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与细羊茅品种耐热性相关的候选基因和分子标记

Candidate Genes and Molecular Markers Correlated to Physiological Traits for Heat Tolerance in Fine Fescue Cultivars.

机构信息

Department of Plant Biology, Rutgers University, New Brunswick, NJ 08901, USA.

出版信息

Int J Mol Sci. 2018 Jan 1;19(1):116. doi: 10.3390/ijms19010116.

Abstract

Heat stress is one of the major abiotic factors limiting the growth of cool-season grass species during summer season. The objectives of this study were to assess genetic variations in the transcript levels of selected genes in fine fescue cultivars differing in heat tolerance, and to identify single nucleotide polymorphism (SNP) markers associated with candidate genes related to heat tolerance. Plants of 26 cultivars of five fine fescue species ( spp.) were subjected to heat stress (38/33 °C, day/night temperature) in controlled environmental growth chambers. Physiological analysis including leaf chlorophyll content, photochemical efficiency, and electrolyte leakage demonstrated significant genetic variations in heat tolerance among fine fescue cultivars. The transcript levels of selected genes involved in photosynthesis (RuBisCO activase, Photosystem II CP47 reaction center protein), carbohydrate metabolism (Sucrose synthase), energy production (ATP synthase), growth regulation (Actin), oxidative response (Catalase), and stress protection (Heat shock protein 90) were positively correlated with the physiological traits for heat tolerance. SNP markers for those candidate genes exhibited heterozygosity, which could also separate heat-sensitive and heat-tolerant cultivars into clusters. The development of SNP markers for candidate genes in heat tolerance may allow marker-assisted breeding for the development of new heat-tolerant cultivars in fine fescue and other cool-season grass species.

摘要

热应激是限制冷季型草种夏季生长的主要非生物因素之一。本研究的目的是评估耐热性不同的细羊茅品种中选定基因的转录水平的遗传变异,并鉴定与耐热性相关的候选基因的单核苷酸多态性 (SNP) 标记。将 5 种细羊茅属( spp.)的 26 个品种的植物置于控制环境生长室中的热应激(38/33°C,昼夜温度)下。生理分析包括叶片叶绿素含量、光化学效率和电解质渗漏,表明细羊茅品种之间存在耐热性的显著遗传变异。参与光合作用(RuBisCO 活化酶、光系统 II CP47 反应中心蛋白)、碳水化合物代谢(蔗糖合酶)、能量产生(ATP 合酶)、生长调节(肌动蛋白)、氧化反应(过氧化氢酶)和应激保护(热休克蛋白 90)的选定基因的转录水平与耐热性的生理特征呈正相关。这些候选基因的 SNP 标记表现出杂合性,这也可以将热敏和耐热品种聚类。耐热性候选基因 SNP 标记的开发可能允许在细羊茅和其他冷季型草种中进行候选基因的标记辅助选择,以开发新的耐热品种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/30e8/5796065/ee667dcee703/ijms-19-00116-g001.jpg

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