Dissecting the genetic basis of heterosis in elite super-hybrid rice

Author:

Sun Zhizhong12ORCID,Peng Jianxiang3ORCID,Lv Qiming12ORCID,Ding Jia14ORCID,Chen Siyang4ORCID,Duan Meijuan4ORCID,He Qiang1ORCID,Wu Jun1ORCID,Tian Yan1ORCID,Yu Dong1ORCID,Tan Yanning1ORCID,Sheng Xiabing1ORCID,Chen Jin1ORCID,Sun Xuewu1ORCID,Liu Ling4ORCID,Peng Rui1ORCID,Liu Hai1ORCID,Zhou Tianshun12ORCID,Xu Na1ORCID,Lou Jianhang1ORCID,Yuan Longping1,Wang Bingbing3ORCID,Yuan Dingyang12ORCID

Affiliation:

1. State Key Laboratory of Hybrid Rice, Hunan Hybrid Rice Research Center, Hunan Academy of Agricultural Sciences , Changsha 410125 , China

2. Longping Branch, College of Biology, Hunan University , Changsha 410125 , China

3. Biobin Data Sciences Co., Ltd. , Changsha 410221 , China

4. College of Agronomy, Hunan Agricultural University , Changsha 410128 , China

Abstract

Abstract Y900 is one of the top hybrid rice (Oryza sativa) varieties, with its yield exceeding 15 t·hm−2. To dissect the mechanism of heterosis, we sequenced the male parent line R900 and female parent line Y58S using long-read and Hi-C technology. High-quality reference genomes of 396.41 Mb and 398.24 Mb were obtained for R900 and Y58S, respectively. Genome-wide variations between the parents were systematically identified, including 1,367,758 single-nucleotide polymorphisms, 299,149 insertions/deletions, and 4,757 structural variations. The level of variation between Y58S and R900 was the lowest among the comparisons of Y58S with other rice genomes. More than 75% of genes exhibited variation between the two parents. Compared with other two-line hybrids sharing the same female parent, the portion of Geng/japonica (GJ)-type genetic components from different male parents increased with yield increasing in their corresponding hybrids. Transcriptome analysis revealed that the partial dominance effect was the main genetic effect that constituted the heterosis of Y900. In the hybrid, both alleles from the two parents were expressed, and their expression patterns were dynamically regulated in different tissues. The cis-regulation was dominant for young panicle tissues, while trans-regulation was more common in leaf tissues. Overdominance was surprisingly prevalent in stems and more likely regulated by the trans-regulation mechanism. Additionally, R900 contained many excellent GJ haplotypes, such as NARROW LEAF1, Oryza sativa SQUAMOSA PROMOTER BINDING PROTEIN-LIKE13, and Grain number, plant height, and heading date8, making it a good complement to Y58S. The fine-tuned mechanism of heterosis involves genome-wide variation, GJ introgression, key functional genes, and dynamic gene/allele expression and regulation pattern changes in different tissues and growth stages.

Funder

National Key Research and Development Project

Science and Technology Innovation Program of Hunan Province

Major Science and Technology Program in Hainan Province

National Natural Science Foundation of China

Natural Science Foundation of Hunan Province

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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