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剪接因子SR34b突变通过调控铁调节转运蛋白1基因降低拟南芥对镉的耐受性。

Splicing factor SR34b mutation reduces cadmium tolerance in Arabidopsis by regulating iron-regulated transporter 1 gene.

作者信息

Zhang Wentao, Du Bojing, Liu Di, Qi Xiaoting

机构信息

College of Life Science, Capital Normal University, Beijing 100048, China.

College of Life Science, Capital Normal University, Beijing 100048, China.

出版信息

Biochem Biophys Res Commun. 2014 Dec 12;455(3-4):312-7. doi: 10.1016/j.bbrc.2014.11.017. Epub 2014 Nov 15.

Abstract

Serine/arginine-rich (SR) proteins are important splicing factors. However, the biological functions of plant SR proteins remain unclear especially in abiotic stresses. Cadmium (Cd) is a non-essential element that negatively affects plant growth and development. In this study, we provided clear evidence for SR gene involved in Cd tolerance in planta. Systemic expression analysis of 17 Arabidopsis SR genes revealed that SR34b is the only SR gene upregulated by Cd, suggesting its potential roles in Arabidopsis Cd tolerance. Consistent with this, a SR34b T-DNA insertion mutant (sr34b) was moderately sensitive to Cd, which had higher Cd(2+) uptake rate and accumulated Cd in greater amounts than wild-type. This was due to the altered expression of iron-regulated transporter 1 (IRT1) gene in sr34b mutant. Under normal growth conditions, IRT1 mRNAs highly accumulated in sr34b mutant, which was a result of increased stability of IRT1 mRNA. Under Cd stress, however, sr34b mutant plants had a splicing defect in IRT1 gene, thus reducing the IRT1 mRNA accumulation. Despite of this, sr34b mutant plants still constitutively expressed IRT1 proteins under Cd stress, thereby resulting in Cd stress-sensitive phenotype. We therefore propose the essential roles of SR34b in posttranscriptional regulation of IRT1 expression and identify it as a regulator of Arabidopsis Cd tolerance.

摘要

富含丝氨酸/精氨酸(SR)的蛋白质是重要的剪接因子。然而,植物SR蛋白的生物学功能仍不清楚,尤其是在非生物胁迫方面。镉(Cd)是一种对植物生长发育有负面影响的非必需元素。在本研究中,我们为植物中参与镉耐受性的SR基因提供了明确证据。对17个拟南芥SR基因的系统表达分析表明,SR34b是唯一受镉上调的SR基因,表明其在拟南芥镉耐受性中的潜在作用。与此一致的是,SR34b T-DNA插入突变体(sr34b)对镉中度敏感,其镉(2+)吸收速率更高,且比野生型积累更多的镉。这是由于sr34b突变体中铁调节转运蛋白1(IRT1)基因的表达改变所致。在正常生长条件下,IRT1 mRNA在sr34b突变体中高度积累,这是IRT1 mRNA稳定性增加的结果。然而,在镉胁迫下,sr34b突变体植株的IRT1基因存在剪接缺陷,从而降低了IRT1 mRNA的积累。尽管如此,sr34b突变体植株在镉胁迫下仍组成型表达IRT1蛋白,从而导致对镉胁迫敏感的表型。因此,我们提出SR34b在IRT1表达的转录后调控中起重要作用,并将其鉴定为拟南芥镉耐受性的调节因子。

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