WRKY蛋白质结构域
脱落酸
水杨酸
脯氨酸
非生物胁迫
MYB公司
耐旱性
丙二醛
非生物成分
转基因作物
生物
转录因子
转基因
植物
基因
生物化学
氨基酸
基因表达
抗氧化剂
转录组
古生物学
作者
Wenyan Shi,Yong-Tao Du,Jian Ma,Dong-Hong Min,Long‐Guo Jin,Jun Chen,Ming Chen,Yongbin Zhou,You‐Zhi Ma,Zhao‐Shi Xu,Xiaohong Zhang
摘要
WRKYs are important regulators in plant development and stress responses. However, knowledge of this superfamily in soybean is limited. In this study, we characterized the drought- and salt-induced gene GmWRKY12 based on RNA-Seq and qRT-PCR. GmWRKY12, which is 714 bp in length, encoded 237 amino acids and grouped into WRKY II. The promoter region of GmWRKY12 included ABER4, MYB, MYC, GT-1, W-box and DPBF cis-elements, which possibly participate in abscisic acid (ABA), drought and salt stress responses. GmWRKY12 was minimally expressed in different tissues under normal conditions but highly expressed under drought and salt treatments. As a nucleus protein, GmWRKY12 was responsive to drought, salt, ABA and salicylic acid (SA) stresses. Using a transgenic hairy root assay, we further characterized the roles of GmWRKY12 in abiotic stress tolerance. Compared with control (Williams 82), overexpression of GmWRKY12 enhanced drought and salt tolerance, increased proline (Pro) content and decreased malondialdehyde (MDA) content under drought and salt treatment in transgenic soybean seedlings. These results may provide a basis to understand the functions of GmWRKY12 in abiotic stress responses in soybean.
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