Two novel AP2/EREBP transcription factor genes TaPARG have pleiotropic functions on plant architecture and yield-related traits in common wheat

AP2/EREBPs play significant roles in plant growth and development. The novel, pleiotropic TaPARG (PLANT ARCHITECTURE-RELATED GENE), a member of the AP2/EREBP transcription factor gene family, and its flanking sequences were isolated in wheat (Triticum aestivum L.). Two TaPARG genes were identified a...

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Main Authors: Bo Li, Qiaoru Li, Xinguo Mao, Ang Li, Jingyi Wang, Xiaoping Chang, Chenyang Hao, Xueyong Zhang, Ruilian Jing
Format: Article
Language:English
Published: Frontiers Media S.A. 2016-08-01
Series:Frontiers in Plant Science
Subjects:
Online Access:http://journal.frontiersin.org/Journal/10.3389/fpls.2016.01191/full
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spelling doaj-4bcb7efb1c7f4fd3b450a569b96fb7662020-11-24T22:28:06ZengFrontiers Media S.A.Frontiers in Plant Science1664-462X2016-08-01710.3389/fpls.2016.01191204908Two novel AP2/EREBP transcription factor genes TaPARG have pleiotropic functions on plant architecture and yield-related traits in common wheatBo Li0Qiaoru Li1Xinguo Mao2Ang Li3Jingyi Wang4Xiaoping Chang5Chenyang Hao6Xueyong Zhang7Ruilian Jing8Chinese Academy of Agricultural SciencesChinese Academy of Agricultural SciencesChinese Academy of Agricultural SciencesChinese Academy of Agricultural SciencesChinese Academy of Agricultural SciencesChinese Academy of Agricultural SciencesChinese Academy of Agricultural SciencesChinese Academy of Agricultural SciencesChinese Academy of Agricultural SciencesAP2/EREBPs play significant roles in plant growth and development. The novel, pleiotropic TaPARG (PLANT ARCHITECTURE-RELATED GENE), a member of the AP2/EREBP transcription factor gene family, and its flanking sequences were isolated in wheat (Triticum aestivum L.). Two TaPARG genes were identified and named as TaPARG-2A and TaPARG-2D. Their amino acid sequences were highly similar especially in the functional domains. TaPARG-2A on chromosome 2A was flanked by markers Xwmc63 and Xgwm372. TaPARG-2D was mapped to chromosome 2D. Subcellular localization revealed that TaPARG-2D was localized in the nucleus. The results of tissue expression pattern, overexpression in rice, association analysis and distinct population verification jointly revealed that TaPARG functions during the entire growth cycle of wheat. Its functions include regulation of plant architecture-related and yield-related traits. Association analysis, geographic distribution and allelic frequencies suggested that favored haplotypes Hap-2A-2 and Hap-2A-3 were selected in Chinese wheat breeding programs. Both favored haplotypes might be caused by a single amino acid substitution (His/Tyr). These results suggest that TaPARG is a regulatory factor in plant growth and development, and that the favored alleles might be useful for improving plant architecture and grain yield of wheat.http://journal.frontiersin.org/Journal/10.3389/fpls.2016.01191/fullyieldplant architecturewheatAP2/EREBP tranTaPARG
collection DOAJ
language English
format Article
sources DOAJ
author Bo Li
Qiaoru Li
Xinguo Mao
Ang Li
Jingyi Wang
Xiaoping Chang
Chenyang Hao
Xueyong Zhang
Ruilian Jing
spellingShingle Bo Li
Qiaoru Li
Xinguo Mao
Ang Li
Jingyi Wang
Xiaoping Chang
Chenyang Hao
Xueyong Zhang
Ruilian Jing
Two novel AP2/EREBP transcription factor genes TaPARG have pleiotropic functions on plant architecture and yield-related traits in common wheat
Frontiers in Plant Science
yield
plant architecture
wheat
AP2/EREBP tran
TaPARG
author_facet Bo Li
Qiaoru Li
Xinguo Mao
Ang Li
Jingyi Wang
Xiaoping Chang
Chenyang Hao
Xueyong Zhang
Ruilian Jing
author_sort Bo Li
title Two novel AP2/EREBP transcription factor genes TaPARG have pleiotropic functions on plant architecture and yield-related traits in common wheat
title_short Two novel AP2/EREBP transcription factor genes TaPARG have pleiotropic functions on plant architecture and yield-related traits in common wheat
title_full Two novel AP2/EREBP transcription factor genes TaPARG have pleiotropic functions on plant architecture and yield-related traits in common wheat
title_fullStr Two novel AP2/EREBP transcription factor genes TaPARG have pleiotropic functions on plant architecture and yield-related traits in common wheat
title_full_unstemmed Two novel AP2/EREBP transcription factor genes TaPARG have pleiotropic functions on plant architecture and yield-related traits in common wheat
title_sort two novel ap2/erebp transcription factor genes taparg have pleiotropic functions on plant architecture and yield-related traits in common wheat
publisher Frontiers Media S.A.
series Frontiers in Plant Science
issn 1664-462X
publishDate 2016-08-01
description AP2/EREBPs play significant roles in plant growth and development. The novel, pleiotropic TaPARG (PLANT ARCHITECTURE-RELATED GENE), a member of the AP2/EREBP transcription factor gene family, and its flanking sequences were isolated in wheat (Triticum aestivum L.). Two TaPARG genes were identified and named as TaPARG-2A and TaPARG-2D. Their amino acid sequences were highly similar especially in the functional domains. TaPARG-2A on chromosome 2A was flanked by markers Xwmc63 and Xgwm372. TaPARG-2D was mapped to chromosome 2D. Subcellular localization revealed that TaPARG-2D was localized in the nucleus. The results of tissue expression pattern, overexpression in rice, association analysis and distinct population verification jointly revealed that TaPARG functions during the entire growth cycle of wheat. Its functions include regulation of plant architecture-related and yield-related traits. Association analysis, geographic distribution and allelic frequencies suggested that favored haplotypes Hap-2A-2 and Hap-2A-3 were selected in Chinese wheat breeding programs. Both favored haplotypes might be caused by a single amino acid substitution (His/Tyr). These results suggest that TaPARG is a regulatory factor in plant growth and development, and that the favored alleles might be useful for improving plant architecture and grain yield of wheat.
topic yield
plant architecture
wheat
AP2/EREBP tran
TaPARG
url http://journal.frontiersin.org/Journal/10.3389/fpls.2016.01191/full
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