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Two SNP Mutations Turned off Seed Shattering in Rice.


ABSTRACT: Seed shattering is an important agronomic trait in rice domestication. In this study, using a near-isogenic line (NIL-hs1) from Oryza barthii, we found a hybrid seed shattering phenomenon between the NIL-hs1 and its recurrent parent, a japonica variety Yundao 1. The heterozygotes at hybrid shattering 1 (HS1) exhibited the shattering phenotype, whereas the homozygotes from both parents conferred the non-shattering. The causal HS1 gene for hybrid shattering was located in the region between SSR marker RM17604 and RM8220 on chromosome 4. Sequence verification indicated that HS1 was identical to SH4, and HS1 controlled the hybrid shattering due to harboring the ancestral haplotype, the G allele at G237T site and C allele at C760T site from each parent. Comparative analysis at SH4 showed that all the accessions containing ancestral haplotype, including 78 wild relatives of rice and 8 African cultivated rice, had the shattering phenotype, whereas all the accessions with either of the homozygous domestic haplotypes at one of the two sites, including 17 wild relatives of rice, 111 African cultivated rice and 65 Asian cultivated rice, showed the non-shattering phenotype. Dominant complementation of the G allele at G237T site and the C allele at C760T site in HS1 led to a hybrid shattering phenotype. These results help to shed light on the nature of seed shattering in rice during domestication and improve the moderate shattering varieties adapted to mechanized harvest.

SUBMITTER: Zhang Y 

PROVIDER: S-EPMC6918406 | biostudies-literature | 2019 Nov

REPOSITORIES: biostudies-literature

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Two SNP Mutations Turned off Seed Shattering in Rice.

Zhang Yu Y   Zhou Jiawu J   Yang Ying Y   Elgamal Walid Hassan WH   Xu Peng P   Li Jing J   El-Refaee Yasser Z YZ   Hao Suding S   Tao Dayun D  

Plants (Basel, Switzerland) 20191106 11


Seed shattering is an important agronomic trait in rice domestication. In this study, using a near-isogenic line (NIL-<i>hs1</i>) from <i>Oryza barthii</i>, we found a hybrid seed shattering phenomenon between the NIL-<i>hs1</i> and its recurrent parent, a <i>japonica</i> variety Yundao 1. The heterozygotes at <i>hybrid shattering 1</i> (<i>HS1</i>) exhibited the shattering phenotype, whereas the homozygotes from both parents conferred the non-shattering. The causal <i>HS1</i> gene for hybrid sh  ...[more]

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