分生组织
生物
RNA剪接
细胞生物学
拟南芥
选择性拼接
拼接因子
遗传学
基因
核糖核酸
基因亚型
突变体
作者
H L Thompson,Weiran Shen,Rodrigo Matus,Medhavi Kakkar,Carl M. Jones,David Dolan,Sushma Nagaraja Grellscheid,Xiyan Yang,Na Zhang,Sina Mozaffari‐Jovin,Chunli Chen,Xianlong Zhang,Jennifer F. Topping,Keith Lindsey
出处
期刊:Development
[The Company of Biologists]
日期:2023-03-27
卷期号:150 (7)
被引量:12
摘要
ABSTRACT Plants respond to environmental stresses through controlled stem cell maintenance and meristem activity. One level of gene regulation is RNA alternative splicing. However, the mechanistic link between stress, meristem function and RNA splicing is poorly understood. The MERISTEM-DEFECTIVE (MDF) Arabidopsis gene encodes an SR-related family protein, required for meristem function and leaf vascularization, and is the likely orthologue of the human SART1 and yeast Snu66 splicing factors. MDF is required for the correct splicing and expression of key transcripts associated with root meristem function. We identified RSZ33 and ACC1, both known to regulate cell patterning, as splicing targets required for MDF function in the meristem. MDF expression is modulated by osmotic and cold stress, associated with differential splicing and specific isoform accumulation and shuttling between nucleus and cytosol, and acts in part via a splicing target SR34. We propose a model in which MDF controls splicing in the root meristem to promote stemness and to repress stress response, cell differentiation and cell death pathways.
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