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作 者:戎福喜 汤丽魁[1] 唐媛媛[1] 李志博[1] 赵瑞海[1] 雷军[1] 魏亦农[1]
机构地区:[1]石河子大学农学院/新疆兵团绿洲生态农业重点实验室,新疆石河子832003
出 处:《棉花学报》2015年第5期417-426,共10页Cotton Science
基 金:国家重点基础研究发展计划(2012CB722205);国家自然科学基金(31360265);石河子大学动植物育种专项(gxjs2013-yz03);石河子大学高层次人才科研启动项目(RCZX201313)
摘 要:以海陆渐渗系13-1×辽棉12组配的195个单株的F2群体为作图群体,利用SSR(Simple sequence repeat)标记和Join Map3.0软件构建遗传连锁图谱,构建的遗传连锁图谱包含39个多态性标记、13个连锁群,该图谱总长1174.4 c M,覆盖棉花基因组的26.7%,利用Ici Mapping完备区间作图法对F2:3家系进行相关性状的QTL定位,共检测到30个叶绿素荧光参数、7个叶片干物质含量、6个叶面积指数、1个叶绿素含量的QTL位点,分布在8条染色体上,在同一染色体共标记区间内存在多个性状的QTL,部分位点加性遗传效应来自同一亲本,与干物质含量、最大光化学效应相关的QTL位点在3条染色体上不同标记区间内重复出现,与叶面积指数、最大光化学效应相关的QTL位点在4条染色体上不同标记区间内重复出现,表现出遗传上的一因多效或基因连锁效应,可用于高光效聚合育种。In this study, a genetic linkage map was constructed for an F2 population of 195 cotton plants derived from the cross between the parental introgression lines 13-1 and Liao 12 with SSR(simple sequence repeats) markers using the Join Map 3.0software. The map included 39 SSR loci and 13 linkage groups, covering 1174.4 c M and accounting for 26.7% of the cotton genome. Based on the inclusive composite interval mapping method with Ici Mapping, 44 QTLs(quantitative trait locus) were identified on eight chromosomes in the F2:3population, including 30 QTLs for chlorophyll fluorescence parameters, seven for leaf dry material content, six for leaf area index, and one for chlorophyll content. Multiple trait QTLs were located between the common range of markers on the same chromosome and the additive effect of some QTLs were inherited from the same parent.Some QTLs related to dry material content and maximal photochemical efficiency of PS Ⅱ appeared repeatedly in different ranges on three chromosomes and QTLs associated with leaf area index and maximal photochemical efficiency of PSⅡ recurred in different ranges on four chromosomes. These findings show that pleiotropism or genetic linkage could be used to combine many high-photosynthesis-efficiency genes into plants by genetic engineering.
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