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水、旱栽培条件下稻谷粒型和粒重的相关分析及其QTL定位 被引量:25
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作者 郭咏梅 穆平 +2 位作者 刘家富 李自超 卢义宣 《作物学报》 CAS CSCD 北大核心 2007年第1期50-56,共7页
为了解水、旱栽培条件下水稻粒形和粒重的表型及QTL变化,以陆稻品种IRAT109和水稻品种越富构建的双单倍体群体为材料,系统分析了稻谷粒长、粒宽、粒重及长宽比在水、旱栽培条件下的相关性,并进行了数量性状基因位点的比较定位。结果... 为了解水、旱栽培条件下水稻粒形和粒重的表型及QTL变化,以陆稻品种IRAT109和水稻品种越富构建的双单倍体群体为材料,系统分析了稻谷粒长、粒宽、粒重及长宽比在水、旱栽培条件下的相关性,并进行了数量性状基因位点的比较定位。结果表明,水、旱条件下,粒长与长宽比和粒重均呈极显著正相关;粒宽与长宽比呈极显著负相关,与粒重极显著正相关,4个性状在水、旱条件间相关性都达极显著正相关。其中粒长的相关系数最高,达0.817,粒宽的相关系数最低,为0.457。表明粒长受水分影响最小而粒宽受水分影响较大。粒重、长宽比介于二者之间。两种条件下共检测到14个QTLs,分布于水稻1、5、6、7、10和12染色体上,其中控制粒长的5个,LOD值为1.93—5.11,贡献率为5.97%-28.85%;控制粒宽的1个,LOD值为2.39,贡献率为12.76%;控制长宽比的3个,LOD值为2.08-4.60。贡献率为7.78%。21.89%;控制粒重的5个,LOD值为2.68—9.45,贡献率为4.1%-14.8%。其中控制粒长的qGL-5及控制粒重的qGWt-1a和qGWt-1b在水、旱条件下均能检测到,在抗旱育种中可用于分子标记辅助选择籽粒性状。QTL分析的结果进一步验证了表型分析结果,粒宽相对易受土壤水分影响,粒长、粒重和长宽比,受水分胁迫影响较小,遗传比较稳定。 展开更多
关键词 粒型 粒重 加倍单倍体群体(DH系) 数量性状基因座位(QTL) 水、旱栽培
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Advance of Rice Drought Resistance,Water Saving Cultivation and Genetic Breeding 被引量:1
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作者 黄金鹏 汪本福 +4 位作者 杨晓龙 赵锋 陈少愚 李阳 程建平 《Agricultural Science & Technology》 CAS 2016年第5期1115-1119,共5页
The water shortage faced with rice production in China was comprehensively analyzed,and the seasonal as well as spatial and temporal differences were the factors limiting rice production,which would be a severe test f... The water shortage faced with rice production in China was comprehensively analyzed,and the seasonal as well as spatial and temporal differences were the factors limiting rice production,which would be a severe test for grain production safety.Therefore,solving strategies had been proposed from the following aspects:the improvement of irrigation practices was of significant effect on improving the high efficient utilization of water;the screening of drought resistance cultivars and upland rice cultivation could also greatly improve the ability of drought resistance;the combination of traditional breeding techniques with modern transgenic technology as well as the QTL analysis had made considerable progress on improving the soil moisture productive potential of rice from the perspective of genetics.The development of China's rice industry would face greater water scarcity in the future,but the conventional water-saving technologies could only reduce water consume to a certain extent,while the exploration and improvement of the water saving potential of wetland rice to give full play to the biological water-saving function would become the goal of agricultural development in China. 展开更多
关键词 RICE Drought resistance and water-saving CULTIVATION Drought resistance breeding QTLS
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Development Prospect and Strategies of Water-saving and Drought-resistance Rice 被引量:2
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作者 贾琳 胡超 +3 位作者 李柱 周娟 符建法 贾先勇 《Agricultural Science & Technology》 CAS 2016年第5期1125-1128,共4页
Water-saving and drought-resistance upland rice has become a preferable choice for cotton farmlands ready for changing crops or paddy fields with water in short,because simplified and mechanical cultivation can be app... Water-saving and drought-resistance upland rice has become a preferable choice for cotton farmlands ready for changing crops or paddy fields with water in short,because simplified and mechanical cultivation can be applied for the rice varieties of drought resistance and high yield.At present,it has been applied with an area of 400 000 hm2 in Hunan Province and the area continues growing.The research bred and introduced the relevant cultivation technology standard applicable to local water-saving and drought-resistance rice varieties in order to improve farmer's benefits. 展开更多
关键词 Water-saving and drought-resistance rice Drought-resistance BREEDING Cultivation technology
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