Moraes de Freitas Gabriela Peres, Basu Supratim, Ramegowda Venkategowda, Braga Eugenia Bolacel, Pereira Andy
Crop, Soil, and Environmental Sciences, University of Arkansas, Fayetteville, AR 72701, USA; Department of Botany, Federal University of Pelotas, Pelotas, Brazil.
Crop, Soil, and Environmental Sciences, University of Arkansas, Fayetteville, AR 72701, USA.
Biochem Biophys Res Commun. 2016 Feb 26;471(1):253-9. doi: 10.1016/j.bbrc.2016.02.004. Epub 2016 Feb 6.
Cold stress is a major factor affecting rice (Oryza sativa) growth and productivity, limiting its distribution worldwide. Rice production is affected primarily due to its vulnerability to cold stress at seedling stage, as well as reproductive stage leading to spikelet sterility. We report here the analysis of 21 diverse rice genotypes from the USDA mini-core collection for cold tolerance and categorized their tolerance levels on the basis of reduction in growth measured by root and shoot length. The screening identified 12 cold tolerant genotypes from which six tolerant genotypes were characterized at the vegetative stage for cold tolerance and gas-exchange parameters. Two tolerant and two sensitive genotypes were used further for gene expression analysis. Lipid Transfer Protein (LTP) genes showed a clear difference in expression between cold tolerant and sensitive genotypes suggesting that they are good candidates for engineering cold tolerance in rice. Nipponbare was identified as a cold tolerant genotype with stress tolerance mechanism potentially operating via both ABA dependent and independent pathways.
冷胁迫是影响水稻(Oryza sativa)生长和生产力的主要因素,限制了其在全球的分布。水稻生产受到影响主要是因为其在幼苗期以及生殖期易受冷胁迫,导致小穗不育。我们在此报告了对美国农业部小型核心种质库中21种不同水稻基因型的耐冷性分析,并根据根长和茎长测量的生长减少情况对它们的耐受水平进行了分类。筛选鉴定出12种耐冷基因型,其中6种耐冷基因型在营养生长阶段进行了耐冷性和气体交换参数的表征。进一步使用两种耐冷基因型和两种敏感基因型进行基因表达分析。脂质转移蛋白(LTP)基因在耐冷和敏感基因型之间表现出明显的表达差异,表明它们是水稻耐冷性基因工程的良好候选基因。日本晴被鉴定为一种耐冷基因型,其胁迫耐受机制可能通过ABA依赖和非依赖途径起作用。