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大麦内含子保留型钾离子转运体的功能表征揭示了内含子介导的可变剪接。

Functional characterisation of an intron retaining K(+) transporter of barley reveals intron-mediated alternate splicing.

作者信息

Shahzad K, Rauf M, Ahmed M, Malik Z A, Habib I, Ahmed Z, Mahmood K, Ali R, Masmoudi K, Lemtiri-Chlieh F, Gehring C, Berkowitz G A, Saeed N A

机构信息

National Institute for Biotechnology and Genetic Engineering, Faisalabad, Pakistan.

Pakistan Institute of Engineering and Applied Sciences, Nilore, Islamabad, Pakistan.

出版信息

Plant Biol (Stuttg). 2015 Jul;17(4):840-51. doi: 10.1111/plb.12290. Epub 2015 Jan 29.

Abstract

Intron retention in transcripts and the presence of 5' and 3' splice sites within these introns mediate alternate splicing, which is widely observed in animals and plants. Here, functional characterisation of the K(+) transporter, HvHKT2;1, with stably retained introns from barley (Hordeum vulgare) in yeast (Saccharomyces cerevisiae), and transcript profiling in yeast and transgenic tobacco (Nicotiana tabacum) is presented. Expression of intron-retaining HvHKT2;1 cDNA (HvHKT2;1-i) in trk1, trk2 yeast strain defective in K(+) uptake restored growth in medium containing hygromycin in the presence of different concentrations of K(+) and mediated hypersensitivity to Na(+) . HvHKT2;1-i produces multiple transcripts via alternate splicing of two regular introns and three exons in different compositions. HKT isoforms with retained introns and exon skipping variants were detected in relative expression analysis of (i) HvHKT2;1-i in barley under native conditions, (ii) in transgenic tobacco plants constitutively expressing HvHKT2;1-i, and (iii) in trk1, trk2 yeast expressing HvHKT2;1-i under control of an inducible promoter. Mixed proportions of three HKT transcripts: HvHKT2;1-e (first exon region), HvHKT2;1-i1 (first intron) and HvHKT2;1-i2 (second intron) were observed. The variation in transcript accumulation in response to changing K(+) and Na(+) concentrations was observed in both heterologous and plant systems. These findings suggest a link between intron-retaining transcripts and different splice variants to ion homeostasis, and their possible role in salt stress.

摘要

转录本中的内含子保留以及这些内含子内5'和3'剪接位点的存在介导了可变剪接,这在动植物中广泛存在。本文展示了对钾离子转运蛋白HvHKT2;1的功能表征,该蛋白在酵母(酿酒酵母)中稳定保留了来自大麦(大麦)的内含子,并对酵母和转基因烟草(烟草)进行了转录谱分析。在钾离子摄取缺陷的trk1、trk2酵母菌株中,内含子保留的HvHKT2;1 cDNA(HvHKT2;1-i)的表达在不同浓度钾离子存在的情况下,恢复了含有潮霉素的培养基中的生长,并介导了对钠离子的超敏反应。HvHKT2;1-i通过两个常规内含子和三个外显子以不同组合的可变剪接产生多种转录本。在以下相对表达分析中检测到了具有保留内含子和外显子跳跃变体的HKT亚型:(i)在自然条件下的大麦中的HvHKT2;1-i,(ii)在组成型表达HvHKT2;1-i的转基因烟草植物中,以及(iii)在诱导型启动子控制下表达HvHKT2;1-i的trk1、trk2酵母中。观察到三种HKT转录本的混合比例:HvHKT2;1-e(第一个外显子区域)、HvHKT2;1-i1(第一个内含子)和HvHKT2;1-i2(第二个内含子)。在异源系统和植物系统中均观察到了转录本积累随钾离子和钠离子浓度变化的差异。这些发现表明,保留内含子的转录本和不同的剪接变体与离子稳态之间存在联系,以及它们在盐胁迫中的可能作用。

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