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Chromosome-length genome assemblies of six legume species provide insights into genome organization, evolution, and agronomic traits for crop improvement

INTRODUCTION: Legume crops are an important source of protein and oil for human health and in fixing atmospheric N(2) for soil enrichment. With an objective to accelerate much-needed genetic analyses and breeding applications, draft genome assemblies were generated in several legume crops; many of t...

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Autores principales: Garg, Vanika, Dudchenko, Olga, Wang, Jinpeng, Khan, Aamir W., Gupta, Saurabh, Kaur, Parwinder, Han, Kai, Saxena, Rachit K., Kale, Sandip M., Pham, Melanie, Yu, Jigao, Chitikineni, Annapurna, Zhang, Zhikang, Fan, Guangyi, Lui, Christopher, Valluri, Vinodkumar, Meng, Fanbo, Bhandari, Aditi, Liu, Xiaochuan, Yang, Tao, Chen, Hua, Valliyodan, Babu, Roorkiwal, Manish, Shi, Chengcheng, Yang, Hong Bin, Durand, Neva C., Pandey, Manish K., Li, Guowei, Barmukh, Rutwik, Wang, Xingjun, Chen, Xiaoping, Lam, Hon-Ming, Jiang, Huifang, Zong, Xuxiao, Liang, Xuanqiang, Liu, Xin, Liao, Boshou, Guo, Baozhu, Jackson, Scott, Nguyen, Henry T., Zhuang, Weijian, Shubo, Wan, Wang, Xiyin, Aiden, Erez Lieberman, Bennetzen, Jeffrey L., Varshney, Rajeev K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9788938/
https://www.ncbi.nlm.nih.gov/pubmed/36513421
http://dx.doi.org/10.1016/j.jare.2021.10.009
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author Garg, Vanika
Dudchenko, Olga
Wang, Jinpeng
Khan, Aamir W.
Gupta, Saurabh
Kaur, Parwinder
Han, Kai
Saxena, Rachit K.
Kale, Sandip M.
Pham, Melanie
Yu, Jigao
Chitikineni, Annapurna
Zhang, Zhikang
Fan, Guangyi
Lui, Christopher
Valluri, Vinodkumar
Meng, Fanbo
Bhandari, Aditi
Liu, Xiaochuan
Yang, Tao
Chen, Hua
Valliyodan, Babu
Roorkiwal, Manish
Shi, Chengcheng
Yang, Hong Bin
Durand, Neva C.
Pandey, Manish K.
Li, Guowei
Barmukh, Rutwik
Wang, Xingjun
Chen, Xiaoping
Lam, Hon-Ming
Jiang, Huifang
Zong, Xuxiao
Liang, Xuanqiang
Liu, Xin
Liao, Boshou
Guo, Baozhu
Jackson, Scott
Nguyen, Henry T.
Zhuang, Weijian
Shubo, Wan
Wang, Xiyin
Aiden, Erez Lieberman
Bennetzen, Jeffrey L.
Varshney, Rajeev K.
author_facet Garg, Vanika
Dudchenko, Olga
Wang, Jinpeng
Khan, Aamir W.
Gupta, Saurabh
Kaur, Parwinder
Han, Kai
Saxena, Rachit K.
Kale, Sandip M.
Pham, Melanie
Yu, Jigao
Chitikineni, Annapurna
Zhang, Zhikang
Fan, Guangyi
Lui, Christopher
Valluri, Vinodkumar
Meng, Fanbo
Bhandari, Aditi
Liu, Xiaochuan
Yang, Tao
Chen, Hua
Valliyodan, Babu
Roorkiwal, Manish
Shi, Chengcheng
Yang, Hong Bin
Durand, Neva C.
Pandey, Manish K.
Li, Guowei
Barmukh, Rutwik
Wang, Xingjun
Chen, Xiaoping
Lam, Hon-Ming
Jiang, Huifang
Zong, Xuxiao
Liang, Xuanqiang
Liu, Xin
Liao, Boshou
Guo, Baozhu
Jackson, Scott
Nguyen, Henry T.
Zhuang, Weijian
Shubo, Wan
Wang, Xiyin
Aiden, Erez Lieberman
Bennetzen, Jeffrey L.
Varshney, Rajeev K.
author_sort Garg, Vanika
collection PubMed
description INTRODUCTION: Legume crops are an important source of protein and oil for human health and in fixing atmospheric N(2) for soil enrichment. With an objective to accelerate much-needed genetic analyses and breeding applications, draft genome assemblies were generated in several legume crops; many of them are not high quality because they are mainly based on short reads. However, the superior quality of genome assembly is crucial for a detailed understanding of genomic architecture, genome evolution, and crop improvement. OBJECTIVES: Present study was undertaken with an objective of developing improved chromosome-length genome assemblies in six different legumes followed by their systematic investigation to unravel different aspects of genome organization and legume evolution. METHODS: We employed in situ Hi-C data to improve the existing draft genomes and performed different evolutionary and comparative analyses using improved genome assemblies. RESULTS: We have developed chromosome-length genome assemblies in chickpea, pigeonpea, soybean, subterranean clover, and two wild progenitor species of cultivated groundnut (A. duranensis and A. ipaensis). A comprehensive comparative analysis of these genome assemblies offered improved insights into various evolutionary events that shaped the present-day legume species. We highlighted the expansion of gene families contributing to unique traits such as nodulation in legumes, gravitropism in groundnut, and oil biosynthesis in oilseed legume crops such as groundnut and soybean. As examples, we have demonstrated the utility of improved genome assemblies for enhancing the resolution of “QTL-hotspot” identification for drought tolerance in chickpea and marker-trait associations for agronomic traits in pigeonpea through genome-wide association study. Genomic resources developed in this study are publicly available through an online repository, ‘Legumepedia’. CONCLUSION: This study reports chromosome-length genome assemblies of six legume species and demonstrates the utility of these assemblies in crop improvement. The genomic resources developed here will have significant role in accelerating genetic improvement applications of legume crops.
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spelling pubmed-97889382022-12-25 Chromosome-length genome assemblies of six legume species provide insights into genome organization, evolution, and agronomic traits for crop improvement Garg, Vanika Dudchenko, Olga Wang, Jinpeng Khan, Aamir W. Gupta, Saurabh Kaur, Parwinder Han, Kai Saxena, Rachit K. Kale, Sandip M. Pham, Melanie Yu, Jigao Chitikineni, Annapurna Zhang, Zhikang Fan, Guangyi Lui, Christopher Valluri, Vinodkumar Meng, Fanbo Bhandari, Aditi Liu, Xiaochuan Yang, Tao Chen, Hua Valliyodan, Babu Roorkiwal, Manish Shi, Chengcheng Yang, Hong Bin Durand, Neva C. Pandey, Manish K. Li, Guowei Barmukh, Rutwik Wang, Xingjun Chen, Xiaoping Lam, Hon-Ming Jiang, Huifang Zong, Xuxiao Liang, Xuanqiang Liu, Xin Liao, Boshou Guo, Baozhu Jackson, Scott Nguyen, Henry T. Zhuang, Weijian Shubo, Wan Wang, Xiyin Aiden, Erez Lieberman Bennetzen, Jeffrey L. Varshney, Rajeev K. J Adv Res Original Article INTRODUCTION: Legume crops are an important source of protein and oil for human health and in fixing atmospheric N(2) for soil enrichment. With an objective to accelerate much-needed genetic analyses and breeding applications, draft genome assemblies were generated in several legume crops; many of them are not high quality because they are mainly based on short reads. However, the superior quality of genome assembly is crucial for a detailed understanding of genomic architecture, genome evolution, and crop improvement. OBJECTIVES: Present study was undertaken with an objective of developing improved chromosome-length genome assemblies in six different legumes followed by their systematic investigation to unravel different aspects of genome organization and legume evolution. METHODS: We employed in situ Hi-C data to improve the existing draft genomes and performed different evolutionary and comparative analyses using improved genome assemblies. RESULTS: We have developed chromosome-length genome assemblies in chickpea, pigeonpea, soybean, subterranean clover, and two wild progenitor species of cultivated groundnut (A. duranensis and A. ipaensis). A comprehensive comparative analysis of these genome assemblies offered improved insights into various evolutionary events that shaped the present-day legume species. We highlighted the expansion of gene families contributing to unique traits such as nodulation in legumes, gravitropism in groundnut, and oil biosynthesis in oilseed legume crops such as groundnut and soybean. As examples, we have demonstrated the utility of improved genome assemblies for enhancing the resolution of “QTL-hotspot” identification for drought tolerance in chickpea and marker-trait associations for agronomic traits in pigeonpea through genome-wide association study. Genomic resources developed in this study are publicly available through an online repository, ‘Legumepedia’. CONCLUSION: This study reports chromosome-length genome assemblies of six legume species and demonstrates the utility of these assemblies in crop improvement. The genomic resources developed here will have significant role in accelerating genetic improvement applications of legume crops. Elsevier 2021-11-03 /pmc/articles/PMC9788938/ /pubmed/36513421 http://dx.doi.org/10.1016/j.jare.2021.10.009 Text en © 2022 The Authors. Published by Elsevier B.V. on behalf of Cairo University. 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 Article
Garg, Vanika
Dudchenko, Olga
Wang, Jinpeng
Khan, Aamir W.
Gupta, Saurabh
Kaur, Parwinder
Han, Kai
Saxena, Rachit K.
Kale, Sandip M.
Pham, Melanie
Yu, Jigao
Chitikineni, Annapurna
Zhang, Zhikang
Fan, Guangyi
Lui, Christopher
Valluri, Vinodkumar
Meng, Fanbo
Bhandari, Aditi
Liu, Xiaochuan
Yang, Tao
Chen, Hua
Valliyodan, Babu
Roorkiwal, Manish
Shi, Chengcheng
Yang, Hong Bin
Durand, Neva C.
Pandey, Manish K.
Li, Guowei
Barmukh, Rutwik
Wang, Xingjun
Chen, Xiaoping
Lam, Hon-Ming
Jiang, Huifang
Zong, Xuxiao
Liang, Xuanqiang
Liu, Xin
Liao, Boshou
Guo, Baozhu
Jackson, Scott
Nguyen, Henry T.
Zhuang, Weijian
Shubo, Wan
Wang, Xiyin
Aiden, Erez Lieberman
Bennetzen, Jeffrey L.
Varshney, Rajeev K.
Chromosome-length genome assemblies of six legume species provide insights into genome organization, evolution, and agronomic traits for crop improvement
title Chromosome-length genome assemblies of six legume species provide insights into genome organization, evolution, and agronomic traits for crop improvement
title_full Chromosome-length genome assemblies of six legume species provide insights into genome organization, evolution, and agronomic traits for crop improvement
title_fullStr Chromosome-length genome assemblies of six legume species provide insights into genome organization, evolution, and agronomic traits for crop improvement
title_full_unstemmed Chromosome-length genome assemblies of six legume species provide insights into genome organization, evolution, and agronomic traits for crop improvement
title_short Chromosome-length genome assemblies of six legume species provide insights into genome organization, evolution, and agronomic traits for crop improvement
title_sort chromosome-length genome assemblies of six legume species provide insights into genome organization, evolution, and agronomic traits for crop improvement
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9788938/
https://www.ncbi.nlm.nih.gov/pubmed/36513421
http://dx.doi.org/10.1016/j.jare.2021.10.009
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