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Genome of ‘Charleston Gray’, the principal American watermelon cultivar, and genetic characterization of 1,365 accessions in the U.S. National Plant Germplasm System watermelon collection

Years of selection for desirable fruit quality traits in dessert watermelon (Citrullus lanatus) has resulted in a narrow genetic base in modern cultivars. Development of novel genomic and genetic resources offers great potential to expand genetic diversity and improve important traits in watermelon....

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Autores principales: Wu, Shan, Wang, Xin, Reddy, Umesh, Sun, Honghe, Bao, Kan, Gao, Lei, Mao, Linyong, Patel, Takshay, Ortiz, Carlos, Abburi, Venkata L., Nimmakayala, Padma, Branham, Sandra, Wechter, Pat, Massey, Laura, Ling, Kai‐Shu, Kousik, Chandrasekar, Hammar, Sue A., Tadmor, Yaakov, Portnoy, Vitaly, Gur, Amit, Katzir, Nurit, Guner, Nihat, Davis, Angela, Hernandez, Alvaro G., Wright, Chris L., McGregor, Cecilia, Jarret, Robert, Zhang, Xingping, Xu, Yong, Wehner, Todd C., Grumet, Rebecca, Levi, Amnon, Fei, Zhangjun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6835170/
https://www.ncbi.nlm.nih.gov/pubmed/31022325
http://dx.doi.org/10.1111/pbi.13136
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author Wu, Shan
Wang, Xin
Reddy, Umesh
Sun, Honghe
Bao, Kan
Gao, Lei
Mao, Linyong
Patel, Takshay
Ortiz, Carlos
Abburi, Venkata L.
Nimmakayala, Padma
Branham, Sandra
Wechter, Pat
Massey, Laura
Ling, Kai‐Shu
Kousik, Chandrasekar
Hammar, Sue A.
Tadmor, Yaakov
Portnoy, Vitaly
Gur, Amit
Katzir, Nurit
Guner, Nihat
Davis, Angela
Hernandez, Alvaro G.
Wright, Chris L.
McGregor, Cecilia
Jarret, Robert
Zhang, Xingping
Xu, Yong
Wehner, Todd C.
Grumet, Rebecca
Levi, Amnon
Fei, Zhangjun
author_facet Wu, Shan
Wang, Xin
Reddy, Umesh
Sun, Honghe
Bao, Kan
Gao, Lei
Mao, Linyong
Patel, Takshay
Ortiz, Carlos
Abburi, Venkata L.
Nimmakayala, Padma
Branham, Sandra
Wechter, Pat
Massey, Laura
Ling, Kai‐Shu
Kousik, Chandrasekar
Hammar, Sue A.
Tadmor, Yaakov
Portnoy, Vitaly
Gur, Amit
Katzir, Nurit
Guner, Nihat
Davis, Angela
Hernandez, Alvaro G.
Wright, Chris L.
McGregor, Cecilia
Jarret, Robert
Zhang, Xingping
Xu, Yong
Wehner, Todd C.
Grumet, Rebecca
Levi, Amnon
Fei, Zhangjun
author_sort Wu, Shan
collection PubMed
description Years of selection for desirable fruit quality traits in dessert watermelon (Citrullus lanatus) has resulted in a narrow genetic base in modern cultivars. Development of novel genomic and genetic resources offers great potential to expand genetic diversity and improve important traits in watermelon. Here, we report a high‐quality genome sequence of watermelon cultivar ‘Charleston Gray’, a principal American dessert watermelon, to complement the existing reference genome from ‘97103’, an East Asian cultivar. Comparative analyses between genomes of ‘Charleston Gray’ and ‘97103’ revealed genomic variants that may underlie phenotypic differences between the two cultivars. We then genotyped 1365 watermelon plant introduction (PI) lines maintained at the U.S. National Plant Germplasm System using genotyping‐by‐sequencing (GBS). These PI lines were collected throughout the world and belong to three Citrullus species, C. lanatus, C. mucosospermus and C. amarus. Approximately 25 000 high‐quality single nucleotide polymorphisms (SNPs) were derived from the GBS data using the ‘Charleston Gray’ genome as the reference. Population genomic analyses using these SNPs discovered a close relationship between C. lanatus and C. mucosospermus and identified four major groups in these two species correlated to their geographic locations. Citrullus amarus was found to have a distinct genetic makeup compared to C. lanatus and C. mucosospermus. The SNPs also enabled identification of genomic regions associated with important fruit quality and disease resistance traits through genome‐wide association studies. The high‐quality ‘Charleston Gray’ genome and the genotyping data of this large collection of watermelon accessions provide valuable resources for facilitating watermelon research, breeding and improvement.
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spelling pubmed-68351702019-11-12 Genome of ‘Charleston Gray’, the principal American watermelon cultivar, and genetic characterization of 1,365 accessions in the U.S. National Plant Germplasm System watermelon collection Wu, Shan Wang, Xin Reddy, Umesh Sun, Honghe Bao, Kan Gao, Lei Mao, Linyong Patel, Takshay Ortiz, Carlos Abburi, Venkata L. Nimmakayala, Padma Branham, Sandra Wechter, Pat Massey, Laura Ling, Kai‐Shu Kousik, Chandrasekar Hammar, Sue A. Tadmor, Yaakov Portnoy, Vitaly Gur, Amit Katzir, Nurit Guner, Nihat Davis, Angela Hernandez, Alvaro G. Wright, Chris L. McGregor, Cecilia Jarret, Robert Zhang, Xingping Xu, Yong Wehner, Todd C. Grumet, Rebecca Levi, Amnon Fei, Zhangjun Plant Biotechnol J Research Articles Years of selection for desirable fruit quality traits in dessert watermelon (Citrullus lanatus) has resulted in a narrow genetic base in modern cultivars. Development of novel genomic and genetic resources offers great potential to expand genetic diversity and improve important traits in watermelon. Here, we report a high‐quality genome sequence of watermelon cultivar ‘Charleston Gray’, a principal American dessert watermelon, to complement the existing reference genome from ‘97103’, an East Asian cultivar. Comparative analyses between genomes of ‘Charleston Gray’ and ‘97103’ revealed genomic variants that may underlie phenotypic differences between the two cultivars. We then genotyped 1365 watermelon plant introduction (PI) lines maintained at the U.S. National Plant Germplasm System using genotyping‐by‐sequencing (GBS). These PI lines were collected throughout the world and belong to three Citrullus species, C. lanatus, C. mucosospermus and C. amarus. Approximately 25 000 high‐quality single nucleotide polymorphisms (SNPs) were derived from the GBS data using the ‘Charleston Gray’ genome as the reference. Population genomic analyses using these SNPs discovered a close relationship between C. lanatus and C. mucosospermus and identified four major groups in these two species correlated to their geographic locations. Citrullus amarus was found to have a distinct genetic makeup compared to C. lanatus and C. mucosospermus. The SNPs also enabled identification of genomic regions associated with important fruit quality and disease resistance traits through genome‐wide association studies. The high‐quality ‘Charleston Gray’ genome and the genotyping data of this large collection of watermelon accessions provide valuable resources for facilitating watermelon research, breeding and improvement. John Wiley and Sons Inc. 2019-05-07 2019-12 /pmc/articles/PMC6835170/ /pubmed/31022325 http://dx.doi.org/10.1111/pbi.13136 Text en © 2019 The Authors. Plant Biotechnology Journal published by Society for Experimental Biology and The Association of Applied Biologists and John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Wu, Shan
Wang, Xin
Reddy, Umesh
Sun, Honghe
Bao, Kan
Gao, Lei
Mao, Linyong
Patel, Takshay
Ortiz, Carlos
Abburi, Venkata L.
Nimmakayala, Padma
Branham, Sandra
Wechter, Pat
Massey, Laura
Ling, Kai‐Shu
Kousik, Chandrasekar
Hammar, Sue A.
Tadmor, Yaakov
Portnoy, Vitaly
Gur, Amit
Katzir, Nurit
Guner, Nihat
Davis, Angela
Hernandez, Alvaro G.
Wright, Chris L.
McGregor, Cecilia
Jarret, Robert
Zhang, Xingping
Xu, Yong
Wehner, Todd C.
Grumet, Rebecca
Levi, Amnon
Fei, Zhangjun
Genome of ‘Charleston Gray’, the principal American watermelon cultivar, and genetic characterization of 1,365 accessions in the U.S. National Plant Germplasm System watermelon collection
title Genome of ‘Charleston Gray’, the principal American watermelon cultivar, and genetic characterization of 1,365 accessions in the U.S. National Plant Germplasm System watermelon collection
title_full Genome of ‘Charleston Gray’, the principal American watermelon cultivar, and genetic characterization of 1,365 accessions in the U.S. National Plant Germplasm System watermelon collection
title_fullStr Genome of ‘Charleston Gray’, the principal American watermelon cultivar, and genetic characterization of 1,365 accessions in the U.S. National Plant Germplasm System watermelon collection
title_full_unstemmed Genome of ‘Charleston Gray’, the principal American watermelon cultivar, and genetic characterization of 1,365 accessions in the U.S. National Plant Germplasm System watermelon collection
title_short Genome of ‘Charleston Gray’, the principal American watermelon cultivar, and genetic characterization of 1,365 accessions in the U.S. National Plant Germplasm System watermelon collection
title_sort genome of ‘charleston gray’, the principal american watermelon cultivar, and genetic characterization of 1,365 accessions in the u.s. national plant germplasm system watermelon collection
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6835170/
https://www.ncbi.nlm.nih.gov/pubmed/31022325
http://dx.doi.org/10.1111/pbi.13136
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