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Chromosome-level Genomes Reveal the Genetic Basis of Descending Dysploidy and Sex Determination in Morus Plants

Multiple plant lineages have independently evolved sex chromosomes and variable karyotypes to maintain their sessile lifestyles through constant biological innovation. Morus notabilis, a dioecious mulberry species, has the fewest chromosomes among Morus spp., but the genetic basis of sex determinati...

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Autores principales: Xia, Zhongqiang, Dai, Xuelei, Fan, Wei, Liu, Changying, Zhang, Meirong, Bian, Peipei, Zhou, Yuping, Li, Liang, Zhu, Baozhong, Liu, Shuman, Li, Zhengang, Wang, Xiling, Yu, Maode, Xiang, Zhonghuai, Jiang, Yu, Zhao, Aichun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10225493/
https://www.ncbi.nlm.nih.gov/pubmed/36055564
http://dx.doi.org/10.1016/j.gpb.2022.08.005
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author Xia, Zhongqiang
Dai, Xuelei
Fan, Wei
Liu, Changying
Zhang, Meirong
Bian, Peipei
Zhou, Yuping
Li, Liang
Zhu, Baozhong
Liu, Shuman
Li, Zhengang
Wang, Xiling
Yu, Maode
Xiang, Zhonghuai
Jiang, Yu
Zhao, Aichun
author_facet Xia, Zhongqiang
Dai, Xuelei
Fan, Wei
Liu, Changying
Zhang, Meirong
Bian, Peipei
Zhou, Yuping
Li, Liang
Zhu, Baozhong
Liu, Shuman
Li, Zhengang
Wang, Xiling
Yu, Maode
Xiang, Zhonghuai
Jiang, Yu
Zhao, Aichun
author_sort Xia, Zhongqiang
collection PubMed
description Multiple plant lineages have independently evolved sex chromosomes and variable karyotypes to maintain their sessile lifestyles through constant biological innovation. Morus notabilis, a dioecious mulberry species, has the fewest chromosomes among Morus spp., but the genetic basis of sex determination and karyotype evolution in this species has not been identified. In this study, three high-quality genome assemblies were generated for Morus spp. [including dioecious M. notabilis (male and female) and Morus yunnanensis (female)] with genome sizes of 301–329 Mb and were grouped into six pseudochromosomes. Using a combination of genomic approaches, we found that the putative ancestral karyotype of Morus species was close to 14 protochromosomes, and that several chromosome fusion events resulted in descending dysploidy (2n = 2x = 12). We also characterized a ∼ 6.2-Mb sex-determining region on chromosome 3. Four potential male-specific genes, a partially duplicated DNA helicase gene (named MSDH) and three Ty3_Gypsy long terminal repeat retrotransposons (named MSTG1/2/3), were identified in the Y-linked area and considered to be strong candidate genes for sex determination or differentiation. Population genomic analysis showed that Guangdong accessions in China were genetically similar to Japanese accessions of mulberry. In addition, genomic areas containing selective sweeps that distinguish domesticated mulberry from wild populations in terms of flowering and disease resistance were identified. Our study provides an important genetic resource for sex identification research and molecular breeding in mulberry.
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spelling pubmed-102254932023-05-30 Chromosome-level Genomes Reveal the Genetic Basis of Descending Dysploidy and Sex Determination in Morus Plants Xia, Zhongqiang Dai, Xuelei Fan, Wei Liu, Changying Zhang, Meirong Bian, Peipei Zhou, Yuping Li, Liang Zhu, Baozhong Liu, Shuman Li, Zhengang Wang, Xiling Yu, Maode Xiang, Zhonghuai Jiang, Yu Zhao, Aichun Genomics Proteomics Bioinformatics Original Research Multiple plant lineages have independently evolved sex chromosomes and variable karyotypes to maintain their sessile lifestyles through constant biological innovation. Morus notabilis, a dioecious mulberry species, has the fewest chromosomes among Morus spp., but the genetic basis of sex determination and karyotype evolution in this species has not been identified. In this study, three high-quality genome assemblies were generated for Morus spp. [including dioecious M. notabilis (male and female) and Morus yunnanensis (female)] with genome sizes of 301–329 Mb and were grouped into six pseudochromosomes. Using a combination of genomic approaches, we found that the putative ancestral karyotype of Morus species was close to 14 protochromosomes, and that several chromosome fusion events resulted in descending dysploidy (2n = 2x = 12). We also characterized a ∼ 6.2-Mb sex-determining region on chromosome 3. Four potential male-specific genes, a partially duplicated DNA helicase gene (named MSDH) and three Ty3_Gypsy long terminal repeat retrotransposons (named MSTG1/2/3), were identified in the Y-linked area and considered to be strong candidate genes for sex determination or differentiation. Population genomic analysis showed that Guangdong accessions in China were genetically similar to Japanese accessions of mulberry. In addition, genomic areas containing selective sweeps that distinguish domesticated mulberry from wild populations in terms of flowering and disease resistance were identified. Our study provides an important genetic resource for sex identification research and molecular breeding in mulberry. Elsevier 2022-12 2022-08-30 /pmc/articles/PMC10225493/ /pubmed/36055564 http://dx.doi.org/10.1016/j.gpb.2022.08.005 Text en © 2022 The Authors. Published by Elsevier B.V. and Science Press on behalf of Beijing Institute of Genomics, Chinese Academy of Sciences / China National Center for Bioinformation and Genetics Society of China. https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Original Research
Xia, Zhongqiang
Dai, Xuelei
Fan, Wei
Liu, Changying
Zhang, Meirong
Bian, Peipei
Zhou, Yuping
Li, Liang
Zhu, Baozhong
Liu, Shuman
Li, Zhengang
Wang, Xiling
Yu, Maode
Xiang, Zhonghuai
Jiang, Yu
Zhao, Aichun
Chromosome-level Genomes Reveal the Genetic Basis of Descending Dysploidy and Sex Determination in Morus Plants
title Chromosome-level Genomes Reveal the Genetic Basis of Descending Dysploidy and Sex Determination in Morus Plants
title_full Chromosome-level Genomes Reveal the Genetic Basis of Descending Dysploidy and Sex Determination in Morus Plants
title_fullStr Chromosome-level Genomes Reveal the Genetic Basis of Descending Dysploidy and Sex Determination in Morus Plants
title_full_unstemmed Chromosome-level Genomes Reveal the Genetic Basis of Descending Dysploidy and Sex Determination in Morus Plants
title_short Chromosome-level Genomes Reveal the Genetic Basis of Descending Dysploidy and Sex Determination in Morus Plants
title_sort chromosome-level genomes reveal the genetic basis of descending dysploidy and sex determination in morus plants
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10225493/
https://www.ncbi.nlm.nih.gov/pubmed/36055564
http://dx.doi.org/10.1016/j.gpb.2022.08.005
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