拟南芥
基因
RNA剪接
基因座(遗传学)
抑制器
转录因子
选择性拼接
转录组
生物
遗传学
细胞生物学
突变体
基因亚型
基因表达
核糖核酸
作者
Qiuling Feng,Luming Zhao,Shaolong Jiang,Yanxin Qiu,Tingting Zhai,Shaowei Yu,Wei Yang,Shuxin Zhang
标识
DOI:10.1016/j.jhazmat.2024.133528
摘要
Cadmium (Cd) is a heavy metal and a toxic substance. Soil Cd pollution has emerged as a significant environmental issue that jeopardizes both the safety of agricultural products and human health. PLEIOTROPIC REGULATORY LOCUS 1 (PRL1) has been identified as a crucial factor in Cd stress and a series of defence mechanisms. However, the mechanism through which PRL1 mediates its downstream signalling has remained poorly understood. Here, we discovered a prl1–2 suppressor (sup8) for prl1–2 that complemented the defective development phenotype of prl1–2 under Cd stress. Gene cloning revealed a mutation in the C2H2 transcription factor ZAT17 as the basis for the sup8 phenotype. Genetic and biochemical studies indicated that ZAT17 acts as a negative regulator of Cd tolerance. Transcriptome analysis revealed that ZAT17 influences the alternative splicing (AS) process of multiple Cd-responsive genes by interacting with members of the MAC splicing complex, including PRL1 and CDC5. In conclusion, the identification of the novel gene ZAT17 enriches the understanding of the Cd stress response pathway and provides a valuable candidate locus for breeding Cd-resistant plant varieties.
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