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Regulatory mechanism of MeGI on sexuality in Diospyros oleifera

Dioecy system is an important strategy for maintaining genetic diversity. The transcription factor MeGI, contributes to dioecy by promoting gynoecium development in Diospyros lotus and D. kaki. However, the function of MeGI in D. oleifera has not been identified. In this study, we confirmed that MeG...

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Autores principales: Mai, Yini, Sun, Peng, Suo, Yujing, Li, Huawei, Han, Weijuan, Diao, Songfeng, Wang, Liyuan, Yuan, Jiaying, Wang, Yiru, Ye, Lingshuai, Zhang, Yue, Li, Fangdong, Fu, Jianmin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9994623/
https://www.ncbi.nlm.nih.gov/pubmed/36909399
http://dx.doi.org/10.3389/fpls.2023.1046235
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author Mai, Yini
Sun, Peng
Suo, Yujing
Li, Huawei
Han, Weijuan
Diao, Songfeng
Wang, Liyuan
Yuan, Jiaying
Wang, Yiru
Ye, Lingshuai
Zhang, Yue
Li, Fangdong
Fu, Jianmin
author_facet Mai, Yini
Sun, Peng
Suo, Yujing
Li, Huawei
Han, Weijuan
Diao, Songfeng
Wang, Liyuan
Yuan, Jiaying
Wang, Yiru
Ye, Lingshuai
Zhang, Yue
Li, Fangdong
Fu, Jianmin
author_sort Mai, Yini
collection PubMed
description Dioecy system is an important strategy for maintaining genetic diversity. The transcription factor MeGI, contributes to dioecy by promoting gynoecium development in Diospyros lotus and D. kaki. However, the function of MeGI in D. oleifera has not been identified. In this study, we confirmed that MeGI, cloned from D. oleifera, repressed the androecium development in Arabidopsis thaliana. Subsequently, chromatin immunoprecipitation-sequencing (ChIP-seq), DNA affinity purification-sequencing (DAP-seq), and RNA-seq were used to uncover the gene expression response to MeGI. The results showed that the genes upregulated and downregulated in response to MeGI were mainly enriched in the circadian rhythm-related and flavonoid biosynthetic pathways, respectively. Additionally, the WRKY DNA-binding protein 28 (WRKY28) gene, which was detected by ChIP-seq, DAP-seq, and RNA-seq, was emphasized. WRKY28 has been reported to inhibit salicylic acid (SA) biosynthesis and was upregulated in MeGI-overexpressing A. thaliana flowers, suggesting that MeGI represses the SA level by increasing the expression level of WRKY28. This was confirmed that SA level was lower in D. oleifera female floral buds than male. Overall, our findings indicate that the MeGI mediates its sex control function in D. oleifera mainly by regulating genes in the circadian rhythm, SA biosynthetic, and flavonoid biosynthetic pathways.
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spelling pubmed-99946232023-03-09 Regulatory mechanism of MeGI on sexuality in Diospyros oleifera Mai, Yini Sun, Peng Suo, Yujing Li, Huawei Han, Weijuan Diao, Songfeng Wang, Liyuan Yuan, Jiaying Wang, Yiru Ye, Lingshuai Zhang, Yue Li, Fangdong Fu, Jianmin Front Plant Sci Plant Science Dioecy system is an important strategy for maintaining genetic diversity. The transcription factor MeGI, contributes to dioecy by promoting gynoecium development in Diospyros lotus and D. kaki. However, the function of MeGI in D. oleifera has not been identified. In this study, we confirmed that MeGI, cloned from D. oleifera, repressed the androecium development in Arabidopsis thaliana. Subsequently, chromatin immunoprecipitation-sequencing (ChIP-seq), DNA affinity purification-sequencing (DAP-seq), and RNA-seq were used to uncover the gene expression response to MeGI. The results showed that the genes upregulated and downregulated in response to MeGI were mainly enriched in the circadian rhythm-related and flavonoid biosynthetic pathways, respectively. Additionally, the WRKY DNA-binding protein 28 (WRKY28) gene, which was detected by ChIP-seq, DAP-seq, and RNA-seq, was emphasized. WRKY28 has been reported to inhibit salicylic acid (SA) biosynthesis and was upregulated in MeGI-overexpressing A. thaliana flowers, suggesting that MeGI represses the SA level by increasing the expression level of WRKY28. This was confirmed that SA level was lower in D. oleifera female floral buds than male. Overall, our findings indicate that the MeGI mediates its sex control function in D. oleifera mainly by regulating genes in the circadian rhythm, SA biosynthetic, and flavonoid biosynthetic pathways. Frontiers Media S.A. 2023-02-22 /pmc/articles/PMC9994623/ /pubmed/36909399 http://dx.doi.org/10.3389/fpls.2023.1046235 Text en Copyright © 2023 Mai, Sun, Suo, Li, Han, Diao, Wang, Yuan, Wang, Ye, Zhang, Li and Fu https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Mai, Yini
Sun, Peng
Suo, Yujing
Li, Huawei
Han, Weijuan
Diao, Songfeng
Wang, Liyuan
Yuan, Jiaying
Wang, Yiru
Ye, Lingshuai
Zhang, Yue
Li, Fangdong
Fu, Jianmin
Regulatory mechanism of MeGI on sexuality in Diospyros oleifera
title Regulatory mechanism of MeGI on sexuality in Diospyros oleifera
title_full Regulatory mechanism of MeGI on sexuality in Diospyros oleifera
title_fullStr Regulatory mechanism of MeGI on sexuality in Diospyros oleifera
title_full_unstemmed Regulatory mechanism of MeGI on sexuality in Diospyros oleifera
title_short Regulatory mechanism of MeGI on sexuality in Diospyros oleifera
title_sort regulatory mechanism of megi on sexuality in diospyros oleifera
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9994623/
https://www.ncbi.nlm.nih.gov/pubmed/36909399
http://dx.doi.org/10.3389/fpls.2023.1046235
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