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稻瘿蚊多抗性材料的聚合与创新(英文)

Enhancement of Rice Germplasm by Pyramiding the Cultivars with Multi-resistance to Orseolia oryzae (Wood-Mason)

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【作者】 冯锐秦学毅唐建淮朱汝财潘英华刘百龙韦素美黄凤宽

【Author】 FENG Rui1, QIN Xue-yi1, TANG Jian-huai1, ZHU Ru-cai1, PAN Ying-hua1, LIU Bai-long1, WEI Su-mei2, HUANG Feng-kuan21. Rice Research Institute, Guangxi Academy of Agricultural Sciences, Nanning 530007; 2. Plant Protection Research Institute, Guangxi Academy of Agricultural Sciences, Nanning 530007

【机构】 广西农业科学院水稻研究所广西农业科学院植保研究所

【摘要】 [Objective] This study was to breed rice cultivars with multi-resistance to Orseolia oryzae (Wood-Mason). [Method] The Guangxi local cultivar GX-M001(Jiangchao) with high resistance to Orseolia oryzae (Wood-Mason) was used to hybrid with the known resistance cultivars "Kangwenqingzhan" (harboring GM6 gene), OB677(harboring GM3 gene) from Sri Lanka, HT1350 and high yield and quality cultivar "Guiruanzhan". [Result] Through pyramiding the multi-resistant genes via routine hybridization, the general resistances of the hybrids were remarkably enhanced. The grades of resistance were also improved, many of the combinations were endowed with a resistance at immune level(grade 0); and interestingly, the respective hybridization of GX-M001(high resistance) with OB677(medium resistance) and HT1350(susceptible) also generate two lines at immune level, which is probably the effects of additive effects of genes. [Conclusion] By routine hybridization, multiple genes were successfully pyramided, thus generating novel rice lines with multiple resistances. For the rice breeding scientists at the grass-roots level, the resistance-resistance pyramiding is an effective approach to breed high resistance cultivars.

【Abstract】 [Objective] This study was to breed rice cultivars with multi-resistance to Orseolia oryzae (Wood-Mason). [Method] The Guangxi local cultivar GX-M001(Jiangchao) with high resistance to Orseolia oryzae (Wood-Mason) was used to hybrid with the known resistance cultivars "Kangwenqingzhan" (harboring GM6 gene), OB677(harboring GM3 gene) from Sri Lanka, HT1350 and high yield and quality cultivar "Guiruanzhan". [Result] Through pyramiding the multi-resistant genes via routine hybridization, the general resistances of the hybrids were remarkably enhanced. The grades of resistance were also improved, many of the combinations were endowed with a resistance at immune level(grade 0); and interestingly, the respective hybridization of GX-M001(high resistance) with OB677(medium resistance) and HT1350(susceptible) also generate two lines at immune level, which is probably the effects of additive effects of genes. [Conclusion] By routine hybridization, multiple genes were successfully pyramided, thus generating novel rice lines with multiple resistances. For the rice breeding scientists at the grass-roots level, the resistance-resistance pyramiding is an effective approach to breed high resistance cultivars.

【基金】 Supported by National Natural Science Foundation of China(30760117);National Key Technology R &D Program (2007BAD68B01)~~
  • 【文献出处】 Agricultural Science & Technology ,农业科学与技术(英文版) , 编辑部邮箱 ,2009年01期
  • 【分类号】S435.112
  • 【被引频次】4
  • 【下载频次】75
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