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盐胁迫下两个水稻品种的分子系统发育基因组学研究及外源亚精胺在内源多胺代谢调节中的作用

Molecular phylogenomic study and the role of exogenous spermidine in the metabolic adjustment of endogenous polyamine in two rice cultivars under salt stress.

作者信息

Saha Jayita, Giri Kalyan

机构信息

Department of Life Sciences, Presidency University, 86/1 College Street, Kolkata 700073, India; Department of Botany, Rabindra Mahavidyalaya, Champadanga, Hooghly 712204, India.

Department of Life Sciences, Presidency University, 86/1 College Street, Kolkata 700073, India.

出版信息

Gene. 2017 Apr 20;609:88-103. doi: 10.1016/j.gene.2017.02.001. Epub 2017 Feb 5.

Abstract

Compelling evidences anticipated the well acclamation of involvement of exogenous and endogenous polyamines (PAs) in conferring salt tolerance in plants. Intracellular PA's anabolism and catabolism should have contributed to maintain endogenous PAs homeostasis to induce stress signal networks. In this report, the evolutionary study has been conducted to reveal the phylogenetic relationship of genes encoding enzymes of the anabolic and catabolic pathway of PAs among the five plant lineages including green algae, moss, lycophyte, dicot and monocot along with their respective exon-intron structural patterns. Our results indicated that natural selection pressure had considerable influence on the ancestral PA metabolic pathway coding genes of land plants. PA metabolic genes have undergone gradual evolution by duplication and diversification process leading to subsequent structural modification through exon-intron gain and loss events to acquire specific function under environmental stress conditions. We have illuminated on the potential regulation of both the pathways by investigating the real-time expression analyses of PA metabolic pathway related enzyme coding genes at the transcriptional level in root and shoot tissues of two indica rice varieties, namely IR 36 (salt sensitive) and Nonabokra (salt-tolerant) in response to salinity in presence or absence of exogenous spermidine (Spd) treatment. Additionally, we have performed tissue specific quantification of the intracellular PAs and tried to draw probable connection between the PA metabolic pathway activation and endogenous PAs accumulation. Our results successfully enlighten the fact that how exogenous Spd in presence or absence of salt stress adjust the intracellular PA pathways to equilibrate the cellular PAs that would have been attributed to plant salt tolerance.

摘要

有令人信服的证据表明,外源和内源多胺(PAs)参与植物耐盐性的过程广受赞誉。细胞内多胺的合成代谢和分解代谢应该有助于维持内源性多胺的稳态,从而诱导应激信号网络。在本报告中,进行了进化研究,以揭示包括绿藻、苔藓、石松、双子叶植物和单子叶植物在内的五个植物谱系中,多胺合成代谢和分解代谢途径中编码酶的基因的系统发育关系,以及它们各自的外显子-内含子结构模式。我们的结果表明,自然选择压力对陆地植物祖先的多胺代谢途径编码基因有相当大的影响。多胺代谢基因通过复制和多样化过程经历了逐渐进化,随后通过外显子-内含子的获得和丢失事件进行结构修饰,以在环境胁迫条件下获得特定功能。我们通过研究两个籼稻品种IR 36(盐敏感)和Nonabokra(耐盐)的根和茎组织中,多胺代谢途径相关酶编码基因在转录水平上的实时表达分析,来阐明这两条途径的潜在调控机制,该分析是在有或没有外源亚精胺(Spd)处理的情况下,对盐度的响应。此外,我们对细胞内多胺进行了组织特异性定量,并试图找出多胺代谢途径激活与内源性多胺积累之间的可能联系。我们的结果成功地揭示了这样一个事实,即无论有无盐胁迫,外源亚精胺如何调节细胞内多胺途径,以平衡细胞内的多胺,这可能归因于植物的耐盐性。

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