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Adaptation of Pelage Color and Pigment Variations in Israeli Subterranean Blind Mole Rats, Spalax Ehrenbergi

BACKGROUND: Concealing coloration in rodents is well established. However, only a few studies examined how soil color, pelage color, hair-melanin content, and genetics (i.e., the causal chain) synergize to configure it. This study investigates the causal chain of dorsal coloration in Israeli subterr...

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Autores principales: Singaravelan, Natarajan, Raz, Shmuel, Tzur, Shay, Belifante, Shirli, Pavlicek, Tomas, Beiles, Avigdor, Ito, Shosuke, Wakamatsu, Kazumasa, Nevo, Eviatar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3723903/
https://www.ncbi.nlm.nih.gov/pubmed/23935991
http://dx.doi.org/10.1371/journal.pone.0069346
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author Singaravelan, Natarajan
Raz, Shmuel
Tzur, Shay
Belifante, Shirli
Pavlicek, Tomas
Beiles, Avigdor
Ito, Shosuke
Wakamatsu, Kazumasa
Nevo, Eviatar
author_facet Singaravelan, Natarajan
Raz, Shmuel
Tzur, Shay
Belifante, Shirli
Pavlicek, Tomas
Beiles, Avigdor
Ito, Shosuke
Wakamatsu, Kazumasa
Nevo, Eviatar
author_sort Singaravelan, Natarajan
collection PubMed
description BACKGROUND: Concealing coloration in rodents is well established. However, only a few studies examined how soil color, pelage color, hair-melanin content, and genetics (i.e., the causal chain) synergize to configure it. This study investigates the causal chain of dorsal coloration in Israeli subterranean blind mole rats, Spalax ehrenbergi. METHODS: We examined pelage coloration of 128 adult animals from 11 populations belonging to four species of Spalax ehrenbergi superspecies (Spalax galili, Spalax golani, Spalax carmeli, and Spalax judaei) and the corresponding coloration of soil samples from the collection sites using a digital colorimeter. Additionally, we quantified hair-melanin contents of 67 animals using HPLC and sequenced the MC1R gene in 68 individuals from all four mole rat species. RESULTS: Due to high variability of soil colors, the correlation between soil and pelage color coordinates was weak and significant only between soil hue and pelage lightness. Multiple stepwise forward regression revealed that soil lightness was significantly associated with all pelage color variables. Pelage color lightness among the four species increased with the higher southward aridity in accordance to Gloger's rule (darker in humid habitats and lighter in arid habitats). Darker and lighter pelage colors are associated with darker basalt and terra rossa, and lighter rendzina soils, respectively. Despite soil lightness varying significantly, pelage lightness and eumelanin converged among populations living in similar soil types. Partial sequencing of the MC1R gene identified three allelic variants, two of which were predominant in northern species (S. galili and S. golani), and the third was exclusive to southern species (S. carmeli and S. judaei), which might have caused the differences found in pheomelanin/eumelanin ratio. CONCLUSION/SIGNIFICANCE: Darker dorsal pelage in darker basalt and terra rossa soils in the north and lighter pelage in rendzina and loess soils in the south reflect the combined results of crypsis and thermoregulatory function following Gloger's rule.
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spelling pubmed-37239032013-08-09 Adaptation of Pelage Color and Pigment Variations in Israeli Subterranean Blind Mole Rats, Spalax Ehrenbergi Singaravelan, Natarajan Raz, Shmuel Tzur, Shay Belifante, Shirli Pavlicek, Tomas Beiles, Avigdor Ito, Shosuke Wakamatsu, Kazumasa Nevo, Eviatar PLoS One Research Article BACKGROUND: Concealing coloration in rodents is well established. However, only a few studies examined how soil color, pelage color, hair-melanin content, and genetics (i.e., the causal chain) synergize to configure it. This study investigates the causal chain of dorsal coloration in Israeli subterranean blind mole rats, Spalax ehrenbergi. METHODS: We examined pelage coloration of 128 adult animals from 11 populations belonging to four species of Spalax ehrenbergi superspecies (Spalax galili, Spalax golani, Spalax carmeli, and Spalax judaei) and the corresponding coloration of soil samples from the collection sites using a digital colorimeter. Additionally, we quantified hair-melanin contents of 67 animals using HPLC and sequenced the MC1R gene in 68 individuals from all four mole rat species. RESULTS: Due to high variability of soil colors, the correlation between soil and pelage color coordinates was weak and significant only between soil hue and pelage lightness. Multiple stepwise forward regression revealed that soil lightness was significantly associated with all pelage color variables. Pelage color lightness among the four species increased with the higher southward aridity in accordance to Gloger's rule (darker in humid habitats and lighter in arid habitats). Darker and lighter pelage colors are associated with darker basalt and terra rossa, and lighter rendzina soils, respectively. Despite soil lightness varying significantly, pelage lightness and eumelanin converged among populations living in similar soil types. Partial sequencing of the MC1R gene identified three allelic variants, two of which were predominant in northern species (S. galili and S. golani), and the third was exclusive to southern species (S. carmeli and S. judaei), which might have caused the differences found in pheomelanin/eumelanin ratio. CONCLUSION/SIGNIFICANCE: Darker dorsal pelage in darker basalt and terra rossa soils in the north and lighter pelage in rendzina and loess soils in the south reflect the combined results of crypsis and thermoregulatory function following Gloger's rule. Public Library of Science 2013-07-25 /pmc/articles/PMC3723903/ /pubmed/23935991 http://dx.doi.org/10.1371/journal.pone.0069346 Text en © 2013 Singaravelan et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Singaravelan, Natarajan
Raz, Shmuel
Tzur, Shay
Belifante, Shirli
Pavlicek, Tomas
Beiles, Avigdor
Ito, Shosuke
Wakamatsu, Kazumasa
Nevo, Eviatar
Adaptation of Pelage Color and Pigment Variations in Israeli Subterranean Blind Mole Rats, Spalax Ehrenbergi
title Adaptation of Pelage Color and Pigment Variations in Israeli Subterranean Blind Mole Rats, Spalax Ehrenbergi
title_full Adaptation of Pelage Color and Pigment Variations in Israeli Subterranean Blind Mole Rats, Spalax Ehrenbergi
title_fullStr Adaptation of Pelage Color and Pigment Variations in Israeli Subterranean Blind Mole Rats, Spalax Ehrenbergi
title_full_unstemmed Adaptation of Pelage Color and Pigment Variations in Israeli Subterranean Blind Mole Rats, Spalax Ehrenbergi
title_short Adaptation of Pelage Color and Pigment Variations in Israeli Subterranean Blind Mole Rats, Spalax Ehrenbergi
title_sort adaptation of pelage color and pigment variations in israeli subterranean blind mole rats, spalax ehrenbergi
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3723903/
https://www.ncbi.nlm.nih.gov/pubmed/23935991
http://dx.doi.org/10.1371/journal.pone.0069346
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