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Genomic Decoding of Breeding History to Guide Breeding-by-Design in Rice
Zhuo Chen, Qingyun Bu, Guifu Liu, Maoqing Wang, Hongru Wang, Huazhao Liu, Xiufeng Li, Hong Li, Jun Fang, Yan Liang, Zhenfeng Teng, Sai Kang, Hong Yu, Zhukuan Cheng, Yongbiao Xue, Chengzhi Liang, Jiuyou Tang, Jiayang Li, and Chengcai Chu
National Science Review
Abstract
Deciphering the intrinsic molecular logic of empirical crop breeding from a genomic perspective is a decisive prerequisite for breeding-by-design (BbD), but remains not well-established. Here, we decoded the historical features of past rice breeding by phenotyping and haplotyping 546 accessions covering the majority of cultivars bred in the history of Northeast China (NEC). We revealed that three groups founded the genetic diversities in NEC rice with distinct evolution patterns and traced and verified the breeding footprints to known or GWAS-detected QTLs, or introgressions from indica subspecies with chronological changes in allele frequencies. Then we summarized a rice breeding trend/principle in NEC, and combined with the successful example in breeding and application of Zhongkefa5 to demonstrate the guiding value of our conclusion for BbD in practice. Our study provides a paradigm for decoding the breeding history of a specific crop to guide BbD, which may have implications in different crop breeding.
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DOI:10.1093/nsr/nwad029 |
论文题目: |
Genomic Decoding of Breeding History to Guide Breeding-by-Design in Rice |
英文论文题目: |
Genomic Decoding of Breeding History to Guide Breeding-by-Design in Rice |
第一作者: |
Zhuo Chen, Qingyun Bu, Guifu Liu, Maoqing Wang, Hongru Wang, Huazhao Liu, Xiufeng Li, Hong Li, Jun Fang, Yan Liang, Zhenfeng Teng, Sai Kang, Hong Yu, Zhukuan Cheng, Yongbiao Xue, Chengzhi Liang, Jiuyou Tang, Jiayang Li, and Chengcai Chu |
英文第一作者: |
Zhuo Chen, Qingyun Bu, Guifu Liu, Maoqing Wang, Hongru Wang, Huazhao Liu, Xiufeng Li, Hong Li, Jun Fang, Yan Liang, Zhenfeng Teng, Sai Kang, Hong Yu, Zhukuan Cheng, Yongbiao Xue, Chengzhi Liang, Jiuyou Tang, Jiayang Li, and Chengcai Chu |
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2023-02-11 |
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Deciphering the intrinsic molecular logic of empirical crop breeding from a genomic perspective is a decisive prerequisite for breeding-by-design (BbD), but remains not well-established. Here, we decoded the historical features of past rice breeding by phenotyping and haplotyping 546 accessions covering the majority of cultivars bred in the history of Northeast China (NEC). We revealed that three groups founded the genetic diversities in NEC rice with distinct evolution patterns and traced and verified the breeding footprints to known or GWAS-detected QTLs, or introgressions from indica subspecies with chronological changes in allele frequencies. Then we summarized a rice breeding trend/principle in NEC, and combined with the successful example in breeding and application of Zhongkefa5 to demonstrate the guiding value of our conclusion for BbD in practice. Our study provides a paradigm for decoding the breeding history of a specific crop to guide BbD, which may have implications in different crop breeding. |
英文摘要: |
Deciphering the intrinsic molecular logic of empirical crop breeding from a genomic perspective is a decisive prerequisite for breeding-by-design (BbD), but remains not well-established. Here, we decoded the historical features of past rice breeding by phenotyping and haplotyping 546 accessions covering the majority of cultivars bred in the history of Northeast China (NEC). We revealed that three groups founded the genetic diversities in NEC rice with distinct evolution patterns and traced and verified the breeding footprints to known or GWAS-detected QTLs, or introgressions from indica subspecies with chronological changes in allele frequencies. Then we summarized a rice breeding trend/principle in NEC, and combined with the successful example in breeding and application of Zhongkefa5 to demonstrate the guiding value of our conclusion for BbD in practice. Our study provides a paradigm for decoding the breeding history of a specific crop to guide BbD, which may have implications in different crop breeding. |
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National Science Review |
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National Science Review |
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