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Domain Unknown Function DUF1668-Containing Genes in Multiple Lineages Are Responsible for F(1) Pollen Sterility in Rice

Postzygotic reproductive isolation maintains species integrity and uniformity and contributes to speciation by restricting the free gene flow between divergent species. In this study we identify causal genes of two Mendelian factors S22A and S22B on rice chromosome 2 inducing F(1) pollen sterility i...

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Autores principales: Sakata, Mitsukazu, Takano-Kai, Noriko, Miyazaki, Yuta, Kanamori, Hiroyuki, Wu, Jianzhong, Matsumoto, Takashi, Doi, Kazuyuki, Yasui, Hideshi, Yoshimura, Atsushi, Yamagata, Yoshiyuki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7870705/
https://www.ncbi.nlm.nih.gov/pubmed/33574828
http://dx.doi.org/10.3389/fpls.2020.632420
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author Sakata, Mitsukazu
Takano-Kai, Noriko
Miyazaki, Yuta
Kanamori, Hiroyuki
Wu, Jianzhong
Matsumoto, Takashi
Doi, Kazuyuki
Yasui, Hideshi
Yoshimura, Atsushi
Yamagata, Yoshiyuki
author_facet Sakata, Mitsukazu
Takano-Kai, Noriko
Miyazaki, Yuta
Kanamori, Hiroyuki
Wu, Jianzhong
Matsumoto, Takashi
Doi, Kazuyuki
Yasui, Hideshi
Yoshimura, Atsushi
Yamagata, Yoshiyuki
author_sort Sakata, Mitsukazu
collection PubMed
description Postzygotic reproductive isolation maintains species integrity and uniformity and contributes to speciation by restricting the free gene flow between divergent species. In this study we identify causal genes of two Mendelian factors S22A and S22B on rice chromosome 2 inducing F(1) pollen sterility in hybrids between Oryza sativa japonica-type cultivar Taichung 65 (T65) and a wild relative of rice species Oryza glumaepatula. The causal gene of S22B in T65 encodes a protein containing DUF1668 and gametophytically expressed in the anthers, designated S22B_j. The O. glumaepatula allele S22B-g, allelic to S22B_j, possesses three non-synonymous substitutions and a 2-bp deletion, leading to a frameshifted translation at the S22B C-terminal region. Transcription level of S22B-j and/or S22B_g did not solely determine the fertility of pollen grains by genotypes at S22B. Western blotting of S22B found that one major band with approximately 46 kDa appeared only at the mature stage and was reduced on semi-sterile heterozygotes at S22B, implying that the 46 kDa band may associated in hybrid sterility. In addition, causal genes of S22A in T65 were found to be S22A_j1 and S22A_j3 encoding DUF1668-containing protein. The allele of a wild rice species Oryza meridionalis Ng at S22B, designated S22B_m, is a loss-of-function allele probably due to large deletion of the gene lacking DUF1668 domain and evolved from the different lineage of O. glumaepatula. Phylogenetic analysis of DUF1668 suggested that many gene duplications occurred before the divergence of current crops in Poaceae, and loss-of-function mutations of DUF1668-containing genes represent the candidate causal genetic events contributing to hybrid incompatibilities. The duplicated DUF1668-domain gene may provide genetic potential to induce hybrid incompatibility by consequent mutations after divergence.
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spelling pubmed-78707052021-02-10 Domain Unknown Function DUF1668-Containing Genes in Multiple Lineages Are Responsible for F(1) Pollen Sterility in Rice Sakata, Mitsukazu Takano-Kai, Noriko Miyazaki, Yuta Kanamori, Hiroyuki Wu, Jianzhong Matsumoto, Takashi Doi, Kazuyuki Yasui, Hideshi Yoshimura, Atsushi Yamagata, Yoshiyuki Front Plant Sci Plant Science Postzygotic reproductive isolation maintains species integrity and uniformity and contributes to speciation by restricting the free gene flow between divergent species. In this study we identify causal genes of two Mendelian factors S22A and S22B on rice chromosome 2 inducing F(1) pollen sterility in hybrids between Oryza sativa japonica-type cultivar Taichung 65 (T65) and a wild relative of rice species Oryza glumaepatula. The causal gene of S22B in T65 encodes a protein containing DUF1668 and gametophytically expressed in the anthers, designated S22B_j. The O. glumaepatula allele S22B-g, allelic to S22B_j, possesses three non-synonymous substitutions and a 2-bp deletion, leading to a frameshifted translation at the S22B C-terminal region. Transcription level of S22B-j and/or S22B_g did not solely determine the fertility of pollen grains by genotypes at S22B. Western blotting of S22B found that one major band with approximately 46 kDa appeared only at the mature stage and was reduced on semi-sterile heterozygotes at S22B, implying that the 46 kDa band may associated in hybrid sterility. In addition, causal genes of S22A in T65 were found to be S22A_j1 and S22A_j3 encoding DUF1668-containing protein. The allele of a wild rice species Oryza meridionalis Ng at S22B, designated S22B_m, is a loss-of-function allele probably due to large deletion of the gene lacking DUF1668 domain and evolved from the different lineage of O. glumaepatula. Phylogenetic analysis of DUF1668 suggested that many gene duplications occurred before the divergence of current crops in Poaceae, and loss-of-function mutations of DUF1668-containing genes represent the candidate causal genetic events contributing to hybrid incompatibilities. The duplicated DUF1668-domain gene may provide genetic potential to induce hybrid incompatibility by consequent mutations after divergence. Frontiers Media S.A. 2021-01-26 /pmc/articles/PMC7870705/ /pubmed/33574828 http://dx.doi.org/10.3389/fpls.2020.632420 Text en Copyright © 2021 Sakata, Takano-Kai, Miyazaki, Kanamori, Wu, Matsumoto, Doi, Yasui, Yoshimura and Yamagata. http://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
Sakata, Mitsukazu
Takano-Kai, Noriko
Miyazaki, Yuta
Kanamori, Hiroyuki
Wu, Jianzhong
Matsumoto, Takashi
Doi, Kazuyuki
Yasui, Hideshi
Yoshimura, Atsushi
Yamagata, Yoshiyuki
Domain Unknown Function DUF1668-Containing Genes in Multiple Lineages Are Responsible for F(1) Pollen Sterility in Rice
title Domain Unknown Function DUF1668-Containing Genes in Multiple Lineages Are Responsible for F(1) Pollen Sterility in Rice
title_full Domain Unknown Function DUF1668-Containing Genes in Multiple Lineages Are Responsible for F(1) Pollen Sterility in Rice
title_fullStr Domain Unknown Function DUF1668-Containing Genes in Multiple Lineages Are Responsible for F(1) Pollen Sterility in Rice
title_full_unstemmed Domain Unknown Function DUF1668-Containing Genes in Multiple Lineages Are Responsible for F(1) Pollen Sterility in Rice
title_short Domain Unknown Function DUF1668-Containing Genes in Multiple Lineages Are Responsible for F(1) Pollen Sterility in Rice
title_sort domain unknown function duf1668-containing genes in multiple lineages are responsible for f(1) pollen sterility in rice
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7870705/
https://www.ncbi.nlm.nih.gov/pubmed/33574828
http://dx.doi.org/10.3389/fpls.2020.632420
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