Cargando…

Genome-wide identification, interaction of the MADS-box proteins in Zanthoxylum armatum and functional characterization of ZaMADS80 in floral development

As a typical dioecious species, Zanthoxylum armatum establishes apomictic reproduction, hence only female trees are cultivated. However, male and hermaphrodite flowers have recently appeared in female plants, resulting in a dramatic yield reduction. To date, the genetic basis underlying sex determin...

Descripción completa

Detalles Bibliográficos
Autores principales: Tang, Ning, Cao, Zhengyan, Wu, Peiyin, Zhang, Xian, Lou, Juan, Liu, Yanni, Wang, Qiyao, Hu, Yang, Si, Shuo, Sun, Xiaofan, Chen, Zexiong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9732391/
https://www.ncbi.nlm.nih.gov/pubmed/36507394
http://dx.doi.org/10.3389/fpls.2022.1038828
_version_ 1784846122559209472
author Tang, Ning
Cao, Zhengyan
Wu, Peiyin
Zhang, Xian
Lou, Juan
Liu, Yanni
Wang, Qiyao
Hu, Yang
Si, Shuo
Sun, Xiaofan
Chen, Zexiong
author_facet Tang, Ning
Cao, Zhengyan
Wu, Peiyin
Zhang, Xian
Lou, Juan
Liu, Yanni
Wang, Qiyao
Hu, Yang
Si, Shuo
Sun, Xiaofan
Chen, Zexiong
author_sort Tang, Ning
collection PubMed
description As a typical dioecious species, Zanthoxylum armatum establishes apomictic reproduction, hence only female trees are cultivated. However, male and hermaphrodite flowers have recently appeared in female plants, resulting in a dramatic yield reduction. To date, the genetic basis underlying sex determination and apomixis in Z. armatum has been largely unknown. Here, we observed abortion of the stamen or carpel prior to primordium initiation, thus corroborating the potential regulation of MADS-box in sex determination. In Z. armatum, a total of 105 MADS-box genes were identified, harboring 86 MIKC-type MADSs with lack of FLC orthologues. Transcriptome analysis revealed candidate MADSs involved in floral organ identity, including ten male-biased MADSs, represented by ZaMADS92/81/75(AP3/PI-like), and twenty-six female-specified, represented by ZaMADS80/49 (STK/AGL11-like) and ZaMADS42 (AG-like). Overexpressing ZaMADS92 resulted in earlier flowering, while ZaMADS80 overexpression triggered precocious fruit set and parthenocarpy as well as dramatic modifications in floral organs. To characterize their regulatory mechanisms, a comprehensive protein-protein interaction network of the represented MADSs was constructed based on yeast two-hybrid and bimolecular fluorescence complementation assays. Compared with model plants, the protein interaction patterns in Z. armatum exhibited both conservation and divergence. ZaMADS70 (SEP3-like) interacted with ZaMADS42 and ZaMADS48 (AP3-like) but not ZaMADS40 (AP1-like), facilitating the loss of petals in Z. armatum. The ZaMADS92/ZaMADS40 heterodimer could be responsible for accelerating flowering in ZaMADS92-OX lines. Moreover, the interactions between ZaMADS80 and ZaMADS67(AGL32-like) might contribute to apomixis. This work provides new insight into the molecular mechanisms of MADS-boxes in sex organ identity in Z. armatum.
format Online
Article
Text
id pubmed-9732391
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-97323912022-12-10 Genome-wide identification, interaction of the MADS-box proteins in Zanthoxylum armatum and functional characterization of ZaMADS80 in floral development Tang, Ning Cao, Zhengyan Wu, Peiyin Zhang, Xian Lou, Juan Liu, Yanni Wang, Qiyao Hu, Yang Si, Shuo Sun, Xiaofan Chen, Zexiong Front Plant Sci Plant Science As a typical dioecious species, Zanthoxylum armatum establishes apomictic reproduction, hence only female trees are cultivated. However, male and hermaphrodite flowers have recently appeared in female plants, resulting in a dramatic yield reduction. To date, the genetic basis underlying sex determination and apomixis in Z. armatum has been largely unknown. Here, we observed abortion of the stamen or carpel prior to primordium initiation, thus corroborating the potential regulation of MADS-box in sex determination. In Z. armatum, a total of 105 MADS-box genes were identified, harboring 86 MIKC-type MADSs with lack of FLC orthologues. Transcriptome analysis revealed candidate MADSs involved in floral organ identity, including ten male-biased MADSs, represented by ZaMADS92/81/75(AP3/PI-like), and twenty-six female-specified, represented by ZaMADS80/49 (STK/AGL11-like) and ZaMADS42 (AG-like). Overexpressing ZaMADS92 resulted in earlier flowering, while ZaMADS80 overexpression triggered precocious fruit set and parthenocarpy as well as dramatic modifications in floral organs. To characterize their regulatory mechanisms, a comprehensive protein-protein interaction network of the represented MADSs was constructed based on yeast two-hybrid and bimolecular fluorescence complementation assays. Compared with model plants, the protein interaction patterns in Z. armatum exhibited both conservation and divergence. ZaMADS70 (SEP3-like) interacted with ZaMADS42 and ZaMADS48 (AP3-like) but not ZaMADS40 (AP1-like), facilitating the loss of petals in Z. armatum. The ZaMADS92/ZaMADS40 heterodimer could be responsible for accelerating flowering in ZaMADS92-OX lines. Moreover, the interactions between ZaMADS80 and ZaMADS67(AGL32-like) might contribute to apomixis. This work provides new insight into the molecular mechanisms of MADS-boxes in sex organ identity in Z. armatum. Frontiers Media S.A. 2022-11-25 /pmc/articles/PMC9732391/ /pubmed/36507394 http://dx.doi.org/10.3389/fpls.2022.1038828 Text en Copyright © 2022 Tang, Cao, Wu, Zhang, Lou, Liu, Wang, Hu, Si, Sun and Chen 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
Tang, Ning
Cao, Zhengyan
Wu, Peiyin
Zhang, Xian
Lou, Juan
Liu, Yanni
Wang, Qiyao
Hu, Yang
Si, Shuo
Sun, Xiaofan
Chen, Zexiong
Genome-wide identification, interaction of the MADS-box proteins in Zanthoxylum armatum and functional characterization of ZaMADS80 in floral development
title Genome-wide identification, interaction of the MADS-box proteins in Zanthoxylum armatum and functional characterization of ZaMADS80 in floral development
title_full Genome-wide identification, interaction of the MADS-box proteins in Zanthoxylum armatum and functional characterization of ZaMADS80 in floral development
title_fullStr Genome-wide identification, interaction of the MADS-box proteins in Zanthoxylum armatum and functional characterization of ZaMADS80 in floral development
title_full_unstemmed Genome-wide identification, interaction of the MADS-box proteins in Zanthoxylum armatum and functional characterization of ZaMADS80 in floral development
title_short Genome-wide identification, interaction of the MADS-box proteins in Zanthoxylum armatum and functional characterization of ZaMADS80 in floral development
title_sort genome-wide identification, interaction of the mads-box proteins in zanthoxylum armatum and functional characterization of zamads80 in floral development
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9732391/
https://www.ncbi.nlm.nih.gov/pubmed/36507394
http://dx.doi.org/10.3389/fpls.2022.1038828
work_keys_str_mv AT tangning genomewideidentificationinteractionofthemadsboxproteinsinzanthoxylumarmatumandfunctionalcharacterizationofzamads80infloraldevelopment
AT caozhengyan genomewideidentificationinteractionofthemadsboxproteinsinzanthoxylumarmatumandfunctionalcharacterizationofzamads80infloraldevelopment
AT wupeiyin genomewideidentificationinteractionofthemadsboxproteinsinzanthoxylumarmatumandfunctionalcharacterizationofzamads80infloraldevelopment
AT zhangxian genomewideidentificationinteractionofthemadsboxproteinsinzanthoxylumarmatumandfunctionalcharacterizationofzamads80infloraldevelopment
AT loujuan genomewideidentificationinteractionofthemadsboxproteinsinzanthoxylumarmatumandfunctionalcharacterizationofzamads80infloraldevelopment
AT liuyanni genomewideidentificationinteractionofthemadsboxproteinsinzanthoxylumarmatumandfunctionalcharacterizationofzamads80infloraldevelopment
AT wangqiyao genomewideidentificationinteractionofthemadsboxproteinsinzanthoxylumarmatumandfunctionalcharacterizationofzamads80infloraldevelopment
AT huyang genomewideidentificationinteractionofthemadsboxproteinsinzanthoxylumarmatumandfunctionalcharacterizationofzamads80infloraldevelopment
AT sishuo genomewideidentificationinteractionofthemadsboxproteinsinzanthoxylumarmatumandfunctionalcharacterizationofzamads80infloraldevelopment
AT sunxiaofan genomewideidentificationinteractionofthemadsboxproteinsinzanthoxylumarmatumandfunctionalcharacterizationofzamads80infloraldevelopment
AT chenzexiong genomewideidentificationinteractionofthemadsboxproteinsinzanthoxylumarmatumandfunctionalcharacterizationofzamads80infloraldevelopment