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Ectopic Expression of a Maize Gene ZmDUF1645 in Rice Increases Grain Length and Yield, but Reduces Drought Stress Tolerance

As the human population grows rapidly, food shortages will become an even greater problem; therefore, increasing crop yield has become a focus of rice breeding programs. The maize gene, ZmDUF1645, encoding a putative member of the DUF1645 protein family with an unknown function, was transformed into...

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Autores principales: Li, Yaqi, Wang, Wei, Hu, Changqiong, Yang, Songjin, Ma, Chuan, Wu, Jiacheng, Wang, Yuwei, Xu, Zhengjun, Li, Lihua, Huang, Zhengjian, Zhu, Jianqing, Jia, Xiaomei, Ye, Xiaoying, Yang, Zhiyuang, Sun, Yongjian, Liu, Huainian, Chen, Rongjun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10298434/
https://www.ncbi.nlm.nih.gov/pubmed/37372942
http://dx.doi.org/10.3390/ijms24129794
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author Li, Yaqi
Wang, Wei
Hu, Changqiong
Yang, Songjin
Ma, Chuan
Wu, Jiacheng
Wang, Yuwei
Xu, Zhengjun
Li, Lihua
Huang, Zhengjian
Zhu, Jianqing
Jia, Xiaomei
Ye, Xiaoying
Yang, Zhiyuang
Sun, Yongjian
Liu, Huainian
Chen, Rongjun
author_facet Li, Yaqi
Wang, Wei
Hu, Changqiong
Yang, Songjin
Ma, Chuan
Wu, Jiacheng
Wang, Yuwei
Xu, Zhengjun
Li, Lihua
Huang, Zhengjian
Zhu, Jianqing
Jia, Xiaomei
Ye, Xiaoying
Yang, Zhiyuang
Sun, Yongjian
Liu, Huainian
Chen, Rongjun
author_sort Li, Yaqi
collection PubMed
description As the human population grows rapidly, food shortages will become an even greater problem; therefore, increasing crop yield has become a focus of rice breeding programs. The maize gene, ZmDUF1645, encoding a putative member of the DUF1645 protein family with an unknown function, was transformed into rice. Phenotypic analysis showed that enhanced ZmDUF1645 expression significantly altered various traits in transgenic rice plants, including increased grain length, width, weight, and number per panicle, resulting in a significant increase in yield, but a decrease in rice tolerance to drought stress. qRT-PCR results showed that the expression of the related genes regulating meristem activity, such as MPKA, CDKA, a novel crop grain filling gene (GIF1), and GS3, was significantly changed in the ZmDUF1645-overexpression lines. Subcellular colocalization showed that ZmDUF1645 was primarily localized on cell membrane systems. Based on these findings, we speculate that ZmDUF1645, like the OsSGL gene in the same protein family, may regulate grain size and affect yield through the cytokinin signaling pathway. This research provides further knowledge and understanding of the unknown functions of the DUF1645 protein family and may serve as a reference for biological breeding engineering to increase maize crop yield.
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spelling pubmed-102984342023-06-28 Ectopic Expression of a Maize Gene ZmDUF1645 in Rice Increases Grain Length and Yield, but Reduces Drought Stress Tolerance Li, Yaqi Wang, Wei Hu, Changqiong Yang, Songjin Ma, Chuan Wu, Jiacheng Wang, Yuwei Xu, Zhengjun Li, Lihua Huang, Zhengjian Zhu, Jianqing Jia, Xiaomei Ye, Xiaoying Yang, Zhiyuang Sun, Yongjian Liu, Huainian Chen, Rongjun Int J Mol Sci Article As the human population grows rapidly, food shortages will become an even greater problem; therefore, increasing crop yield has become a focus of rice breeding programs. The maize gene, ZmDUF1645, encoding a putative member of the DUF1645 protein family with an unknown function, was transformed into rice. Phenotypic analysis showed that enhanced ZmDUF1645 expression significantly altered various traits in transgenic rice plants, including increased grain length, width, weight, and number per panicle, resulting in a significant increase in yield, but a decrease in rice tolerance to drought stress. qRT-PCR results showed that the expression of the related genes regulating meristem activity, such as MPKA, CDKA, a novel crop grain filling gene (GIF1), and GS3, was significantly changed in the ZmDUF1645-overexpression lines. Subcellular colocalization showed that ZmDUF1645 was primarily localized on cell membrane systems. Based on these findings, we speculate that ZmDUF1645, like the OsSGL gene in the same protein family, may regulate grain size and affect yield through the cytokinin signaling pathway. This research provides further knowledge and understanding of the unknown functions of the DUF1645 protein family and may serve as a reference for biological breeding engineering to increase maize crop yield. MDPI 2023-06-06 /pmc/articles/PMC10298434/ /pubmed/37372942 http://dx.doi.org/10.3390/ijms24129794 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Li, Yaqi
Wang, Wei
Hu, Changqiong
Yang, Songjin
Ma, Chuan
Wu, Jiacheng
Wang, Yuwei
Xu, Zhengjun
Li, Lihua
Huang, Zhengjian
Zhu, Jianqing
Jia, Xiaomei
Ye, Xiaoying
Yang, Zhiyuang
Sun, Yongjian
Liu, Huainian
Chen, Rongjun
Ectopic Expression of a Maize Gene ZmDUF1645 in Rice Increases Grain Length and Yield, but Reduces Drought Stress Tolerance
title Ectopic Expression of a Maize Gene ZmDUF1645 in Rice Increases Grain Length and Yield, but Reduces Drought Stress Tolerance
title_full Ectopic Expression of a Maize Gene ZmDUF1645 in Rice Increases Grain Length and Yield, but Reduces Drought Stress Tolerance
title_fullStr Ectopic Expression of a Maize Gene ZmDUF1645 in Rice Increases Grain Length and Yield, but Reduces Drought Stress Tolerance
title_full_unstemmed Ectopic Expression of a Maize Gene ZmDUF1645 in Rice Increases Grain Length and Yield, but Reduces Drought Stress Tolerance
title_short Ectopic Expression of a Maize Gene ZmDUF1645 in Rice Increases Grain Length and Yield, but Reduces Drought Stress Tolerance
title_sort ectopic expression of a maize gene zmduf1645 in rice increases grain length and yield, but reduces drought stress tolerance
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10298434/
https://www.ncbi.nlm.nih.gov/pubmed/37372942
http://dx.doi.org/10.3390/ijms24129794
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