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Consequence of Paradigm Shift with Repeat Landscapes in Reptiles: Powerful Facilitators of Chromosomal Rearrangements for Diversity and Evolution (Running Title: Genomic Impact of Repeats on Chromosomal Dynamics in Reptiles)

Reptiles are notable for the extensive genomic diversity and species richness among amniote classes, but there is nevertheless a need for detailed genome-scale studies. Although the monophyletic amniotes have recently been a focus of attention through an increasing number of genome sequencing projec...

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Autores principales: Ahmad, Syed Farhan, Singchat, Worapong, Jehangir, Maryam, Panthum, Thitipong, Srikulnath, Kornsorn
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7397244/
https://www.ncbi.nlm.nih.gov/pubmed/32708239
http://dx.doi.org/10.3390/genes11070827
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author Ahmad, Syed Farhan
Singchat, Worapong
Jehangir, Maryam
Panthum, Thitipong
Srikulnath, Kornsorn
author_facet Ahmad, Syed Farhan
Singchat, Worapong
Jehangir, Maryam
Panthum, Thitipong
Srikulnath, Kornsorn
author_sort Ahmad, Syed Farhan
collection PubMed
description Reptiles are notable for the extensive genomic diversity and species richness among amniote classes, but there is nevertheless a need for detailed genome-scale studies. Although the monophyletic amniotes have recently been a focus of attention through an increasing number of genome sequencing projects, the abundant repetitive portion of the genome, termed the “repeatome”, remains poorly understood across different lineages. Consisting predominantly of transposable elements or mobile and satellite sequences, these repeat elements are considered crucial in causing chromosomal rearrangements that lead to genomic diversity and evolution. Here, we propose major repeat landscapes in representative reptilian species, highlighting their evolutionary dynamics and role in mediating chromosomal rearrangements. Distinct karyotype variability, which is typically a conspicuous feature of reptile genomes, is discussed, with a particular focus on rearrangements correlated with evolutionary reorganization of micro- and macrochromosomes and sex chromosomes. The exceptional karyotype variation and extreme genomic diversity of reptiles are used to test several hypotheses concerning genomic structure, function, and evolution.
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spelling pubmed-73972442020-08-16 Consequence of Paradigm Shift with Repeat Landscapes in Reptiles: Powerful Facilitators of Chromosomal Rearrangements for Diversity and Evolution (Running Title: Genomic Impact of Repeats on Chromosomal Dynamics in Reptiles) Ahmad, Syed Farhan Singchat, Worapong Jehangir, Maryam Panthum, Thitipong Srikulnath, Kornsorn Genes (Basel) Review Reptiles are notable for the extensive genomic diversity and species richness among amniote classes, but there is nevertheless a need for detailed genome-scale studies. Although the monophyletic amniotes have recently been a focus of attention through an increasing number of genome sequencing projects, the abundant repetitive portion of the genome, termed the “repeatome”, remains poorly understood across different lineages. Consisting predominantly of transposable elements or mobile and satellite sequences, these repeat elements are considered crucial in causing chromosomal rearrangements that lead to genomic diversity and evolution. Here, we propose major repeat landscapes in representative reptilian species, highlighting their evolutionary dynamics and role in mediating chromosomal rearrangements. Distinct karyotype variability, which is typically a conspicuous feature of reptile genomes, is discussed, with a particular focus on rearrangements correlated with evolutionary reorganization of micro- and macrochromosomes and sex chromosomes. The exceptional karyotype variation and extreme genomic diversity of reptiles are used to test several hypotheses concerning genomic structure, function, and evolution. MDPI 2020-07-21 /pmc/articles/PMC7397244/ /pubmed/32708239 http://dx.doi.org/10.3390/genes11070827 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Ahmad, Syed Farhan
Singchat, Worapong
Jehangir, Maryam
Panthum, Thitipong
Srikulnath, Kornsorn
Consequence of Paradigm Shift with Repeat Landscapes in Reptiles: Powerful Facilitators of Chromosomal Rearrangements for Diversity and Evolution (Running Title: Genomic Impact of Repeats on Chromosomal Dynamics in Reptiles)
title Consequence of Paradigm Shift with Repeat Landscapes in Reptiles: Powerful Facilitators of Chromosomal Rearrangements for Diversity and Evolution (Running Title: Genomic Impact of Repeats on Chromosomal Dynamics in Reptiles)
title_full Consequence of Paradigm Shift with Repeat Landscapes in Reptiles: Powerful Facilitators of Chromosomal Rearrangements for Diversity and Evolution (Running Title: Genomic Impact of Repeats on Chromosomal Dynamics in Reptiles)
title_fullStr Consequence of Paradigm Shift with Repeat Landscapes in Reptiles: Powerful Facilitators of Chromosomal Rearrangements for Diversity and Evolution (Running Title: Genomic Impact of Repeats on Chromosomal Dynamics in Reptiles)
title_full_unstemmed Consequence of Paradigm Shift with Repeat Landscapes in Reptiles: Powerful Facilitators of Chromosomal Rearrangements for Diversity and Evolution (Running Title: Genomic Impact of Repeats on Chromosomal Dynamics in Reptiles)
title_short Consequence of Paradigm Shift with Repeat Landscapes in Reptiles: Powerful Facilitators of Chromosomal Rearrangements for Diversity and Evolution (Running Title: Genomic Impact of Repeats on Chromosomal Dynamics in Reptiles)
title_sort consequence of paradigm shift with repeat landscapes in reptiles: powerful facilitators of chromosomal rearrangements for diversity and evolution (running title: genomic impact of repeats on chromosomal dynamics in reptiles)
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7397244/
https://www.ncbi.nlm.nih.gov/pubmed/32708239
http://dx.doi.org/10.3390/genes11070827
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