首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >The contribution of intersubspecific hybridization to the breeding of super-high-yielding japonica rice in northeast China.
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The contribution of intersubspecific hybridization to the breeding of super-high-yielding japonica rice in northeast China.

机译:亚种间杂交对东北地区超高产粳稻育种的贡献。

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摘要

Hybridization between indica and japonica rice combined with utilization of ideal plant type has led to the development of high-yielding japonica rice in northern China. However, the contribution at the genomic level of intersubspecific hybridization to the increased yield of northern Chinese japonica rice is uncertain. In this study, we analyzed the genomic pedigree of descendants of hybridization between indica and japonica rice grown in northeastern China between 1963 and 2008. Simple sequence repeat markers indicated that since 1990 the genetic diversity among northern japonica cultivars was enriched. Genome-wide analysis with subspecies-specific indel and intron length polymorphism markers showed indica-allele frequencies were significantly increased in cultivars bred after 1990, and were significantly positively correlated with spikelet number per panicle and significantly negatively correlated with panicle number per plant. Among eight genes controlling agronomic traits, GN1a and GS3 were partially fixed in the genome of northern japonica cultivars. In contrast, Waxy and qSH1 were eliminated, whereas DEP1 and qSW5 were retained. Indica germplasm is an important contributor to the increased yield of northern japonica rice. Breeding for high yield and grain quality in combination is a complicated process and difficult to achieve when relying on only one or several functional genes, thus the selection expertise of the breeder remains critical.
机译:and稻与粳稻的杂交以及理想植物类型的利用,导致了华北高产粳稻的发展。然而,在亚种间杂交的基因组水平上对中国北方粳稻产量增加的贡献尚不确定。在这项研究中,我们分析了1963年至2008年间在中国东北种植的in稻与粳稻杂交后代的基因组谱系。简单的序列重复标记表明,自1990年以来,北粳稻品种之间的遗传多样性得到了丰富。全基因组范围内的亚种特异性插入缺失和内含子长度多态性标记分析表明,1990等位基因频率在1990年以后育种的品种中显着增加,与每穗小穗数显着正相关,与每株穗数显着负相关。在八个控制农艺性状的基因中,GN1a和GS3部分固定在北方粳稻品种的基因组中。相反,Waxy和qSH1被消除,而DEP1和qSW5被保留。 northern稻种质是北部粳稻增产的重要原因。仅依靠一个或几个功能基因,高产和优质谷物的育种是一个复杂的过程,很难实现,因此育种者的选择专业知识仍然至关重要。

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