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Molecular genetic distance and hybrid performance between Chinese and American maize (Zea mays L.) inbreds

机译:中美玉米近交系的分子遗传距离和杂种表现

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摘要

Development of superior hybrids depends on the identification and exploitation of heterotic groups based on divergent germplasms. The polymorphisms among 13 Chinese and 13 American parental maize inbreds were evaluated at 107 simple sequence repeat (SSR) loci. Grain yield of 169 F hybrids and corresponding molecular genetic distance (GD) for parents were partitioned into general and specific combining ability (GCA and SCA) and general and specific genetic distance (GGD and SGD), respectively. SSR data revealed that different geographic sources of inbreds were substantially divergent with several germplasm-specific alleles. GDs between Chinese and American inbreds showed greater mean values and narrower ranges than those within each set of inbreds. The parental inbreds were clustered into four groups. F performance was highly correlated with SCA for grain yield regardless of the type of cross. F performance and SCA were correlated with GD and SGD in hybrids created only with temperate inbreds. Maize superior hybrids were produced only by crosses of different germplasm with greater GDs. BSSS enhances the heterotic pattern with any other inbreds from China. Iowa Corn Borer Synthetic No. 1 (BSCB1) and CIMMYT Pool41 were new promising germplasms for establishment of potential heterotic patterns in the Chinese maize breeding program.
机译:优良杂种的发展取决于基于不同种质的杂种群体的鉴定和利用。在107个简单序列重复(SSR)基因座上评估了13个中国玉米亲本和13个美国玉米亲本近交系的多态性。将169 F杂种的籽粒产量和相应的亲本分子遗传距离(GD)分为一般和特异性结合能力(GCA和SCA)以及一般和特异性遗传距离(GGD和SGD)。 SSR数据显示,近交的不同地理来源与几个种质特异性等位基因大不相同。与每组自交系相比,中美自交系之间的GD均值更大,范围更窄。亲本近交系分为四类。无论杂交类型如何,F表现与SCA的籽粒产量高度相关。在仅由温带近交系产生的杂种中,F表现和SCA与GD和SGD相关。玉米优良杂种仅由具有较高GD的不同种质的杂交产生。 BSSS与其他来自中国的自交系一起增强了杂种模式。爱荷华州玉米Bor1号合成物(BSCB1)和CIMMYT Pool41是在中国玉米育种计划中建立潜在杂种模式的新希望种质。

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