湖南地区新收集烟草种质资源的鉴定与遗传多样性分析
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1中国农业科学院烟草研究所,青岛266101;2青岛中烟种子有限责任公司,青岛266101;,3河南省新乡市农业科学院,新乡453000;,1中国农业科学院烟草研究所,青岛266101;2青岛中烟种子有限责任公司,青岛266101;,4湖南省农业科学院作物研究所,长沙410000,1中国农业科学院烟草研究所,青岛266101;2青岛中烟种子有限责任公司,青岛266101;,2青岛中烟种子有限责任公司,青岛266101;,2青岛中烟种子有限责任公司,青岛266101;,1中国农业科学院烟草研究所,青岛266101;

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农业部保种项目(2017NWB036);科技部平台运行服务项目(NICGR2017-18);中国农业科学院科技创新工程(ASTIP-TRIC01)


Identification and genetic diversity analysis of newly collected tobacco germplasm resources in Hunan province
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1Tobacco Research Institute, CAAS, Qingdao 266101; 2Qingdao Tobacco Seed Co., Ltd., Qingdao 266101;,3Xinxiang Academy of Agricultural Science, Xinxiang 453000;,1Tobacco Research Institute, CAAS, Qingdao 266101; 2Qingdao Tobacco Seed Co., Ltd., Qingdao 266101;,4Institute of Crop Science, Hunan Academy of Agricultural Sciences, Changsha 410000,1Tobacco Research Institute, CAAS, Qingdao 266101; 2Qingdao Tobacco Seed Co., Ltd., Qingdao 266101;,2Qingdao Tobacco Seed Co., Ltd., Qingdao 266101;,2Qingdao Tobacco Seed Co., Ltd., Qingdao 266101;,1Tobacco Research Institute, CAAS, Qingdao 266101;

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    摘要:

    “第三次全国农作物种质资源普查与收集行动”湖南项目组经过系统调查共收集到烟草种质资源32份。本研究从收集到的烟草种质资源中筛选出23份特色种质材料,对它们的22个农艺性状进行鉴定和遗传多样性分析,结果表明供试种质材料遗传多样性丰富,其中数量性状的多样性指数普遍较高,多样性指数最高的3个数量性状分别是节距、叶数和叶宽,质量性状以叶形的多样性指数最高;性状变异系数最大的是叶柄,其次是株高和叶宽。对新收集烟草种质资源进行聚类分析,可以将它们分为3个类群,其中第Ⅱ类群的种质叶片数多,第Ⅲ类群的植株较高,可用于高产育种实践或作为中间材料使用。对特色烟草种质进行主要病害的抗性鉴定,发现13份种质材料对黑胫病、TMV或CMV表现出抗性,其中2份种质兼抗黑胫病和TMV,可用于抗病育种。由此可见,开展烟草种质资源的普查收集工作意义重大,可以为新品种的选育提供更丰富的亲本材料或中间材料。

    Abstract:

    As a member of the Third National-wide Investigation of Crop Germplasm Resources Project, Hunan team collected 32 tobacco germplasms after systematic investigations. In this study, 23 germplasms were selected from the collected tobacco germplasms, and 22 agronomic traits were identified and analyzed for genetic diversity. The results showed that the tested germplasms had a high level of genetic diversity, and the quantitative traits had a general high diversity index. The three quantitative traits with the highest diversity index were node distance, leaf number, and leaf width. As for qualitative traits, leaf shape had the highest diversity index. Petiole had the highest CV (coefficient variation), followed by plant height and leaf width. Based on the results of cluster analysis, the newly-collected tobacco germplasms were divided into 3 groups. The germplasms from the second group had the most leaves, and the ones from the third group were the tallest, which could be used for breeding varieties with high yield or used as intermediate materials. The identification of the resistance to the major diseases of the characteristic tobacco germplasm demonstrated that 13 germplasms showed resistance to black shank, TMV or CMV, two of which showed pleiotropic resistance to both black shank and TMV, and they could be used for disease resistance breeding. Thus, it is of great significance to carry out the census and collection of tobacco germplasm resources, which can provide richer parental materials or intermediate materials for the breeding of new varieties.

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屈 旭,焦禹顺,李毅君,等.湖南地区新收集烟草种质资源的鉴定与遗传多样性分析[J].植物遗传资源学报,2018,19(6):1117-1125.

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  • 收稿日期:2018-01-18
  • 最后修改日期:2018-09-03
  • 录用日期:2018-04-09
  • 在线发布日期: 2018-11-14
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