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首页> 外文期刊>BioMed research international >Expression Profiling of Abiotic Stress-Inducible Genes in response to Multiple Stresses in Rice (Oryza sativaL.) Varieties with Contrasting Level of Stress Tolerance
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Expression Profiling of Abiotic Stress-Inducible Genes in response to Multiple Stresses in Rice (Oryza sativaL.) Varieties with Contrasting Level of Stress Tolerance

机译:耐性水平不同的水稻(Oryza sativaL。)品种对多种胁迫响应的非生物胁迫诱导基因的表达谱分析

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The present study considered transcriptional profiles and protein expression analyses from shoot and/or root tissues under three abiotic stress conditions, namely, salinity, dehydration, and cold, as well as following exogenous abscisic acid treatment, at different time points of stress exposure in threeindicarice varieties, IR-29 (salt sensitive), Pokkali, and Nonabokra (both salt tolerant). The candidate genes chosen for expression studies wereHKT-1, SOS-3, NHX-1, SAPK5, SAPK7, NAC-1, Rab16A, OSBZ8, DREBP2, CRT/DREBP, WRKY24,andWRKY71, along with the candidate proteins OSBZ8, SAMDC, and GST. Gene expression profile revealed considerable differences between the salt-sensitive and salt-tolerant rice varieties, as the expression in the latter was higher even at the constitutive level, whereas it was inducible only by corresponding stress signals in IR-29. Whether in roots or shoots, the transcriptional responses to different stressors peaked following 24 h of stress/ABA exposure, and the transcript levels enhanced gradually with the period of exposure. The generality of stress responses at the transcriptional level was therefore time dependent. Heat map data also showed differential transcript abundance in the three varieties, correlating the observation with transcript profiling.In silicoanalysis of the upstream regions of all the genes represented the existence of conserved sequence motifs in single or multiple copies that are indispensable to abiotic stress response. Overall, the transcriptome and proteome analysis undertaken in the present study indicated that genes/proteins conferring tolerance, belonging to different functional classes, were overrepresented, thus providing novel insight into the functional basis of multiple stress tolerance inindicarice varieties. The present work will pave the way in future to select gene(s) for overexpression, so as to generate broad spectrum resistance to multiple stresses simultaneously.
机译:本研究考虑了在三种非生物胁迫条件下,盐度,脱水和寒冷以及外源脱落酸处理后三种不同非生物胁迫条件下,芽和/或根组织的转录谱和蛋白质表达分析。品种,IR-29(对盐敏感),Pokkali和Nonabokra(均耐盐)。选择用于表达研究的候选基因是HKT-1,SOS-3,NHX-1,SAPK5,SAPK7,NAC-1,Rab16A,OSBZ8,DREBP2,CRT / DREBP,WRKY24和WRKY71,以及候选蛋白OSBZ8,SAMDC,和GST。基因表达谱揭示了盐敏感和耐盐水稻品种之间的显着差异,因为后者的表达甚至在组成水平上也更高,而仅由IR-29中的相应胁迫信号诱导。无论是在根部还是在芽中,在胁迫/ ABA暴露24h后,对不同胁迫源的转录反应都达到峰值,并且转录水平随着暴露时间的延长而逐渐增强。因此,转录水平上应激反应的普遍性是时间依赖性的。热图数据还显示了三个变种的差异转录本丰度,将观察结果与转录本谱图相关联。在所有基因的上游区域的计算机分析中,存在非生物胁迫响应必不可少的单个或多个拷贝的保守序列基序的存在。总体而言,本研究进行的转录组和蛋白质组分析表明,属于不同功能类别的赋予耐受性的基因/蛋白质被过度表达,从而为多种耐性指标品种的功能基础提供了新颖的见解。当前的工作将为将来选择过量表达的基因铺平道路,以便同时产生对多种胁迫的广谱抗性。

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