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首页> 外文期刊>Theoretical and Experimental Plant Physiology >Transcript analysis of abscisic acid-inducible genes in response to different abiotic disturbances in two indica rice varieties
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Transcript analysis of abscisic acid-inducible genes in response to different abiotic disturbances in two indica rice varieties

机译:两种籼稻品种不同非生物紊乱响应脱落酸诱导基因的转录物分析

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The present study focused upon comprehensive analysis of the expression of stress-responsive genes at different time points in two indica rice varieties, IR-64 (moderately salt-sensitive) and Nonabokra (salt-tolerant), under salinity, dehydration and cold, and exogenous ABA treatment. The massively parallel signature sequencing and publicly-available microarray data indicated the physiological role of the concerned genes in different tissues. Gene expression through semi-quantitative reverse transcriptase-polymerase chain reaction followed by factorial analyses of variance identified that members of the antioxidant genes (OsCAT, OsSOD, OsGR2 and OsAPX8) showed early response and higher expression under different abiotic stresses in IR-64. The TFs and LEA family (TRAB1 and Osem), osmolyte (OsBADH1, OsP5CS) and polyamine (SAMDC) metabolic genes were more up regulated in the salt-tolerant cultivar, whereas the proline (ProDH) and polyamine (DAO and PAO) catabolic genes were significantly up regulated in the salt-sensitive one. The higher accumulation of TRAB1 transcript and protein in the tolerant cultivar during various stresses suggested it as an important component in stress signaling pathway, which participates in mediating cross-talk signaling between diverse metabolic pathways to withstand various forms of abiotic stress. Heat map data further corroborated differential transcript abundance in the two varieties, coinciding with the transcript profiling data. We envisage that the identified genes in this study, linked with tolerance against various abiotic stress factors, are the chief candidates involved in regulating the complexity of multiple stress responses in rice. The finding of the candidate genes in this study would be helpful in generating multiple abiotic stress tolerance in rice.
机译:本研究侧重于综合分析两种籼稻品种的不同时间点的应激响应基因的表达,IR-64(适度盐敏感)和非吸收(耐盐),盐度,脱水和寒冷,和外源aba治疗。大型平行签名测序和公开可用的微阵列数据表明有关基因在不同组织中的生理作用。通过半定量逆转录酶 - 聚合酶链式的基因表达,随后是方差分析,鉴定了抗氧化基因(OSCAT,OSSOS,OSGR2和OSAPX8)的成员在IR-64中的不同非生物胁迫下显示出早期反应和更高的表达。 TFS和Lea系列(TRAB1和OSEM),渗透(OSBADH1,OSP5CS)和多胺(SAMDC)代谢基因在耐盐品种中调节,而脯氨酸(PRODH)和多胺(DAO和PAO)分解代谢基因在盐敏感中有显着调节。在各种应力​​期间,耐受品种中的Trab1转录物和蛋白质的较高积累表明它是应力信号通路中的重要组成部分,其参与在不同形式的非生物态之间介导各种代谢途径之间的串扰信号传导。热图数据在两个品种中进一步证实差分转录物丰度,与转录物分析数据一致。我们设想本研究中鉴定的基因,与各种非生物压力因素的耐受相关,是参与调节水稻中多重应激反应的复杂性的首席候选者。该研究中的候选基因的发现将有助于在水稻中产生多种非生物胁迫耐受性。

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