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Molecular evolution of the membrane associated progesterone receptor in the Brachionus plicatilis (Rotifera, Monogononta) species complex
Authors
A Civetta
A Gelman
+36 more
A Gómez
A Krogh
AE Palmé
B Ewing
C Haag-Liautard
C Notredame
D Fontaneto
D Gordon
David B. Mark Welch
E Castro de
E Suatoni
ED Ketterson
F Abascal
H Kishino
Hilary A. Smith
HJ Rohe
J Zhang
J-F Gibrat
JP Huelsenbeck
MA Cahill
MA Frohman
MA Larkin
MR Mansouri
O Folmer
RD Finn
T Schwede
TA Hall
Terry W. Snell
TW Snell
TW Snell
TW Snell
TW Snell
W-H Li
Y Wang
Z Yang
Z Yang
Publication date
1 October 2010
Publisher
'Springer Science and Business Media LLC'
Doi
Cite
Abstract
Author Posting. © Springer, 2010. This is the author's version of the work. It is posted here by permission of Springer for personal use, not for redistribution. The definitive version was published in Hydrobiologia 662 (2011): 99-106, doi:10.1007/s10750-010-0484-4.Many studies have investigated physiological roles of the membrane associated progesterone receptor (MAPR), but little is known of its evolution. Marked variations in response to exogenous progesterone have been reported for four brachionid rotifer species, suggesting differences in progesterone signaling and reception. Here we report sequence variation for the MAPR gene in the Brachionus plicatilis species complex. Phylogenetic analysis of this receptor is compared with relatedness based on cytochrome c oxidase subunit 1 sequences. Nonsynonymous to synonymous site substitution rate ratios, amino acid divergence, and variations in predicted phosphorylation sites are examined to assess evolution of the MAPR among brachionid clades.National Science Foundation grant BE/GenEn MCB-0412674E to TWS and DMW, and an NSF IGERT fellowship to HAS under DGE 0114400, supported this work
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Last time updated on 08/06/2012
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Last time updated on 05/06/2019