Transcriptome Analysis Reveals Drought-Responsive Pathways and Key Genes of Two Oat (Avena sativa) Varieties

萎蔫 阿韦纳 生物 耐旱性 转录组 干旱胁迫 警卫室 蜡 WRKY蛋白质结构域 脱落酸 干燥 植物 基因 农学 基因表达 生物化学
作者
Weiwei Xu,Laichun Guo,Chunlong Wang,Liming Wei,Qiang Wang,Qinyong Ren,Xiwu Yang,Chao Zhan,Xiao‐Tian Liang,Junying Wang,Changzhong Ren
出处
期刊:Plants [Multidisciplinary Digital Publishing Institute]
卷期号:13 (2): 177-177 被引量:6
标识
DOI:10.3390/plants13020177
摘要

To cope with the yield loss caused by drought stress, new oat varieties with greater drought tolerance need to be selected. In this study, two oat varieties with different drought tolerances were selected for analysis of their phenotypes and physiological indices under moderate and severe soil drought stress. The results revealed significant differences in the degree of wilting, leaf relative water content (RWC), and SOD and CAT activity between the two oat genotypes under severe soil drought stress; moreover, the drought-tolerant variety exhibited a significant increase in the number of stomata and wax crystals on the surface of both the leaf and guard cells; additionally, the morphology of the guard cells was normal, and there was no significant disruption of the grana lamella membrane or the nuclear envelope. Furthermore, transcriptome analysis revealed that the expression of genes related to the biosynthesis of waxes and cell-wall components, as well as those of the WRKY family, significantly increased in the drought-tolerant variety. These findings suggest that several genes involved in the antioxidant pathway could improve drought tolerance in plants by regulating the increase/decrease in wax and cell-wall constituents and maintaining normal cellular water potential, as well as improving the ability of the antioxidant system to scavenge peroxides in oats.
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