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The Evolution of an Invasive Plant, Sorghum halepense L. (‘Johnsongrass’)

From noble beginnings as a prospective forage, polyploid Sorghum halepense (‘Johnsongrass’) is both an invasive species and one of the world’s worst agricultural weeds. Formed by S. bicolor x S. propinquum hybridization, we show S. halepense to have S. bicolor-enriched allele composition and strikin...

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Autores principales: Paterson, Andrew H., Kong, WenQian, Johnston, Robyn M., Nabukalu, Pheonah, Wu, Guohong, Poehlman, William L., Goff, Valorie H., Isaacs, Krista, Lee, Tae-Ho, Guo, Hui, Zhang, Dong, Sezen, Uzay U., Kennedy, Megan, Bauer, Diane, Feltus, Frank A., Weltzien, Eva, Rattunde, Henry Frederick, Barney, Jacob N., Barry, Kerrie, Cox, T. Stan, Scanlon, Michael J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7240026/
https://www.ncbi.nlm.nih.gov/pubmed/32477397
http://dx.doi.org/10.3389/fgene.2020.00317
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author Paterson, Andrew H.
Kong, WenQian
Johnston, Robyn M.
Nabukalu, Pheonah
Wu, Guohong
Poehlman, William L.
Goff, Valorie H.
Isaacs, Krista
Lee, Tae-Ho
Guo, Hui
Zhang, Dong
Sezen, Uzay U.
Kennedy, Megan
Bauer, Diane
Feltus, Frank A.
Weltzien, Eva
Rattunde, Henry Frederick
Barney, Jacob N.
Barry, Kerrie
Cox, T. Stan
Scanlon, Michael J.
author_facet Paterson, Andrew H.
Kong, WenQian
Johnston, Robyn M.
Nabukalu, Pheonah
Wu, Guohong
Poehlman, William L.
Goff, Valorie H.
Isaacs, Krista
Lee, Tae-Ho
Guo, Hui
Zhang, Dong
Sezen, Uzay U.
Kennedy, Megan
Bauer, Diane
Feltus, Frank A.
Weltzien, Eva
Rattunde, Henry Frederick
Barney, Jacob N.
Barry, Kerrie
Cox, T. Stan
Scanlon, Michael J.
author_sort Paterson, Andrew H.
collection PubMed
description From noble beginnings as a prospective forage, polyploid Sorghum halepense (‘Johnsongrass’) is both an invasive species and one of the world’s worst agricultural weeds. Formed by S. bicolor x S. propinquum hybridization, we show S. halepense to have S. bicolor-enriched allele composition and striking mutations in 5,957 genes that differentiate it from representatives of its progenitor species and an outgroup. The spread of S. halepense may have been facilitated by introgression from closely-related cultivated sorghum near genetic loci affecting rhizome development, seed size, and levels of lutein, a photochemical protectant and abscisic acid precursor. Rhizomes, subterranean stems that store carbohydrates and spawn clonal propagules, have growth correlated with reproductive rather than other vegetative tissues, and increase survival of both temperate cold seasons and tropical dry seasons. Rhizomes of S. halepense are more extensive than those of its rhizomatous progenitor S. propinquum, with gene expression including many alleles from its non-rhizomatous S. bicolor progenitor. The first surviving polyploid in its lineage in ∼96 million years, its post-Columbian spread across six continents carried rich genetic diversity that in the United States has facilitated transition from agricultural to non-agricultural niches. Projected to spread another 200–600 km northward in the coming century, despite its drawbacks S. halepense may offer novel alleles and traits of value to improvement of sorghum.
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spelling pubmed-72400262020-05-29 The Evolution of an Invasive Plant, Sorghum halepense L. (‘Johnsongrass’) Paterson, Andrew H. Kong, WenQian Johnston, Robyn M. Nabukalu, Pheonah Wu, Guohong Poehlman, William L. Goff, Valorie H. Isaacs, Krista Lee, Tae-Ho Guo, Hui Zhang, Dong Sezen, Uzay U. Kennedy, Megan Bauer, Diane Feltus, Frank A. Weltzien, Eva Rattunde, Henry Frederick Barney, Jacob N. Barry, Kerrie Cox, T. Stan Scanlon, Michael J. Front Genet Genetics From noble beginnings as a prospective forage, polyploid Sorghum halepense (‘Johnsongrass’) is both an invasive species and one of the world’s worst agricultural weeds. Formed by S. bicolor x S. propinquum hybridization, we show S. halepense to have S. bicolor-enriched allele composition and striking mutations in 5,957 genes that differentiate it from representatives of its progenitor species and an outgroup. The spread of S. halepense may have been facilitated by introgression from closely-related cultivated sorghum near genetic loci affecting rhizome development, seed size, and levels of lutein, a photochemical protectant and abscisic acid precursor. Rhizomes, subterranean stems that store carbohydrates and spawn clonal propagules, have growth correlated with reproductive rather than other vegetative tissues, and increase survival of both temperate cold seasons and tropical dry seasons. Rhizomes of S. halepense are more extensive than those of its rhizomatous progenitor S. propinquum, with gene expression including many alleles from its non-rhizomatous S. bicolor progenitor. The first surviving polyploid in its lineage in ∼96 million years, its post-Columbian spread across six continents carried rich genetic diversity that in the United States has facilitated transition from agricultural to non-agricultural niches. Projected to spread another 200–600 km northward in the coming century, despite its drawbacks S. halepense may offer novel alleles and traits of value to improvement of sorghum. Frontiers Media S.A. 2020-05-14 /pmc/articles/PMC7240026/ /pubmed/32477397 http://dx.doi.org/10.3389/fgene.2020.00317 Text en Copyright © 2020 Paterson, Kong, Johnston, Nabukalu, Wu, Poehlman, Goff, Isaacs, Lee, Guo, Zhang, Sezen, Kennedy, Bauer, Feltus, Weltzien, Rattunde, Barney, Barry, Cox and Scanlon. 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 Genetics
Paterson, Andrew H.
Kong, WenQian
Johnston, Robyn M.
Nabukalu, Pheonah
Wu, Guohong
Poehlman, William L.
Goff, Valorie H.
Isaacs, Krista
Lee, Tae-Ho
Guo, Hui
Zhang, Dong
Sezen, Uzay U.
Kennedy, Megan
Bauer, Diane
Feltus, Frank A.
Weltzien, Eva
Rattunde, Henry Frederick
Barney, Jacob N.
Barry, Kerrie
Cox, T. Stan
Scanlon, Michael J.
The Evolution of an Invasive Plant, Sorghum halepense L. (‘Johnsongrass’)
title The Evolution of an Invasive Plant, Sorghum halepense L. (‘Johnsongrass’)
title_full The Evolution of an Invasive Plant, Sorghum halepense L. (‘Johnsongrass’)
title_fullStr The Evolution of an Invasive Plant, Sorghum halepense L. (‘Johnsongrass’)
title_full_unstemmed The Evolution of an Invasive Plant, Sorghum halepense L. (‘Johnsongrass’)
title_short The Evolution of an Invasive Plant, Sorghum halepense L. (‘Johnsongrass’)
title_sort evolution of an invasive plant, sorghum halepense l. (‘johnsongrass’)
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7240026/
https://www.ncbi.nlm.nih.gov/pubmed/32477397
http://dx.doi.org/10.3389/fgene.2020.00317
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