» Articles » PMID: 24754676

Natural Selection and the Genetic Basis of Osmoregulation in Heteromyid Rodents As Revealed by RNA-seq

Overview
Journal Mol Ecol
Date 2014 Apr 24
PMID 24754676
Citations 23
Authors
Affiliations
Soon will be listed here.
Abstract

One adaptation of ecological and evolutionary interest is the extraordinary ability of desert rodents to retain water during waste production. Much is known regarding the unique kidney physiology of kangaroo rats (Dipodomys spp.) and their ability to retain water during waste production, yet the genetic basis of these physiological adaptations is relatively unknown. Herein, we utilized RNA-seq data to conduct a comparative study to identify osmoregulatory genes expressed in heteromyid rodents. We sequenced kidney tissue from two temperate desert species (Dipodomys spectabilis and Chaetodipus baileyi) from two separate subfamilies of the Heteromyidae and compared these transcriptomes to a tropical mesic species (Heteromys desmarestianus) from a third subfamily. The evolutionary history of these subfamilies provided a robust phylogenetic control that allowed us to separate shared evolutionary history from convergence. Using two methods to detect differential expression (DE), we identified 1890 genes that showed consistent patterns of DE between the arid and mesic species. A three-species reciprocal BLAST analysis revealed 3511 sets of putative orthologues that, upon comparison to known Mus musculus sequences, revealed 323 annotated and full-length genic regions. Selection tests displayed evidence of positive selection (dn/ds > 1) on six genes in the two desert species and remained significant for one of these genes after correction for multiple testing. Thus, our data suggest that both the coding sequence and expression of genes have been shaped by natural selection to provide the genetic architecture for efficient osmoregulation in desert-adapted heteromyid rodents.

Citing Articles

The multi-tissue gene expression and physiological responses of water deprived Peromyscus eremicus.

Blumstein D, MacManes M BMC Genomics. 2024; 25(1):770.

PMID: 39118009 PMC: 11308687. DOI: 10.1186/s12864-024-10629-z.


When the tap runs dry: The multi-tissue gene expression and physiological responses of water deprived .

Blumstein D, MacManes M bioRxiv. 2024; .

PMID: 38328088 PMC: 10849551. DOI: 10.1101/2024.01.22.576658.


When the tap runs dry: the physiological effects of acute experimental dehydration in Peromyscus eremicus.

Blumstein D, MacManes M J Exp Biol. 2023; 226(23).

PMID: 37921453 PMC: 10714145. DOI: 10.1242/jeb.246386.


A highly contiguous genome assembly for the pocket mouse Perognathus longimembris longimembris.

Kozak K, Escalona M, Chumchim N, Fairbairn C, Marimuthu M, Nguyen O J Hered. 2023; 115(1):130-138.

PMID: 37793045 PMC: 10838119. DOI: 10.1093/jhered/esad060.


Whole-genome sequencing reveals adaptations of hairy-footed jerboas (Dipus, Dipodidae) to diverse desert environments.

Peng X, Cheng J, Li H, Feijo A, Xia L, Ge D BMC Biol. 2023; 21(1):182.

PMID: 37649052 PMC: 10469962. DOI: 10.1186/s12915-023-01680-5.