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bZIP17调控与种子储存和萌发相关的基因表达,降低种子对渗透胁迫的敏感性。

bZIP17 regulates the expression of genes related to seed storage and germination, reducing seed susceptibility to osmotic stress.

作者信息

Cifuentes-Esquivel Nicolás, Celiz-Balboa Jonathan, Henriquez-Valencia Carlos, Mitina Irina, Arraño-Salinas Paulina, Moreno Adrián A, Meneses Claudio, Blanco-Herrera Francisca, Orellana Ariel

机构信息

Centro de Biotecnología Vegetal, Facultad de Ciencias Biológicas, Universidad Andres Bello, Santiago, Chile.

FONDAP Center for Genome Regulation, Centro de Biotecnología Vegetal, Universidad Andres Bello, Santiago, Chile.

出版信息

J Cell Biochem. 2018 Aug;119(8):6857-6868. doi: 10.1002/jcb.26882. Epub 2018 Apr 25.

Abstract

Low temperatures, salinity, and drought cause significant crop losses. These conditions involve osmotic stress, triggering transcriptional remodeling, and consequently, the restitution of cellular homeostasis and growth recovery. Protein transcription factors regulate target genes, thereby mediating plant responses to stress. bZIP17 is a transcription factor involved in cellular responses to salinity and the unfolded protein response. Because salinity can also produce osmotic stress, the role of bZIP17 in response to osmotic stress was assessed. Mannitol treatments induced the transcript accumulation and protein processing of bZIP17. Transcriptomic analyses showed that several genes associated with seed storage and germination showed lower expression in bzip17 mutants than in wild-type plants. Interestingly, bZIP17 transcript was more abundant in seeds, and germination analyses revealed that wild-type plants germinated later than bzip17 mutants in the presence of mannitol, but no effects were observed when the seeds were exposed to ABA. Finally, the transcript levels of bZIP17 target genes that control seed storage and germination were assessed in seeds exposed to mannitol treatments, which showed lower expression levels in bzip17 mutants compared to the wild-type seeds. These results suggest that bZIP17 plays a role in osmotic stress, acting as a negative regulator of germination through the regulation of genes involved in seed storage and germination.

摘要

低温、盐度和干旱会导致农作物严重减产。这些条件会引发渗透胁迫,触发转录重塑,从而恢复细胞内稳态并使生长恢复。蛋白质转录因子调控靶基因,进而介导植物对胁迫的响应。bZIP17是一种参与细胞对盐度和未折叠蛋白反应的转录因子。由于盐度也会产生渗透胁迫,因此评估了bZIP17在响应渗透胁迫中的作用。甘露醇处理诱导了bZIP17的转录积累和蛋白质加工。转录组分析表明,与种子储存和萌发相关的几个基因在bzip17突变体中的表达低于野生型植物。有趣的是,bZIP17转录本在种子中更为丰富,萌发分析显示,在甘露醇存在的情况下,野生型植物的萌发时间比bzip17突变体晚,但当种子暴露于脱落酸时未观察到影响。最后,在经过甘露醇处理的种子中评估了控制种子储存和萌发的bZIP17靶基因的转录水平,结果显示与野生型种子相比,bzip17突变体中的表达水平较低。这些结果表明,bZIP17在渗透胁迫中发挥作用,通过调控参与种子储存和萌发的基因,作为萌发的负调节因子。

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