期刊文献+

广西地方稻种资源核心种质构建和遗传多样性分析 被引量:19

Construction of core collection and genetic diversity of landrace rice resources(Oryza sativa) in Guangxi
下载PDF
导出
摘要 以丁颖分类体系分组原则与组内逐层聚类取样方法,对8609份广西地方栽培稻资源表型数据信息进行分析,通过对表型保留比例等评价指标的多重比较确定核心种质总体取样比例,构建出占总体样本5%(414份)的广西地方栽培稻资源初级核心种质。初级核心种质能代表总体遗传变异的89%。用34对SSR分子标记对初级核心种质进行遗传多样性分析,结果表明:广西地方栽培稻资源有较高的遗传多样性(等位基因数A为4.91,Nei’s多样性指数为0.574)。就Nei’s遗传多样性指数而言,粳稻高于籼稻,晚稻高于早稻,水稻高于陆稻,糯稻高于粘稻;来自桂中的稻种资源具有最高的遗传多样性。研究最终利用SSR数据,把414份初级核心种质压缩50%后形成209份核心种质,核心种质基因保留比例达到98%以上,有效代表了广西地方栽培稻资源多样性水平。 A primary core collection of rice germplasm consisting of 414 accessions(ca.5%) was constructed from a total of 8 609 accessions of Guangxi landrace rice by analyzing their taxonomic,morphological and yield characters,grouping based on Dingying’s taxonomic system,clustering within groups,and selecting optimal total sampling proportion through comparing the three detection parameters and four evaluation index.This collection represented 89% of the total genetic variation.Genetic diversity of the primary core collection was estimated by using 34 SSR primers,and showed that Guangxi landrace rice resources were highly genetically diverse with average effective numbers of alleles(Ae) reaching 4.91 and average Nei’s genetic diversity index(H) reaching 0.574.The Japonica group had higher H value than Indica group,late rice had higher H value than early rice,lowland rice had higher H value than upland rice,and glutinous rice had higher H value than non-glutinous rice,The central Guangxi rice ecological region had the highest genetic diversity.Based on the SSR data,414 primary core collections could further be condensed to 209 core collections,which has a genetic reservation proportion higher than 98%,and thus had good representation of genetic diversity of Guangxi landrace rice.
出处 《广西植物》 CAS CSCD 北大核心 2012年第1期94-100,共7页 Guihaia
基金 国家科技支撑计划课题(2007BAD68B01) 广西自然科学基金(2010GXNSFD013035) 广西科学研究与技术开发计划项目(桂科攻1123001-3C) 广西农业科学院基本科研业务专项(200806Z(基)) 广西农业科学院科技发展基金(200907Z 200906)~~
关键词 广西 稻种资源 核心种质 多样性 Guangxi landrace rice core collection of germpalsm genetic diversity
  • 相关文献

参考文献21

  • 1Brown AHD,Frankle OH, Marshall RD,et al. 1989. The use of plant genetic resources [M]. Cambridge.. Cambridge University Press.. 136- 156.
  • 2Chung JW, Park YJ. 2009. Genetic diversity and population struc- ture of Korea rice eollection[J]. Agric Res ,21(4) :282-288.
  • 3Diwan N,Mclntosh MS, Bauehan GR. 1995. Methods of develo- ping a core collection of annual Medicago species[J]. Theor Ap- pl Genet ,90(6) : 755- 761.
  • 4Ebana K, Kojima Y, Fukuoka, et al. 2008. Development of mini core collection of Japanese rice(Oryza sativa)landrace[J]. Plant Genet Breed ,58(3) :281-291.
  • 5Frankle OH. 1984. Genetic perspectives of germplasm conserva- tion[C]//Arber W,Limensee K,Peacock WJ(eds). Genetic ma-nipulation: Impact on man and society. Cambridge, UK: Cam- bridge University Press: 161- 170.
  • 6Agrama HA, Wen GY, Fleet L, et al. 2009. Genetic assessment of a mini-core subset developed from the USDA rice genbank[J]. Croc Sci ,49 : 1 336- 1 346.
  • 7黄娟,杨庆文,陈成斌,梁世春,张万霞,乔伟华,王家祥.广西普通野生稻的遗传多样性及分布特征[J].中国农业科学,2009,42(8):2633-2642. 被引量:16
  • 8李自超,张洪亮,曹永生,裘宗恩,魏兴华,汤圣祥,余萍,王象坤.中国地方稻种资源初级核心种质取样策略研究[J].作物学报,2003,29(1):20-24. 被引量:118
  • 9李自超,张洪亮,曾亚文,杨忠义,申时全,孙传清,王象坤.云南地方稻种资源核心种质取样方案研究[J].中国农业科学,2000,33(5):1-7. 被引量:112
  • 10吕广磊,蔺忠龙,白现广,Kyung-Ho Ma,付坚,刘芳芳,黄兴奇,Jae-Gyun Gway,程在全.云南栽培稻种SSR遗传多样性比较[J].植物学报,2009,44(4):457-463. 被引量:26

二级参考文献168

共引文献374

同被引文献288

引证文献19

二级引证文献112

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部