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Hybrid Decay: A Transgenerational Epigenetic Decline in Vigor and Viability Triggered in Backcross Populations of Teosinte with Maize

In the course of generating populations of maize with teosinte chromosomal introgressions, an unusual sickly plant phenotype was noted in individuals from crosses with two teosinte accessions collected near Valle de Bravo, Mexico. The plants of these Bravo teosinte accessions appear phenotypically n...

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Autores principales: Xue, Wei, Anderson, Sarah N., Wang, Xufeng, Yang, Liyan, Crisp, Peter A., Li, Qing, Noshay, Jaclyn, Albert, Patrice S., Birchler, James A., Bilinski, Paul, Stitzer, Michelle C., Ross-Ibarra, Jeffrey, Flint-Garcia, Sherry, Chen, Xuemei, Springer, Nathan M., Doebley, John F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Genetics Society of America 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6727801/
https://www.ncbi.nlm.nih.gov/pubmed/31320409
http://dx.doi.org/10.1534/genetics.119.302378
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author Xue, Wei
Anderson, Sarah N.
Wang, Xufeng
Yang, Liyan
Crisp, Peter A.
Li, Qing
Noshay, Jaclyn
Albert, Patrice S.
Birchler, James A.
Bilinski, Paul
Stitzer, Michelle C.
Ross-Ibarra, Jeffrey
Flint-Garcia, Sherry
Chen, Xuemei
Springer, Nathan M.
Doebley, John F.
author_facet Xue, Wei
Anderson, Sarah N.
Wang, Xufeng
Yang, Liyan
Crisp, Peter A.
Li, Qing
Noshay, Jaclyn
Albert, Patrice S.
Birchler, James A.
Bilinski, Paul
Stitzer, Michelle C.
Ross-Ibarra, Jeffrey
Flint-Garcia, Sherry
Chen, Xuemei
Springer, Nathan M.
Doebley, John F.
author_sort Xue, Wei
collection PubMed
description In the course of generating populations of maize with teosinte chromosomal introgressions, an unusual sickly plant phenotype was noted in individuals from crosses with two teosinte accessions collected near Valle de Bravo, Mexico. The plants of these Bravo teosinte accessions appear phenotypically normal themselves and the F(1) plants appear similar to typical maize × teosinte F(1)s. However, upon backcrossing to maize, the BC(1) and subsequent generations display a number of detrimental characteristics including shorter stature, reduced seed set, and abnormal floral structures. This phenomenon is observed in all BC individuals and there is no chromosomal segment linked to the sickly plant phenotype in advanced backcross generations. Once the sickly phenotype appears in a lineage, normal plants are never again recovered by continued backcrossing to the normal maize parent. Whole-genome shotgun sequencing reveals a small number of genomic sequences, some with homology to transposable elements, that have increased in copy number in the backcross populations. Transcriptome analysis of seedlings, which do not have striking phenotypic abnormalities, identified segments of 18 maize genes that exhibit increased expression in sickly plants. A de novo assembly of transcripts present in plants exhibiting the sickly phenotype identified a set of 59 upregulated novel transcripts. These transcripts include some examples with sequence similarity to transposable elements and other sequences present in the recurrent maize parent (W22) genome as well as novel sequences not present in the W22 genome. Genome-wide profiles of gene expression, DNA methylation, and small RNAs are similar between sickly plants and normal controls, although a few upregulated transcripts and transposable elements are associated with altered small RNA or methylation profiles. This study documents hybrid incompatibility and genome instability triggered by the backcrossing of Bravo teosinte with maize. We name this phenomenon “hybrid decay” and present ideas on the mechanism that may underlie it.
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spelling pubmed-67278012019-09-18 Hybrid Decay: A Transgenerational Epigenetic Decline in Vigor and Viability Triggered in Backcross Populations of Teosinte with Maize Xue, Wei Anderson, Sarah N. Wang, Xufeng Yang, Liyan Crisp, Peter A. Li, Qing Noshay, Jaclyn Albert, Patrice S. Birchler, James A. Bilinski, Paul Stitzer, Michelle C. Ross-Ibarra, Jeffrey Flint-Garcia, Sherry Chen, Xuemei Springer, Nathan M. Doebley, John F. Genetics Investigations In the course of generating populations of maize with teosinte chromosomal introgressions, an unusual sickly plant phenotype was noted in individuals from crosses with two teosinte accessions collected near Valle de Bravo, Mexico. The plants of these Bravo teosinte accessions appear phenotypically normal themselves and the F(1) plants appear similar to typical maize × teosinte F(1)s. However, upon backcrossing to maize, the BC(1) and subsequent generations display a number of detrimental characteristics including shorter stature, reduced seed set, and abnormal floral structures. This phenomenon is observed in all BC individuals and there is no chromosomal segment linked to the sickly plant phenotype in advanced backcross generations. Once the sickly phenotype appears in a lineage, normal plants are never again recovered by continued backcrossing to the normal maize parent. Whole-genome shotgun sequencing reveals a small number of genomic sequences, some with homology to transposable elements, that have increased in copy number in the backcross populations. Transcriptome analysis of seedlings, which do not have striking phenotypic abnormalities, identified segments of 18 maize genes that exhibit increased expression in sickly plants. A de novo assembly of transcripts present in plants exhibiting the sickly phenotype identified a set of 59 upregulated novel transcripts. These transcripts include some examples with sequence similarity to transposable elements and other sequences present in the recurrent maize parent (W22) genome as well as novel sequences not present in the W22 genome. Genome-wide profiles of gene expression, DNA methylation, and small RNAs are similar between sickly plants and normal controls, although a few upregulated transcripts and transposable elements are associated with altered small RNA or methylation profiles. This study documents hybrid incompatibility and genome instability triggered by the backcrossing of Bravo teosinte with maize. We name this phenomenon “hybrid decay” and present ideas on the mechanism that may underlie it. Genetics Society of America 2019-09 2019-07-18 /pmc/articles/PMC6727801/ /pubmed/31320409 http://dx.doi.org/10.1534/genetics.119.302378 Text en Copyright © 2019 by the Genetics Society of America Available freely online through the author-supported open access option.
spellingShingle Investigations
Xue, Wei
Anderson, Sarah N.
Wang, Xufeng
Yang, Liyan
Crisp, Peter A.
Li, Qing
Noshay, Jaclyn
Albert, Patrice S.
Birchler, James A.
Bilinski, Paul
Stitzer, Michelle C.
Ross-Ibarra, Jeffrey
Flint-Garcia, Sherry
Chen, Xuemei
Springer, Nathan M.
Doebley, John F.
Hybrid Decay: A Transgenerational Epigenetic Decline in Vigor and Viability Triggered in Backcross Populations of Teosinte with Maize
title Hybrid Decay: A Transgenerational Epigenetic Decline in Vigor and Viability Triggered in Backcross Populations of Teosinte with Maize
title_full Hybrid Decay: A Transgenerational Epigenetic Decline in Vigor and Viability Triggered in Backcross Populations of Teosinte with Maize
title_fullStr Hybrid Decay: A Transgenerational Epigenetic Decline in Vigor and Viability Triggered in Backcross Populations of Teosinte with Maize
title_full_unstemmed Hybrid Decay: A Transgenerational Epigenetic Decline in Vigor and Viability Triggered in Backcross Populations of Teosinte with Maize
title_short Hybrid Decay: A Transgenerational Epigenetic Decline in Vigor and Viability Triggered in Backcross Populations of Teosinte with Maize
title_sort hybrid decay: a transgenerational epigenetic decline in vigor and viability triggered in backcross populations of teosinte with maize
topic Investigations
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6727801/
https://www.ncbi.nlm.nih.gov/pubmed/31320409
http://dx.doi.org/10.1534/genetics.119.302378
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