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Comparative cytological and transcriptome analyses of ny2 mutant delayed degeneration of tapetal cells and promotes abnormal microspore development in neo-tetraploid rice

We aimed to investigate the genetic defects related to pollen development and infertility in NY2, a novel tetraploid rice germplasm known as Neo-tetraploid rice. This rice variety was created through the crossbreeding and selective breeding of various autotetraploid rice lines and has previously sho...

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Autores principales: Kamara, Nabieu, Jiao, Yamin, Huang, Weicong, Cao, Lichong, Zhu, Lianjun, Zhao, Chongchong, Huang, Xu, Shivute, Fimanekeni Ndaitavela, Liu, Xiangdong, Wu, Jinwen, Shahid, Muhammad Qasim
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10387629/
https://www.ncbi.nlm.nih.gov/pubmed/37528969
http://dx.doi.org/10.3389/fpls.2023.1229870
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author Kamara, Nabieu
Jiao, Yamin
Huang, Weicong
Cao, Lichong
Zhu, Lianjun
Zhao, Chongchong
Huang, Xu
Shivute, Fimanekeni Ndaitavela
Liu, Xiangdong
Wu, Jinwen
Shahid, Muhammad Qasim
author_facet Kamara, Nabieu
Jiao, Yamin
Huang, Weicong
Cao, Lichong
Zhu, Lianjun
Zhao, Chongchong
Huang, Xu
Shivute, Fimanekeni Ndaitavela
Liu, Xiangdong
Wu, Jinwen
Shahid, Muhammad Qasim
author_sort Kamara, Nabieu
collection PubMed
description We aimed to investigate the genetic defects related to pollen development and infertility in NY2, a novel tetraploid rice germplasm known as Neo-tetraploid rice. This rice variety was created through the crossbreeding and selective breeding of various autotetraploid rice lines and has previously shown high fertility. Our previous research has revealed that the NY2 gene, encoding a eukaryotic translation initiation factor 3 subunit E, regulates pollen fertility. However, the underlying mechanism behind this fertility is yet to be understood. To shed light on this matter, we performed a combined cytological and transcriptome analysis of the NY2 gene. Cytological analysis indicated that ny2 underwent abnormal tapetal cells, microspore, and middle layer development, which led to pollen abortion and ultimately to male sterility. Genetic analysis revealed that the F(1) plants showed normal fertility and an obvious advantage for seed setting compared to ny2. Global gene expression analysis in ny2 revealed a total of 7545 genes were detected at the meiosis stage, and 3925 and 3620 displayed upregulation and downregulation, respectively. The genes were significantly enriched for the gene ontology (GO) term “carbohydrate metabolic process. Moreover, 9 genes related to tapetum or pollen fertility showed down-regulation, such as OsABCG26 (ATP Binding Cassette G26), TMS9-1 (Thermosensitive Male Sterility), EAT1 (Programmed cell death regulatory), KIN14M (Kinesin Motor), OsMT1a (Metallothionein), and OsSTRL2 (Atypical strictosidine synthase), which were validated by qRT-PCR. Further analyses of DEGs identified nine down-regulated transcription factor genes related to pollen development. NY2 is an important regulator of the development of tapetum and microspore. The regulatory gene network described in this study may offer important understandings into the molecular processes that underlie fertility control in tetraploid rice.
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spelling pubmed-103876292023-08-01 Comparative cytological and transcriptome analyses of ny2 mutant delayed degeneration of tapetal cells and promotes abnormal microspore development in neo-tetraploid rice Kamara, Nabieu Jiao, Yamin Huang, Weicong Cao, Lichong Zhu, Lianjun Zhao, Chongchong Huang, Xu Shivute, Fimanekeni Ndaitavela Liu, Xiangdong Wu, Jinwen Shahid, Muhammad Qasim Front Plant Sci Plant Science We aimed to investigate the genetic defects related to pollen development and infertility in NY2, a novel tetraploid rice germplasm known as Neo-tetraploid rice. This rice variety was created through the crossbreeding and selective breeding of various autotetraploid rice lines and has previously shown high fertility. Our previous research has revealed that the NY2 gene, encoding a eukaryotic translation initiation factor 3 subunit E, regulates pollen fertility. However, the underlying mechanism behind this fertility is yet to be understood. To shed light on this matter, we performed a combined cytological and transcriptome analysis of the NY2 gene. Cytological analysis indicated that ny2 underwent abnormal tapetal cells, microspore, and middle layer development, which led to pollen abortion and ultimately to male sterility. Genetic analysis revealed that the F(1) plants showed normal fertility and an obvious advantage for seed setting compared to ny2. Global gene expression analysis in ny2 revealed a total of 7545 genes were detected at the meiosis stage, and 3925 and 3620 displayed upregulation and downregulation, respectively. The genes were significantly enriched for the gene ontology (GO) term “carbohydrate metabolic process. Moreover, 9 genes related to tapetum or pollen fertility showed down-regulation, such as OsABCG26 (ATP Binding Cassette G26), TMS9-1 (Thermosensitive Male Sterility), EAT1 (Programmed cell death regulatory), KIN14M (Kinesin Motor), OsMT1a (Metallothionein), and OsSTRL2 (Atypical strictosidine synthase), which were validated by qRT-PCR. Further analyses of DEGs identified nine down-regulated transcription factor genes related to pollen development. NY2 is an important regulator of the development of tapetum and microspore. The regulatory gene network described in this study may offer important understandings into the molecular processes that underlie fertility control in tetraploid rice. Frontiers Media S.A. 2023-07-17 /pmc/articles/PMC10387629/ /pubmed/37528969 http://dx.doi.org/10.3389/fpls.2023.1229870 Text en Copyright © 2023 Kamara, Jiao, Huang, Cao, Zhu, Zhao, Huang, Shivute, Liu, Wu and Shahid 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
Kamara, Nabieu
Jiao, Yamin
Huang, Weicong
Cao, Lichong
Zhu, Lianjun
Zhao, Chongchong
Huang, Xu
Shivute, Fimanekeni Ndaitavela
Liu, Xiangdong
Wu, Jinwen
Shahid, Muhammad Qasim
Comparative cytological and transcriptome analyses of ny2 mutant delayed degeneration of tapetal cells and promotes abnormal microspore development in neo-tetraploid rice
title Comparative cytological and transcriptome analyses of ny2 mutant delayed degeneration of tapetal cells and promotes abnormal microspore development in neo-tetraploid rice
title_full Comparative cytological and transcriptome analyses of ny2 mutant delayed degeneration of tapetal cells and promotes abnormal microspore development in neo-tetraploid rice
title_fullStr Comparative cytological and transcriptome analyses of ny2 mutant delayed degeneration of tapetal cells and promotes abnormal microspore development in neo-tetraploid rice
title_full_unstemmed Comparative cytological and transcriptome analyses of ny2 mutant delayed degeneration of tapetal cells and promotes abnormal microspore development in neo-tetraploid rice
title_short Comparative cytological and transcriptome analyses of ny2 mutant delayed degeneration of tapetal cells and promotes abnormal microspore development in neo-tetraploid rice
title_sort comparative cytological and transcriptome analyses of ny2 mutant delayed degeneration of tapetal cells and promotes abnormal microspore development in neo-tetraploid rice
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10387629/
https://www.ncbi.nlm.nih.gov/pubmed/37528969
http://dx.doi.org/10.3389/fpls.2023.1229870
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