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

被引:0
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作者
Honglan Yang
Daoyuan Zhang
Xiaoshuang Li
Haiyan Li
Dawei Zhang
Haiyan Lan
Andrew J. Wood
Jiancheng Wang
机构
[1] Chinese Academy of Sciences,Key Laboratory of Biogeography and Bioresource in Arid Land, Xinjiang Institute of Ecology and Geography
[2] Xinjiang University,College of Resource and Environment Sciences
[3] Xinjiang University,Xinjiang Key Laboratory of Biological Resources and Genetic Engineering, College of Life Science and Technology
[4] Xinjiang Academy of Agricultural Sciences,Economic Crop Research Institute
[5] Southern Illinois University-Carbondale,Department of Plant Biology
来源
Molecular Breeding | 2016年 / 36卷
关键词
Transgenic cotton; Drought tolerance; Cotton yield;
D O I
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中图分类号
学科分类号
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.
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