Molecular evidence of intertidal habitats selecting for repeated ice-binding protein evolution in invertebrates

被引:9
作者
Box, Isaiah C. H. [1 ]
Matthews, Benjamin J. [1 ]
Marshall, Katie E. [1 ]
机构
[1] Univ British Columbia, Dept Zool, 6270 Univ Blvd, Vancouver, BC V6T 1Z4, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
Antifreeze proteins; Freezing risk; Low-temperature tolerance; Environmental selection; BLAST; PREDICTING ANTIFREEZE PROTEINS; MULTIPLE SEQUENCE ALIGNMENT; GLYCOPROTEIN GENE; FREEZE TOLERANCE; WEB SERVER; RECRYSTALLIZATION; INHIBITION; MYTILUS; MODEL; INFORMATION;
D O I
10.1242/jeb.243409
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Ice-binding proteins (IBPs) have evolved independently in multiple taxonomic groups to improve their survival at sub-zero temperatures. Intertidal invertebrates in temperate and polar regions frequently encounter sub-zero temperatures, yet there is little information on IBPs in these organisms. We hypothesized that there are far more IBPs than are currently known and that the occurrence of freezing in the intertidal zone selects for these proteins. We compiled a list of genome-sequenced invertebrates across multiple habitats and a list of known IBP sequences and used BLAST to identify a wide array of putative IBPs in those invertebrates. We found that the probability of an invertebrate species having an IBP was significantly greater in intertidal species than in those primarily found in open ocean or freshwater habitats. These intertidal IBPs had high sequence similarity to fish and tick antifreeze glycoproteins and fish type II antifreeze proteins. Previously established classifiers based on machine learning techniques further predicted ice-binding activity in the majority of our newly identified putative IBPs. We investigated the potential evolutionary origin of one putative IBP from the hard-shelled mussel Mytilus coruscus and suggest that it arose through gene duplication and neofunctionalization. We show that IBPs likely readily evolve in response to freezing risk and that there is an array of uncharacterized IBPs, and highlight the need for broader laboratory-based surveys of the diversity of ice-binding activity across diverse taxonomic and ecological groups.
引用
收藏
页数:13
相关论文
共 94 条
[31]   Helical Antifreeze Proteins Have Independently Evolved in Fishes on Four Occasions [J].
Graham, Laurie A. ;
Hobbs, Rod S. ;
Fletcher, Garth L. ;
Davies, Peter L. .
PLOS ONE, 2013, 8 (12)
[32]   Smelt was the likely beneficiary of an antifreeze gene laterally transferred between fishes [J].
Graham, Laurie A. ;
Li, Jieying ;
Davidson, William S. ;
Davies, Peter L. .
BMC EVOLUTIONARY BIOLOGY, 2012, 12
[33]   Lateral Transfer of a Lectin-Like Antifreeze Protein Gene in Fishes [J].
Graham, Laurie A. ;
Lougheed, Stephen C. ;
Ewart, K. Vanya ;
Davies, Peter L. .
PLOS ONE, 2008, 3 (07)
[34]   The solution structure of type II antifreeze protein reveals a new member of the lectin family [J].
Gronwald, W ;
Loewen, MC ;
Lix, B ;
Daugulis, AJ ;
Sönnichsen, FD ;
Davies, PL ;
Sykes, BD .
BIOCHEMISTRY, 1998, 37 (14) :4712-4721
[35]   Ice recrystallization inhibition activity varies with ice-binding protein type and does not correlate with thermal hysteresis [J].
Gruneberg, Audrey K. ;
Graham, Laurie A. ;
Eves, Robert ;
Agrawal, Prashant ;
Oleschuk, Richard D. ;
Davies, Peter L. .
CRYOBIOLOGY, 2021, 99 :28-39
[36]   POPULATION DIFFERENCES IN ANTIFREEZE PROTEIN GENE COPY NUMBER AND ARRANGEMENT IN WINTER FLOUNDER [J].
HAYES, PH ;
DAVIES, PL ;
FLETCHER, GL .
GENOME, 1991, 34 (01) :174-177
[37]   TargetFreeze: Identifying Antifreeze Proteins via a Combination of Weights using Sequence Evolutionary Information and Pseudo Amino Acid Composition [J].
He, Xue ;
Han, Ke ;
Hu, Jun ;
Yan, Hui ;
Yang, Jing-Yu ;
Shen, Hong-Bin ;
Yu, Dong-Jun .
JOURNAL OF MEMBRANE BIOLOGY, 2015, 248 (06) :1005-1014
[38]   AMINO-ACID SUBSTITUTION MATRICES FROM PROTEIN BLOCKS [J].
HENIKOFF, S ;
HENIKOFF, JG .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1992, 89 (22) :10915-10919
[39]   Simultaneous inference in general parametric models [J].
Hothorn, Torsten ;
Bretz, Frank ;
Westfall, Peter .
BIOMETRICAL JOURNAL, 2008, 50 (03) :346-363
[40]  
John UP, 2009, PLANT CELL ENVIRON, V32, P336, DOI [10.1111/j.1365-3040.2009.01925.x, 10.1111/j.1365-3040.2008.01925.x]