Neo-functionalization of a Teosinte branched 1 homologue mediates adaptations of upland rice

A transposon insertion in the regulatory region of maize Tb1 gene leads to increased apical dominance and a reduction of tillering. Here, the authors showed that a duplicated rice Tb1 orthologue, OsTb2, has gained a regulatory effect on tillering opposite that of OsTb1 during artificial selection on...

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Autores principales: Jun Lyu, Liyu Huang, Shilai Zhang, Yesheng Zhang, Weiming He, Peng Zeng, Yan Zeng, Guangfu Huang, Jing Zhang, Min Ning, Yachong Bao, Shilei Zhao, Qi Fu, Len J. Wade, Hua Chen, Wen Wang, Fengyi Hu
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Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/89dce6e614fb44389bd757e24c190312
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spelling oai:doaj.org-article:89dce6e614fb44389bd757e24c1903122021-12-02T15:34:36ZNeo-functionalization of a Teosinte branched 1 homologue mediates adaptations of upland rice10.1038/s41467-019-14264-12041-1723https://doaj.org/article/89dce6e614fb44389bd757e24c1903122020-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-14264-1https://doaj.org/toc/2041-1723A transposon insertion in the regulatory region of maize Tb1 gene leads to increased apical dominance and a reduction of tillering. Here, the authors showed that a duplicated rice Tb1 orthologue, OsTb2, has gained a regulatory effect on tillering opposite that of OsTb1 during artificial selection only in upland japonica rice.Jun LyuLiyu HuangShilai ZhangYesheng ZhangWeiming HePeng ZengYan ZengGuangfu HuangJing ZhangMin NingYachong BaoShilei ZhaoQi FuLen J. WadeHua ChenWen WangFengyi HuNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-13 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Jun Lyu
Liyu Huang
Shilai Zhang
Yesheng Zhang
Weiming He
Peng Zeng
Yan Zeng
Guangfu Huang
Jing Zhang
Min Ning
Yachong Bao
Shilei Zhao
Qi Fu
Len J. Wade
Hua Chen
Wen Wang
Fengyi Hu
Neo-functionalization of a Teosinte branched 1 homologue mediates adaptations of upland rice
description A transposon insertion in the regulatory region of maize Tb1 gene leads to increased apical dominance and a reduction of tillering. Here, the authors showed that a duplicated rice Tb1 orthologue, OsTb2, has gained a regulatory effect on tillering opposite that of OsTb1 during artificial selection only in upland japonica rice.
format article
author Jun Lyu
Liyu Huang
Shilai Zhang
Yesheng Zhang
Weiming He
Peng Zeng
Yan Zeng
Guangfu Huang
Jing Zhang
Min Ning
Yachong Bao
Shilei Zhao
Qi Fu
Len J. Wade
Hua Chen
Wen Wang
Fengyi Hu
author_facet Jun Lyu
Liyu Huang
Shilai Zhang
Yesheng Zhang
Weiming He
Peng Zeng
Yan Zeng
Guangfu Huang
Jing Zhang
Min Ning
Yachong Bao
Shilei Zhao
Qi Fu
Len J. Wade
Hua Chen
Wen Wang
Fengyi Hu
author_sort Jun Lyu
title Neo-functionalization of a Teosinte branched 1 homologue mediates adaptations of upland rice
title_short Neo-functionalization of a Teosinte branched 1 homologue mediates adaptations of upland rice
title_full Neo-functionalization of a Teosinte branched 1 homologue mediates adaptations of upland rice
title_fullStr Neo-functionalization of a Teosinte branched 1 homologue mediates adaptations of upland rice
title_full_unstemmed Neo-functionalization of a Teosinte branched 1 homologue mediates adaptations of upland rice
title_sort neo-functionalization of a teosinte branched 1 homologue mediates adaptations of upland rice
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/89dce6e614fb44389bd757e24c190312
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