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Genetic analysis of salt tolerance at seedling and reproductive stages in rice (Oryza sativa)

机译:水稻幼苗和生殖期耐盐性的遗传分析

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Salinity is a major abiotic stress that limits rice production across rice areas as high-yielding modern rice varieties are generally sensitive to salt stress. The study was conducted to deduce heritability and combining ability estimates of rice for various morphological and physiological traits using a 7x7 full-diallel-cross analysis at seedling and reproductive stages. The salinity stress treatment was 12dSm(-1) at the seedling stage and 8dSm(-1) at the reproductive stage. Diallel analysis revealed high hbs2 for salinity tolerance scores and shoot height, moderate for shoot dry weight and root dry weight and low for Na+ and K+ concentrations and K+/Na+ ratio. The low-to-moderate narrow-sense heritability for number of panicles, number of fertile spikelets, grain weight, spikelet fertility and K+/Na+ ratio suggests a large breeding population and delayed selection for tolerance until later generations. Significant maternal effects indicate that selection of the female parent is very important for desired trait development. The results of this study confirmed that salinity tolerance at the seedling and reproductive stages is regulated by a different set of genes that could be pyramided using different donors to enhance the level of tolerance
机译:盐分是一种主要的非生物胁迫,限制了整个水稻地区的水稻生产,因为高产现代水稻品种通常对盐胁迫敏感。这项研究是在幼苗和生殖阶段使用7x7全双倍杂交分析来推断水稻的各种形态和生理性状的遗传力和综合能力估计。盐胁迫在苗期为12dSm(-1),在生殖期为8dSm(-1)。 Diallel分析显示耐盐性得分和枝条高度 hbs2 较高,枝干干重和根干重适中,Na +和K +浓度和K + / Na +比低。穗数,可育小穗数,粒重,小穗受精率和K + / Na +比值的低至中等狭义遗传力表明育种种群众多,耐性选择推迟到后代。显着的母体效应表明,选择母本对于所需的性状发育非常重要。这项研究的结果证实,幼苗和生殖期的耐盐性受一组不同的基因调控,这些基因可以使用不同的供体进行金字塔化以提高耐性水平

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