油菜素甾醇
RNA剪接
生物
细胞生物学
基因沉默
基因敲除
信号转导
选择性拼接
翻译(生物学)
基因表达
信使核糖核酸
基因
拟南芥
遗传学
核糖核酸
突变体
作者
Zhen Gao,Yifan Su,Li Wang,Yeqi Li,Yue Wu,Xinru Sun,Yuxin Yao,Chao Ma,Jing Li,Yuanpeng Du
摘要
Summary Soil salinization is a major factor limiting the sustainable development of the grape industry. Circular RNAs (circRNAs) are more stable than linear mRNAs and are involved in stress responses. However, the biological functions and molecular mechanisms underlying antisense circRNAs in plants remain unclear. We identified the antisense circRNA VvcircABH through high‐throughput sequencing. Using genetic transformation methods and molecular biological techniques, we analyzed the effects of VvcircABH on the response to salt stress and the mechanisms underlying its effects. VvcircABH was located in the nucleus and upregulated by salt stress, while the expression level of its cognate gene VvABH (alpha/beta‐hydrolase) was downregulated. VvcircABH overexpression or VvABH silencing greatly enhanced grape salt tolerance. VvcircABH could bind to the overlapping region and inhibits VvABH pre‐mRNA splicing, thereby decreasing the expression level of VvABH . Additionally, VvcircABH repressed the additive effect of VvABH on the interaction between VvBRI1 (brassinosteroid‐insensitive 1) and VvBKI1 (BRI1 kinase inhibitor 1), thus influencing the plant's response to BR, which plays important roles in plant salt tolerance. We conclude that VvcircABH and VvABH play distinct roles in the salt tolerance and brassinosteroid signaling response, and VvcircABH could govern the expression of VvABH by inhibiting its splicing.
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