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SEPALLATA­-like genes of Isatis indigotica can affect the architecture of the inflorescences and the development of the floral organs

BACKGROUND: The architecture of inflorescence and the development of floral organs can influence the yield of seeds and have a significant impact on plant propagation. E-class floral homeotic MADS-box genes exhibit important roles in regulation of floral transition and differentiation of floral orga...

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Autores principales: Ma, Yan-Qin, Pu, Zuo-Qian, Tan, Xiao-Min, Meng, Qi, Zhang, Kai-Li, Yang, Liu, Ma, Ye-Ye, Huang, Xuan, Xu, Zi-Qin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: PeerJ Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8896020/
https://www.ncbi.nlm.nih.gov/pubmed/35251790
http://dx.doi.org/10.7717/peerj.13034
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author Ma, Yan-Qin
Pu, Zuo-Qian
Tan, Xiao-Min
Meng, Qi
Zhang, Kai-Li
Yang, Liu
Ma, Ye-Ye
Huang, Xuan
Xu, Zi-Qin
author_facet Ma, Yan-Qin
Pu, Zuo-Qian
Tan, Xiao-Min
Meng, Qi
Zhang, Kai-Li
Yang, Liu
Ma, Ye-Ye
Huang, Xuan
Xu, Zi-Qin
author_sort Ma, Yan-Qin
collection PubMed
description BACKGROUND: The architecture of inflorescence and the development of floral organs can influence the yield of seeds and have a significant impact on plant propagation. E-class floral homeotic MADS-box genes exhibit important roles in regulation of floral transition and differentiation of floral organs. Woad (Isatis indigotica) possesses unique inflorescence, floral organs and fruit. However, very little research has been carried out to determine the function of MADS-box genes in this medicinal cruciferous plant species. RESULTS: SEPALLATA orthologs in I. indigotica were cloned by degenerate PCR. The sequence possessing the highest identity with SEP2 and SEP4 of Arabidopsis were named as IiSEP2 and IiSEP4, respectively. Constitutive expression of IiSEP2 in Columbia (Col-0) ecotype of Arabidopsis led to early flowering, and the number of the flowers and the lateral branches was reduced, indicating an alteration in architecture of the inflorescences. Moreover, the number of the floral organs was declined, the sepals were turned into carpelloid tissues bearing stigmatic papillae and ovules, and secondary flower could be produced in apetalous terminal flowers. In 35S::IiSEP4-GFP transgenic Arabidopsis plants in Landsberg erecta (Ler) genetic background, the number of the floral organs was decreased, sepals were converted into curly carpelloid structures, accompanied by generation of ovules. Simultaneously, the size of petals, stamens and siliques was diminished. In 35S::IiSEP4-GFP transgenic plants of apetalous ap1 cal double mutant in Ler genetic background, the cauliflower phenotype was attenuated significantly, and the petal formation could be rescued. Occasionally, chimeric organs composed of petaloid and sepaloid tissues, or petaloid and stamineous tissues, were produced in IiSEP4 transgenic plants of apl cal double mutant. It suggested that overexpression of IiSEP4 could restore the capacity in petal differentiation. Silencing of IiSEP4 by Virus-Induced Gene Silencing (VIGS) can delay the flowering time, and reduce the number and size of the floral organs in woad flowers. CONCLUSION: All the results showed that SEPALLATA-like genes could influence the architecture of the inflorescence and the determinacy of the floral meristems, and was also related to development of the floral organs.
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spelling pubmed-88960202022-03-05 SEPALLATA­-like genes of Isatis indigotica can affect the architecture of the inflorescences and the development of the floral organs Ma, Yan-Qin Pu, Zuo-Qian Tan, Xiao-Min Meng, Qi Zhang, Kai-Li Yang, Liu Ma, Ye-Ye Huang, Xuan Xu, Zi-Qin PeerJ Molecular Biology BACKGROUND: The architecture of inflorescence and the development of floral organs can influence the yield of seeds and have a significant impact on plant propagation. E-class floral homeotic MADS-box genes exhibit important roles in regulation of floral transition and differentiation of floral organs. Woad (Isatis indigotica) possesses unique inflorescence, floral organs and fruit. However, very little research has been carried out to determine the function of MADS-box genes in this medicinal cruciferous plant species. RESULTS: SEPALLATA orthologs in I. indigotica were cloned by degenerate PCR. The sequence possessing the highest identity with SEP2 and SEP4 of Arabidopsis were named as IiSEP2 and IiSEP4, respectively. Constitutive expression of IiSEP2 in Columbia (Col-0) ecotype of Arabidopsis led to early flowering, and the number of the flowers and the lateral branches was reduced, indicating an alteration in architecture of the inflorescences. Moreover, the number of the floral organs was declined, the sepals were turned into carpelloid tissues bearing stigmatic papillae and ovules, and secondary flower could be produced in apetalous terminal flowers. In 35S::IiSEP4-GFP transgenic Arabidopsis plants in Landsberg erecta (Ler) genetic background, the number of the floral organs was decreased, sepals were converted into curly carpelloid structures, accompanied by generation of ovules. Simultaneously, the size of petals, stamens and siliques was diminished. In 35S::IiSEP4-GFP transgenic plants of apetalous ap1 cal double mutant in Ler genetic background, the cauliflower phenotype was attenuated significantly, and the petal formation could be rescued. Occasionally, chimeric organs composed of petaloid and sepaloid tissues, or petaloid and stamineous tissues, were produced in IiSEP4 transgenic plants of apl cal double mutant. It suggested that overexpression of IiSEP4 could restore the capacity in petal differentiation. Silencing of IiSEP4 by Virus-Induced Gene Silencing (VIGS) can delay the flowering time, and reduce the number and size of the floral organs in woad flowers. CONCLUSION: All the results showed that SEPALLATA-like genes could influence the architecture of the inflorescence and the determinacy of the floral meristems, and was also related to development of the floral organs. PeerJ Inc. 2022-03-01 /pmc/articles/PMC8896020/ /pubmed/35251790 http://dx.doi.org/10.7717/peerj.13034 Text en © 2022 Ma et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, reproduction and adaptation in any medium and for any purpose provided that it is properly attributed. For attribution, the original author(s), title, publication source (PeerJ) and either DOI or URL of the article must be cited.
spellingShingle Molecular Biology
Ma, Yan-Qin
Pu, Zuo-Qian
Tan, Xiao-Min
Meng, Qi
Zhang, Kai-Li
Yang, Liu
Ma, Ye-Ye
Huang, Xuan
Xu, Zi-Qin
SEPALLATA­-like genes of Isatis indigotica can affect the architecture of the inflorescences and the development of the floral organs
title SEPALLATA­-like genes of Isatis indigotica can affect the architecture of the inflorescences and the development of the floral organs
title_full SEPALLATA­-like genes of Isatis indigotica can affect the architecture of the inflorescences and the development of the floral organs
title_fullStr SEPALLATA­-like genes of Isatis indigotica can affect the architecture of the inflorescences and the development of the floral organs
title_full_unstemmed SEPALLATA­-like genes of Isatis indigotica can affect the architecture of the inflorescences and the development of the floral organs
title_short SEPALLATA­-like genes of Isatis indigotica can affect the architecture of the inflorescences and the development of the floral organs
title_sort sepallata­-like genes of isatis indigotica can affect the architecture of the inflorescences and the development of the floral organs
topic Molecular Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8896020/
https://www.ncbi.nlm.nih.gov/pubmed/35251790
http://dx.doi.org/10.7717/peerj.13034
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