期刊文献+

24个甜高粱品种主要农艺性状与品质性状遗传多样性分析 被引量:24

Analysis of genetic diversity and inheritability of agronomic traits and chemical compositions in sweet sorghum(Sorghum bicolour)
原文传递
导出
摘要 本研究对国内9份和国外15份甜高粱自交系品种的45个农艺性状和品质性状在新疆干旱区的表现进行遗传参数分析。目的是了解甜高粱种质资源在新疆干旱区的表现,为新疆干旱区甜高粱品种选育提供参考依据。遗传多样性分析表明,主要农艺、产量及品质性状的遗传多样性指数平均为1.831 9,明显高于分级性状的0.779 6。其中,茎秆产量的遗传多样性指数达到1.817 2,茎秆可溶性总糖含量遗传多样性指数为1.946 9。变异系数分析表明,各性状的遗传变异潜力较大。其中,叶鞘可溶性总糖含量变异系数最大为50.3%,播种-出苗期变异系数最小为5.7%,总体平均为23.9%。遗传参数分析表明,农艺性状平均广义遗传率为0.74;产量性状平均广义遗传率为0.92;各品质性状平均广义遗传率为0.93,其中茎秆可溶性总糖的广义遗传率达到0.99。进一步分析发现茎秆产量和茎秆可溶性总糖含量的相对遗传进度分别为81.1%和84.9%,可获得遗传增量分别是122.3和212.3g/kg,说明该甜高粱群体的茎秆产量和茎秆可溶性总糖含量均有着巨大的改良潜力。 Twenty-four sweet sorghum(Sorghum bicolour) varieties were selected in the study to analyze genetic diversity and inheritability of 45 agronomic traits and chemical compositions.The objective is to examine the performance of sweet sorghum germplasm in the arid area and then to assist its breeding in Xinjiang province.The results showed:the mean value of coefficient of genetic diversity(H′) in quantity characters(1.831 9) was much higher than that in classified characters(0.779 6).H′ for yield and soluble sugar content in stem were 1.817 2 and 1.946 9,respectively.Great genetic variation was observed.The mean value of coefficient of genetic variance(CV) was 23.9%,with the largest one(50.3%) in leaf sheath soluble sugar content and the least one(5.7%) in sowing-emergency duration.Further analysis found that the mean value of broad sense heritability(hB2) in agronomic,yield and chemical composition traits were 0.74,0.92,0.93,respectively,including hB2 for stem soluble sugar content(0.99).Relative genetic advance(△G) analysis revealed that △G of stem yield and stem soluble sugar content were 81.1% and 84.9%,and its genetic gain(G) were 122.3 and 212.3,respectively.Results revealed that stem yield and stem soluble sugar content of sweet sorghum had great potential for further genetic imporvement.
出处 《中国农业大学学报》 CAS CSCD 北大核心 2012年第6期83-91,共9页 Journal of China Agricultural University
基金 国家能源局能源节约和科技装备司项目(科技司函[2012]32号)
关键词 甜高粱 生物量 碳水化合物 遗传多样性指数 广义遗传率 遗传进度 sweet sorghum biomass carbohydrates genetic diversity index broad sense heritability genetic gain
  • 相关文献

参考文献20

  • 1Antonopoulou G,Gavala H N, Skiadas I V,et al. Biofuelsgeneration from sweet sorghum: fermentative hydrogenproduction and anaerobic digestion of the remaining biomass[J]. Bioresource Technol,2008 ?99(1) : 110-119.
  • 2Demirbas A. Progress and recent trends in biofuels[J]. ProgEnergy Combus Sci,2007,33(1) : 1-18.
  • 3Tian Y S, Zhao L X, Meng H B, et al. Estimation of unusedland potential for biofuels development in ( the) People’sRepublic of China[J], Appl Energy, 2009 ,86(SI) : 77-85.
  • 4Zhao Y L,Dolat A,Steinberger Y,et al. Biomass yield andchanges in chemical composition of sweet sorghum cultivarsgrown for biofuel[J]. Field Crop Res, 2009 ,111 : 55-64.
  • 5曹文伯.我国甜高粱种质资源鉴定及利用概况[J].植物遗传资源学报,2001,3(1):58-62. 被引量:34
  • 6曹文伯,李翠珍,吕凤金,等.全国高粱品种资源目录(1991一1995)[M].北京:中国农业出版社,1998.
  • 7李翠珍,黎裕.全国高粱品种资源目录(1996-2000)[M].北京:中国农业出版社,2000.
  • 8Haussmann B I G, Hess D E,Reddy B V S,et al. Quantitative-genetic parameters of sorghum growth under striga infestationin Mali and Kenya[J]. Plant breed*2001?120:49-56.
  • 9赵香娜,李桂英,刘洋,陆平,顿宝庆,岳美琪,张璞.国内外甜高粱种质资源主要性状遗传多样性及相关性分析[J].植物遗传资源学报,2008,9(3):302-307. 被引量:120
  • 10刘洋,罗萍,林希昊,窦美安,苏俊波.甜高粱主要农艺性状相关性及遗传多样性初析[J].热带作物学报,2011,32(6):1004-1008. 被引量:21

二级参考文献57

共引文献198

同被引文献379

引证文献24

二级引证文献219

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