Comparative Transcriptome Analysis Reveals Potential Gene Modules Associated with Cold Tolerance in Sugarcane (Saccharum officinarum L.)

被引:0
|
作者
Xing Huang
Yongsheng Liang
Baoqing Zhang
Xiupeng Song
Yangrui Li
Changning Li
Zhengqiang Qin
Dewei Li
Jiguang Wei
Jianming Wu
机构
[1] Guangxi University,College of Agriculture
[2] Guangxi Academy of Agricultural Sciences,Sugarcane Research Institute
[3] Ministry of Agriculture,Key Laboratory of Sugarcane Biotechnology and Genetic Improvement
[4] Guangxi Academy of Agricultural Sciences,Guangxi Key Laboratory of Sugarcane Genetic Improvement
[5] Nanning Institute of Agricultural Sciences,undefined
来源
Journal of Plant Growth Regulation | 2022年 / 41卷
关键词
Sugarcane; Transcriptome; Cold tolerance; Metabolism; Gene module;
D O I
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中图分类号
学科分类号
摘要
Sugarcane is an important crop worldwide, and most sugar is derived directly from sugarcane. Due to its thermophilic nature, the yield of sugarcane is largely influenced by extreme climate conditions, especially cold stress. Therefore, the development of sugarcane with improved cold tolerance is an important goal. However, little is known about the multiple mechanisms underlying cold acclimation at the bud stage in sugarcane. In this study, we emphasized that sensitivity to cold stress was higher for the sugarcane variety ROC22 than for GT42, as determined by physical signs, including bud growth capacity, relative conductivity, malonaldehyde contents, and soluble sugar contents. To understand the factors contributing to the difference in cold tolerance between ROC22 and GT42, comparative transcriptome analyses were performed. We found that genes involved in the regulation of the stability of the membrane system were the relative determinants of difference in cold tolerance. Additionally, genes related to protein kinase activity, starch metabolism, and calcium signal transduction were associated with cold tolerance. Finally, 25 candidate genes, including 23 variety-specific and 2 common genes, and 7 transcription factors were screened out for understanding the possible cold resistance mechanism. The findings of this study provide candidate gene resources for cold resistance and will improve our understanding of the regulation of cold tolerance at the bud stage in sugarcane.
引用
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页码:2614 / 2628
页数:14
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