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不同高羊茅种质中SSR标记与热胁迫功能性状的关联

Association of SSR markers with functional traits from heat stress in diverse tall fescue accessions.

作者信息

Sun Xiaoyan, Du Zhimin, Ren Jin, Amombo Erick, Hu Tao, Fu Jinmin

机构信息

Key Laboratory of Plant Germplasm Enhancement and Specialty Agriculture, Wuhan Botanical Garden, Chinese Academy of Science, Wuhan, 430074, Hubei, P.R. China.

The Key Laboratory of Horticultural Plant Genetic and Improvement of Jiangxi, Institute of Biology and Resources, Jiangxi Academy of Sciences, Nanchang, 330096, China.

出版信息

BMC Plant Biol. 2015 May 10;15:116. doi: 10.1186/s12870-015-0494-5.

Abstract

BACKGROUND

Heat stress is a critical threat to tall fescue in transitional and warm climate zones. Identification of association between molecular markers and heat tolerance-related functional traits would promote the efficient selection of heat tolerant tall fescue cultivars. Association analysis of heat tolerance-related traits was conducted in 100 diverse tall fescue accessions consisting of 93 natural genotypes originating from 33 countries and 7 turf-type commercial cultivars.

RESULTS

The panel displayed significant genetic variations in growth rate (GR), turfgrass quality (TQ), survival rate (SR), chlorophyll content (CHL) and evapotranspiration rate (ET) in greenhouse and growth chamber trials. Two subpopulations were detected in the panel of accessions by 1010 SSR alleles with 90 SSR markers, but no obvious relative kinship was observed. 97 and 67 marker alleles associated with heat tolerance-related traits were identified in greenhouse trial and growth chamber trial (P < 0.01) using mix linear model, respectively. Due to different experimental conditions of the two trials, 2 SSR marker alleles associated with GR and ET were simultaneously identified at P < 0.01 level in two trials in response to heat stress.

CONCLUSION

High-temperature induced great variations of functional traits in tall fescue accessions. And the identified marker alleles associated with functional traits could provide important information about heat tolerance genetic pathways, and be used for molecular assisted breeding to enhance tall fescue performance under heat stress.

摘要

背景

热胁迫是过渡气候区和温暖气候区高羊茅面临的关键威胁。鉴定分子标记与耐热相关功能性状之间的关联,将有助于高效选育耐热高羊茅品种。对100份不同的高羊茅材料进行了耐热相关性状的关联分析,其中包括93份来自33个国家的自然基因型材料和7个草坪型商业品种。

结果

在温室和生长室试验中,该群体在生长速率(GR)、草坪质量(TQ)、存活率(SR)、叶绿素含量(CHL)和蒸散速率(ET)方面表现出显著的遗传变异。利用90个SSR标记的1010个SSR等位基因在材料群体中检测到两个亚群,但未观察到明显的亲缘关系。采用混合线性模型,在温室试验和生长室试验中分别鉴定出97个和67个与耐热相关性状相关的标记等位基因(P < 0.01)。由于两个试验的实验条件不同,在热胁迫下,有2个与GR和ET相关的SSR标记等位基因在两个试验中均在P < 0.01水平上被同时鉴定出来。

结论

高温导致高羊茅材料的功能性状发生很大变化。鉴定出的与功能性状相关的标记等位基因可为耐热遗传途径提供重要信息,并用于分子辅助育种,以提高高羊茅在热胁迫下的表现。

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