期刊文献+

水稻粒重及其相关性状的遗传解析 被引量:98

Genetic Dissection of Grain Weight and Its Related Traits in Rice (Oryza sativa L.)
在线阅读 下载PDF
导出
摘要 应用 2 92个 L emont/特青 F1 3 重组自交系 (RIL s)和 2 72个标记的遗传连锁图谱分析粒重及籽粒长、宽、厚、长 /宽、体积和容重 6个相关性状的遗传。所有性状在 RIL s中出现超亲分离。粒重与其他籽粒性状均呈显著正相关 ,而涉及籽粒品质的容重与粒宽、粒厚呈显著负相关。检测到影响粒重及其相关性状的主效 QTL 48个和互作位点 38对 ,这些 QTL解释了各性状 5 5 %以上的表型变异。80 %以上的主效 QTL呈现一因多效或生理相关。QGl3和 QGl2等通过籽粒体积间接影响粒重 ,L emont增效等位基因有利于籽粒品质的改良 ,而 QGw5、QGt1和 QGv7的特青增效等位基因增加粒重同时降低籽粒容重及品质。通过标记辅助选择进行不同 QTL的重组 ,有望在增加粒重的同时改善籽粒品质。 The genetic mechanism underlying the relationship between grain weight and its six component traits (grain length, grain width, grain thickness, length/width, grain volume and grain density) in rice was dissected using 292 F 13 RILs and a complete linkage map with 272 markers. The RILs showed tremendous transgressive segregation for all traits studied. Grain weight was positively correlated with all other grain traits. Significant negative associations existed between grain width, thickness and grain density, which could be associated with grain quality. Forty-eight main-effect QTLs and 38 epistatic QTL pairs affecting these traits were identified, collectively explaining over 55% of the total variation of individual traits. More than 80% QTLs tended to have pleiotropism or physiological associations. QGl3 and QGl2 had indirect impacts on grain weight via grain volume, at which the Lemont alleles were beneficial for the improvement of grain quality. The Teqing alleles at QGw5?QGt1 and QGv7 increased grain weight but had inverse impacts on grain quality and grain density. Improvement for grain weight as well as grain quality would be practical by recombination of different QTLs using marker-assisted selection.
出处 《中国水稻科学》 CAS CSCD 北大核心 2002年第1期6-10,共5页 Chinese Journal of Rice Science
基金 国家 973计划项目 国家 86 3计划项目 国家自然科学基金资助项目 美国洛克菲洛基金资助项目
关键词 水稻 粒重 籽粒品质 数量性状位点 上位性 标记辅助选择 相关性状 遗传分析 rice grain weight grain quality quantitative trait locus epistasis marker-assisted selection
  • 相关文献

参考文献19

  • 1Evans L T. Storage capacity as a limitation on grain yield. In: International Rice Research Institute. Rice Breeding. Los Banos, Philippines: IRRI, 1972. 499-511.
  • 2Venkateswarlu B, Vergara B S, Parao F T, et al. Enhancing grain yield potentials in rice by increasing the number of high density grains. Philipp J Crop Sci, 1986,11(3):145-152.
  • 3Khush G S. Prospects of and approaches to increasing the genetic yield potential of rice. In: Evenson, R E, Herdt R W, Hossain M. Rice Research in Asia: Progress and Priorities. Cambridge, UK: University Press, CAB International, IRRI, 1996. 59-71.
  • 4Huang N, Parco A, Mew T, et al. RFLP mapping of isozymes, RAPD and QTLs for grain shape, brown planthopper resistance in doubled haploid rice population. Molecular Breeding, 1997,3:105-113.
  • 5Redona E D, Marckill D J. Quantitative trait locus analysis for rice panicle and grain characteristics. Theor Appl Genet, 1998,96:957-963.
  • 6Lin H X, Qian H R, Zhuang Y J, et al. RFLP mapping of QTLs for yield and related characters in rice (Oryza sativa L.). Theor Appl Genet, 1996,92:920-927.
  • 7Li Z K, Luo L J, Mei H W, et al. A "defeated" rice resistance gene acts as a QTL against a virulent strain of Xanthomonas oryzae pv. oryzae. Mol Gen Genet, 1999, 261:58-63.
  • 8Yu S B, Zhong D B, Sanchez A, et al. An integrated molecular linkage map and genomic regions with clustered QTLs detected in the LT RI population. In: International Rice Research Institute. Abstract of the 4th International Rice Genetics Symposium. Los Banos, Philippines: IRRI, 2000. 278.
  • 9Lander E S, Boststein D. Mapping Mendelian factors underlying quantitative traits using RFLP linkage maps. Genetics, 1989, 121: 185-199.
  • 10Grafius J E. Multiple characters and correlated response. Crop Sci, 1978, 18: 931-934.

同被引文献1257

引证文献98

二级引证文献895

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