF019 delays plant growth and senescence, and improves drought tolerance in Arabidopsis
    Scarpeci, Telma E.
    Frea, Vanesa S.
    Zanor, Maria I.
    Valle, Estela M.
    JOURNAL OF EXPERIMENTAL BOTANY, 2017, 68 (03) : 673 - 685
  • [29] Drought-induced increase in catalase activity improves cotton yield when grown under water-limiting field conditions
    Liu, Rui-Na
    Jiao, Tian-Qi
    Li, Jin
    Wang, Ai-Ying
    Li, Yu-Xia
    Wu, Shen-Jie
    Du, Li-Qun
    Dijkwel, Paul P.
    Zhu, Jian-Bo
    JOURNAL OF AGRONOMY AND CROP SCIENCE, 2022, 208 (06) : 853 - 867
  • [30] Co-overexpression of RCA and AVP1 in cotton substantially improves fiber yield for cotton under drought, moderate heat, and salt stress conditions
    Smith, Jennifer
    Wijewardene, Inosha
    Cai, Yifan
    Esmaeili, Nardana
    Shen, Guoxin
    Hequet, Eric
    Ritchie, Glen
    Payton, Paxton
    Zhang, Hong
    CURRENT RESEARCH IN BIOTECHNOLOGY, 2023, 5