Molecular characterization and varietal identification for multiple abiotic stress tolerance in rice (Oryza sativa L.)

A. Ali, B. R, Chennamsetti Lakshmi Naga Manikanta, S. Alex, Soni Kb, Viji Mm
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引用次数: 5

Abstract

Coexistence of two or more abiotic stresses is common in most of the rainfed lowland and upland rice growing areas of India and worldwide. Rice production under these conditions is not sustainable. Identification and development of multiple abiotic stress tolerant rice varieties are to be addressed. Here we tried to identify multiple abiotic stress tolerant varieties from a collection of earlier identified varieties for single stress and validated the known SSR markers for stress tolerance. Twenty rice genotypes were evaluated for individual abiotic stress such as drought, salinity and temperature initially and the tolerant three genotypes in each case were further evaluated for combination of stresses various physio-morphological and biochemical parameters were recorded. Among the genotypes evaluated for combination of stresses, PTB-7 was found to be tolerant for drought and salinity, Nagina-22 was tolerant against high temperature and salinity. However, the seeds did not germinate in the presence of all three stresses simultaneously. Twenty rice varieties viz., Chomala, MO-16, PTB-35, PTB-60, PTB-39, PTB-55, PTB-30, PTB-7, CRdhan307, Apo, Vyttila-3, Vyttila-4, Vyttila-5, Vyttila-6, Vyttila-7, Vyttila-8, Vyttila-9, Vyttila-10, Nagina-22 and NL-44 were further investigated using microsatellite markers to confirm the genotypic level of tolerance to combination of abiotic stresses. Rice genotypes were screened using 30 reported simple sequence repeat (SSR) markers that are linked to drought, salinity and temperature. Molecular marker analysis of rice genotypes also confirmed that RM8904 and RM1287 were associated with salinity tolerance, RM2612, RM6100 and RM5749 were linked to high temperature tolerant trait. Population analysis also revealed that there is five subpopulation among rice genotypes.
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水稻(Oryza sativa L.)耐多种非生物胁迫的分子特征及品种鉴定
两种或两种以上的非生物胁迫共存在印度和世界上大多数雨养低地和旱地水稻种植区是常见的。在这种条件下,水稻生产是不可持续的。多种非生物抗逆性水稻品种的鉴定和开发是亟待解决的问题。在此,我们试图从早期鉴定的单一胁迫品种中鉴定出多个非生物抗逆性品种,并验证已知的抗逆性SSR标记。对20个水稻基因型分别进行了干旱、盐度和温度等非生物胁迫的初步评价,并对3个基因型在不同胁迫条件下的耐受性进行了综合评价。在组合胁迫评价中,PTB-7具有耐干旱和耐盐性,Nagina-22具有耐高温和耐盐性。然而,在这三种胁迫同时存在的情况下,种子并没有发芽。利用微卫星标记对Chomala、MO-16、PTB-35、PTB-60、PTB-39、PTB-55、PTB-30、PTB-7、CRdhan307、Apo、Vyttila-3、Vyttila-4、Vyttila-5、Vyttila-6、Vyttila-7、Vyttila-8、Vyttila-9、Vyttila-10、Nagina-22和NL-44等20个水稻品种进行基因型分析,以确定其抗非生物胁迫组合的基因型水平。利用已报道的30个与干旱、盐度和温度相关的SSR标记筛选水稻基因型。水稻基因型分子标记分析也证实,RM8904和RM1287与耐盐性状相关,RM2612、RM6100和RM5749与耐高温性状相关。群体分析还发现,水稻基因型之间存在5个亚群体。
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