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Root transcriptome of two contrasting indica rice cultivars uncovers regulators of root development and physiological responses

机译:两种对比籼稻品种的根转录组揭开了根影发育和生理反应的调节因素

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The huge variation in root system architecture (RSA) among different rice (Oryza sativa) cultivars is conferred by their genetic makeup and different growth or climatic conditions. Unlike model plant Arabidopsis, the molecular basis of such variation in RSA is very poorly understood in rice. Cultivars with stable variation are valuable resources for identification of genes involved in RSA and related physiological traits. We have screened for RSA and identified two such indica rice cultivars, IR-64 (OsAS83) and IET-16348 (OsAS84), with stable contrasting RSA. OsAS84 produces robust RSA with more crown roots, lateral roots and root hairs than OsAS83. Using comparative root transcriptome analysis of these cultivars, we identified genes related to root development and different physiological responses like abiotic stress responses, hormone signaling, and nutrient acquisition or transport. The two cultivars differ in their response to salinity/dehydration stresses, phosphateitrogen deficiency, and different phytohormones. Differential expression of genes involved in salinity or dehydration response, nitrogen (N) transport, phosphate (Pi) starvation signaling, hormone signaling and root development underlies more resistance of OsAS84 towards abiotic stresses, Pi or N deficiency and its robust RSA. Thus our study uncovers gene-network involved in root development and abiotic stress responses in rice.
机译:不同水稻(Oryza Sativa)品种中根系结构(RSA)的巨大变化由其遗传化妆和不同的生长或气候条件赋予。与模型植物拟南芥不同,RSA中这种变异的分子基础在水稻中非常难以理解。具有稳定变异的品种是有价值的资源,用于鉴定参与RSA和相关生理性状的基因。我们对RSA进行了筛选,并确定了两个这样的籼稻品种,IR-64(OSAS83)和IET-16348(OSAS84),具有稳定的对比度RSA。 OSAS84生产强大的RSA,具有比OSAS83更多的冠状根,侧面根和根毛。利用这些品种的比较根转录组分析,我们鉴定了与根部发育和不同生理反应相关的基因,如非生物应激反应,激素信号传导和营养收集或运输。两种品种对盐度/脱水应力,磷酸盐/氮气缺乏和不同植物激素的反应不同。参与盐度或脱水反应的基因的差异表达,氮(N)输送,磷酸盐(PI)饥饿信号传导,激素信号传导和根部发育在osas84对非生物胁迫,Pi或N缺乏的抗性更高,并且其坚固的RSA。因此,我们的研究揭示了在水稻中涉及根部发育和非生物应激反应的基因网络。

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