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Comparative Plastome Analysis of Root- and Stem-Feeding Parasites of Santalales Untangle the Footprints of Feeding Mode and Lifestyle Transitions

In plants, parasitism triggers the reductive evolution of plastid genomes (plastomes). To disentangle the molecular evolutionary associations between feeding on other plants below- or aboveground and general transitions from facultative to obligate parasitism, we analyzed 34 complete plastomes of au...

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Autores principales: Chen, Xiaoli, Fang, Dongming, Wu, Chenyu, Liu, Bing, Liu, Yang, Sahu, Sunil Kumar, Song, Bo, Yang, Shuai, Yang, Tuo, Wei, Jinpu, Wang, Xuebing, Zhang, Wen, Xu, Qiwu, Wang, Huafeng, Yuan, Langxing, Liao, Xuezhu, Chen, Lipeng, Chen, Ziqiang, Yuan, Fu, Chang, Yue, Lu, Lihua, Yang, Huanming, Wang, Jian, Xu, Xun, Liu, Xin, Wicke, Susann, Liu, Huan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6953812/
https://www.ncbi.nlm.nih.gov/pubmed/31845987
http://dx.doi.org/10.1093/gbe/evz271
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author Chen, Xiaoli
Fang, Dongming
Wu, Chenyu
Liu, Bing
Liu, Yang
Sahu, Sunil Kumar
Song, Bo
Yang, Shuai
Yang, Tuo
Wei, Jinpu
Wang, Xuebing
Zhang, Wen
Xu, Qiwu
Wang, Huafeng
Yuan, Langxing
Liao, Xuezhu
Chen, Lipeng
Chen, Ziqiang
Yuan, Fu
Chang, Yue
Lu, Lihua
Yang, Huanming
Wang, Jian
Xu, Xun
Liu, Xin
Wicke, Susann
Liu, Huan
author_facet Chen, Xiaoli
Fang, Dongming
Wu, Chenyu
Liu, Bing
Liu, Yang
Sahu, Sunil Kumar
Song, Bo
Yang, Shuai
Yang, Tuo
Wei, Jinpu
Wang, Xuebing
Zhang, Wen
Xu, Qiwu
Wang, Huafeng
Yuan, Langxing
Liao, Xuezhu
Chen, Lipeng
Chen, Ziqiang
Yuan, Fu
Chang, Yue
Lu, Lihua
Yang, Huanming
Wang, Jian
Xu, Xun
Liu, Xin
Wicke, Susann
Liu, Huan
author_sort Chen, Xiaoli
collection PubMed
description In plants, parasitism triggers the reductive evolution of plastid genomes (plastomes). To disentangle the molecular evolutionary associations between feeding on other plants below- or aboveground and general transitions from facultative to obligate parasitism, we analyzed 34 complete plastomes of autotrophic, root- and stem-feeding hemiparasitic, and holoparasitic Santalales. We observed inexplicable losses of housekeeping genes and tRNAs in hemiparasites and dramatic genomic reconfiguration in holoparasitic Balanophoraceae, whose plastomes have exceptionally low GC contents. Genomic changes are related primarily to the evolution of hemi- or holoparasitism, whereas the transition from a root- to a stem-feeding mode plays no major role. In contrast, the rate of molecular evolution accelerates in a stepwise manner from autotrophs to root- and then stem-feeding parasites. Already the ancestral transition to root-parasitism coincides with a relaxation of selection in plastomes. Another significant selectional shift in plastid genes occurs as stem-feeders evolve, suggesting that this derived form coincides with trophic specialization despite the retention of photosynthetic capacity. Parasitic Santalales fill a gap in our understanding of parasitism-associated plastome degeneration. We reveal that lifestyle-genome associations unfold interdependently over trophic specialization and feeding mode transitions, where holoparasitic Balanophoraceae provide a system for exploring the functional realms of plastomes.
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spelling pubmed-69538122020-01-15 Comparative Plastome Analysis of Root- and Stem-Feeding Parasites of Santalales Untangle the Footprints of Feeding Mode and Lifestyle Transitions Chen, Xiaoli Fang, Dongming Wu, Chenyu Liu, Bing Liu, Yang Sahu, Sunil Kumar Song, Bo Yang, Shuai Yang, Tuo Wei, Jinpu Wang, Xuebing Zhang, Wen Xu, Qiwu Wang, Huafeng Yuan, Langxing Liao, Xuezhu Chen, Lipeng Chen, Ziqiang Yuan, Fu Chang, Yue Lu, Lihua Yang, Huanming Wang, Jian Xu, Xun Liu, Xin Wicke, Susann Liu, Huan Genome Biol Evol Research Article In plants, parasitism triggers the reductive evolution of plastid genomes (plastomes). To disentangle the molecular evolutionary associations between feeding on other plants below- or aboveground and general transitions from facultative to obligate parasitism, we analyzed 34 complete plastomes of autotrophic, root- and stem-feeding hemiparasitic, and holoparasitic Santalales. We observed inexplicable losses of housekeeping genes and tRNAs in hemiparasites and dramatic genomic reconfiguration in holoparasitic Balanophoraceae, whose plastomes have exceptionally low GC contents. Genomic changes are related primarily to the evolution of hemi- or holoparasitism, whereas the transition from a root- to a stem-feeding mode plays no major role. In contrast, the rate of molecular evolution accelerates in a stepwise manner from autotrophs to root- and then stem-feeding parasites. Already the ancestral transition to root-parasitism coincides with a relaxation of selection in plastomes. Another significant selectional shift in plastid genes occurs as stem-feeders evolve, suggesting that this derived form coincides with trophic specialization despite the retention of photosynthetic capacity. Parasitic Santalales fill a gap in our understanding of parasitism-associated plastome degeneration. We reveal that lifestyle-genome associations unfold interdependently over trophic specialization and feeding mode transitions, where holoparasitic Balanophoraceae provide a system for exploring the functional realms of plastomes. Oxford University Press 2019-12-17 /pmc/articles/PMC6953812/ /pubmed/31845987 http://dx.doi.org/10.1093/gbe/evz271 Text en © The Author(s) 2020. Published by Oxford University Press on behalf of the Society for Molecular Biology and Evolution. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Chen, Xiaoli
Fang, Dongming
Wu, Chenyu
Liu, Bing
Liu, Yang
Sahu, Sunil Kumar
Song, Bo
Yang, Shuai
Yang, Tuo
Wei, Jinpu
Wang, Xuebing
Zhang, Wen
Xu, Qiwu
Wang, Huafeng
Yuan, Langxing
Liao, Xuezhu
Chen, Lipeng
Chen, Ziqiang
Yuan, Fu
Chang, Yue
Lu, Lihua
Yang, Huanming
Wang, Jian
Xu, Xun
Liu, Xin
Wicke, Susann
Liu, Huan
Comparative Plastome Analysis of Root- and Stem-Feeding Parasites of Santalales Untangle the Footprints of Feeding Mode and Lifestyle Transitions
title Comparative Plastome Analysis of Root- and Stem-Feeding Parasites of Santalales Untangle the Footprints of Feeding Mode and Lifestyle Transitions
title_full Comparative Plastome Analysis of Root- and Stem-Feeding Parasites of Santalales Untangle the Footprints of Feeding Mode and Lifestyle Transitions
title_fullStr Comparative Plastome Analysis of Root- and Stem-Feeding Parasites of Santalales Untangle the Footprints of Feeding Mode and Lifestyle Transitions
title_full_unstemmed Comparative Plastome Analysis of Root- and Stem-Feeding Parasites of Santalales Untangle the Footprints of Feeding Mode and Lifestyle Transitions
title_short Comparative Plastome Analysis of Root- and Stem-Feeding Parasites of Santalales Untangle the Footprints of Feeding Mode and Lifestyle Transitions
title_sort comparative plastome analysis of root- and stem-feeding parasites of santalales untangle the footprints of feeding mode and lifestyle transitions
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6953812/
https://www.ncbi.nlm.nih.gov/pubmed/31845987
http://dx.doi.org/10.1093/gbe/evz271
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