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Genome-Wide Analysis of the RNase T2 Family and Identification of Interacting Proteins of Four ClS-RNase Genes in ‘XiangShui’ Lemon

S-RNase plays vital roles in the process of self-incompatibility (SI) in Rutaceae plants. Data have shown that the rejection phenomenon during self-pollination is due to the degradation of pollen tube RNA by S-RNase. The cytoskeleton microfilaments of pollen tubes are destroyed, and other components...

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Autores principales: Li, Yu-Ze, Zhu, Jia-Wei, Lin, Wei, Lan, Mo-Ying, Luo, Cong, Xia, Li-Ming, Zhang, Yi-Li, Liang, Rong-Zhen, Hu, Wang-Li, Huang, Gui-Xiang, He, Xin-Hua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9499183/
https://www.ncbi.nlm.nih.gov/pubmed/36142343
http://dx.doi.org/10.3390/ijms231810431
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author Li, Yu-Ze
Zhu, Jia-Wei
Lin, Wei
Lan, Mo-Ying
Luo, Cong
Xia, Li-Ming
Zhang, Yi-Li
Liang, Rong-Zhen
Hu, Wang-Li
Huang, Gui-Xiang
He, Xin-Hua
author_facet Li, Yu-Ze
Zhu, Jia-Wei
Lin, Wei
Lan, Mo-Ying
Luo, Cong
Xia, Li-Ming
Zhang, Yi-Li
Liang, Rong-Zhen
Hu, Wang-Li
Huang, Gui-Xiang
He, Xin-Hua
author_sort Li, Yu-Ze
collection PubMed
description S-RNase plays vital roles in the process of self-incompatibility (SI) in Rutaceae plants. Data have shown that the rejection phenomenon during self-pollination is due to the degradation of pollen tube RNA by S-RNase. The cytoskeleton microfilaments of pollen tubes are destroyed, and other components cannot extend downwards from the stigma and, ultimately, cannot reach the ovary to complete fertilisation. In this study, four S-RNase gene sequences were identified from the ‘XiangShui’ lemon genome and ubiquitome. Sequence analysis revealed that the conserved RNase T2 domains within S-RNases in ‘XiangShui’ lemon are the same as those within other species. Expression pattern analysis revealed that S(3)-RNase and S(4)-RNase are specifically expressed in the pistils, and spatiotemporal expression analysis showed that the S(3)-RNase expression levels in the stigmas, styles and ovaries were significantly higher after self-pollination than after cross-pollination. Subcellular localisation analysis showed that the S(1)-RNase, S(2)-RNase, S(3)-RNase and S(4)-RNase were found to be expressed in the nucleus according to laser confocal microscopy. In addition, yeast two-hybrid (Y2H) assays showed that S(3)-RNase interacted with F-box, Bifunctional fucokinase/fucose pyrophosphorylase (FKGP), aspartic proteinase A1, RRP46, pectinesterase/pectinesterase inhibitor 51 (PME51), phospholipid:diacylglycerol acyltransferase 1 (PDAT1), gibberellin receptor GID1B, GDT1-like protein 4, putative invertase inhibitor, tRNA ligase, PAP15, PAE8, TIM14-2, PGIP1 and p24beta2. Moreover, S(3)-RNase interacted with TOPP4. Therefore, S(3)-RNase may play an important role in the SI of ‘XiangShui’ lemon.
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spelling pubmed-94991832022-09-23 Genome-Wide Analysis of the RNase T2 Family and Identification of Interacting Proteins of Four ClS-RNase Genes in ‘XiangShui’ Lemon Li, Yu-Ze Zhu, Jia-Wei Lin, Wei Lan, Mo-Ying Luo, Cong Xia, Li-Ming Zhang, Yi-Li Liang, Rong-Zhen Hu, Wang-Li Huang, Gui-Xiang He, Xin-Hua Int J Mol Sci Article S-RNase plays vital roles in the process of self-incompatibility (SI) in Rutaceae plants. Data have shown that the rejection phenomenon during self-pollination is due to the degradation of pollen tube RNA by S-RNase. The cytoskeleton microfilaments of pollen tubes are destroyed, and other components cannot extend downwards from the stigma and, ultimately, cannot reach the ovary to complete fertilisation. In this study, four S-RNase gene sequences were identified from the ‘XiangShui’ lemon genome and ubiquitome. Sequence analysis revealed that the conserved RNase T2 domains within S-RNases in ‘XiangShui’ lemon are the same as those within other species. Expression pattern analysis revealed that S(3)-RNase and S(4)-RNase are specifically expressed in the pistils, and spatiotemporal expression analysis showed that the S(3)-RNase expression levels in the stigmas, styles and ovaries were significantly higher after self-pollination than after cross-pollination. Subcellular localisation analysis showed that the S(1)-RNase, S(2)-RNase, S(3)-RNase and S(4)-RNase were found to be expressed in the nucleus according to laser confocal microscopy. In addition, yeast two-hybrid (Y2H) assays showed that S(3)-RNase interacted with F-box, Bifunctional fucokinase/fucose pyrophosphorylase (FKGP), aspartic proteinase A1, RRP46, pectinesterase/pectinesterase inhibitor 51 (PME51), phospholipid:diacylglycerol acyltransferase 1 (PDAT1), gibberellin receptor GID1B, GDT1-like protein 4, putative invertase inhibitor, tRNA ligase, PAP15, PAE8, TIM14-2, PGIP1 and p24beta2. Moreover, S(3)-RNase interacted with TOPP4. Therefore, S(3)-RNase may play an important role in the SI of ‘XiangShui’ lemon. MDPI 2022-09-09 /pmc/articles/PMC9499183/ /pubmed/36142343 http://dx.doi.org/10.3390/ijms231810431 Text en © 2022 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, Yu-Ze
Zhu, Jia-Wei
Lin, Wei
Lan, Mo-Ying
Luo, Cong
Xia, Li-Ming
Zhang, Yi-Li
Liang, Rong-Zhen
Hu, Wang-Li
Huang, Gui-Xiang
He, Xin-Hua
Genome-Wide Analysis of the RNase T2 Family and Identification of Interacting Proteins of Four ClS-RNase Genes in ‘XiangShui’ Lemon
title Genome-Wide Analysis of the RNase T2 Family and Identification of Interacting Proteins of Four ClS-RNase Genes in ‘XiangShui’ Lemon
title_full Genome-Wide Analysis of the RNase T2 Family and Identification of Interacting Proteins of Four ClS-RNase Genes in ‘XiangShui’ Lemon
title_fullStr Genome-Wide Analysis of the RNase T2 Family and Identification of Interacting Proteins of Four ClS-RNase Genes in ‘XiangShui’ Lemon
title_full_unstemmed Genome-Wide Analysis of the RNase T2 Family and Identification of Interacting Proteins of Four ClS-RNase Genes in ‘XiangShui’ Lemon
title_short Genome-Wide Analysis of the RNase T2 Family and Identification of Interacting Proteins of Four ClS-RNase Genes in ‘XiangShui’ Lemon
title_sort genome-wide analysis of the rnase t2 family and identification of interacting proteins of four cls-rnase genes in ‘xiangshui’ lemon
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9499183/
https://www.ncbi.nlm.nih.gov/pubmed/36142343
http://dx.doi.org/10.3390/ijms231810431
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