生物
数量性状位点
穗
渗入
水稻
遗传建筑学
分子育种
人口
生物技术
植物育种
主食
基因
遗传学
农学
农业
生态学
人口学
社会学
作者
Gurjeet Singh,Navdeep Kaur,Renu Khanna,Rupinder Kaur,Santosh Gudi,Rajvir Kaur,Navjot Sidhu,Yogesh Vikal,Gurjit Singh Mangat
标识
DOI:10.1080/07388551.2022.2112648
摘要
Rice is a principal food crop for more than half of the global population. Grain number and grain weight (2Gs) are the two complex traits controlled by several quantitative trait loci (QTLs) and are considered the most critical components for yield enhancement in rice. Novel molecular biology and QTL mapping strategies can be utilized in dissecting the complex genetic architecture of these traits. Discovering the valuable genes/QTLs associated with 2Gs traits hidden in the rice genome and utilizing them in breeding programs may bring a revolution in rice production. Furthermore, the positional cloning and functional characterization of identified genes and QTLs may aid in understanding the molecular mechanisms underlying the 2Gs traits. In addition, knowledge of modern genomic tools aids the understanding of the nature of plant and panicle architecture, which enhances their photosynthetic activity. Rice researchers continue to combine important yield component traits (including 2Gs for the yield ceiling) by utilizing modern breeding tools, such as marker-assisted selection (MAS), haplotype-based breeding, and allele mining. Physical co-localization of
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