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Structure and function of rice hybrid genomes reveal genetic basis and optimal performance of heterosis

Agriculture

Structure and function of rice hybrid genomes reveal genetic basis and optimal performance of heterosis

Z. Gu, J. Gong, et al.

Dive into groundbreaking research on rice hybrid cultivars by Zhoulin Gu, Junyi Gong, and their colleagues. This study demonstrates how *indica-indica* hybrids are broadening genetic resources and enhancing hybrid performance through a genomic model. Uncover the secrets behind rice heterosis and its potential to boost global agricultural production.... show more
Abstract
Exploitation of crop heterosis is crucial for increasing global agriculture production. However, the quantitative genomic analysis of heterosis was lacking, and there is currently no effective prediction tool to optimize cross-combinations. Here 2,839 rice hybrid cultivars and 9,839 segregation individuals were resequenced and phenotyped. Our findings demonstrated that indica-indica hybrid-improving breeding was a process that broadened genetic resources, pyramided breeding-favorable alleles through combinatorial selection and collaboratively improved both parents by eliminating the inferior alleles at negative dominant loci. Furthermore, we revealed that widespread genetic complementarity contributed to indica-japonica intersubspecific heterosis in yield traits, with dominance effect loci making a greater contribution to phenotypic variance than overdominance effect loci. On the basis of the comprehensive dataset, a genomic model applicable to diverse rice varieties was developed and optimized to predict the performance of hybrid combinations. Our data offer a valuable resource for advancing the understanding and facilitating the utilization of heterosis in rice.
Publisher
Nature Genetics
Published On
Oct 01, 2023
Authors
Zhoulin Gu, Junyi Gong, Zhou Zhu, Zhen Li, Qi Feng, Changsheng Wang, Yan Zhao, Qilin Zhan, Congcong Zhou, Ahong Wang, Tao Huang, Lei Zhang, Qilin Tian, Danlin Fan, Yiqi Lu, Qiang Zhao, Xuehui Huang, Shihua Yang, Bin Han
Tags
heterosis
rice hybrids
genetic resources
alleles
genomic model
crop improvement
phenotyping
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