Red and Green Algal Origin of Diatom Membrane Transporters: Insights into Environmental Adaptation and Cell Evolution

被引:32
作者
Chan, Cheong Xin
Reyes-Prieto, Adrian
Bhattacharya, Debashish
机构
[1] Rutgers State Univ, Dept Ecol Evolut & Nat Resources, New Brunswick, NJ 08903 USA
[2] Rutgers State Univ, Inst Marine & Coastal Sci, New Brunswick, NJ 08903 USA
来源
PLOS ONE | 2011年 / 6卷 / 12期
基金
美国国家卫生研究院;
关键词
HORIZONTAL GENE-TRANSFER; PHOTOSYNTHETIC EUKARYOTES; CYANIDIOSCHYZON-MEROLAE; GALDIERIA-SULPHURARIA; GENOME SEQUENCE; PROTEIN; REVEALS; FAMILY; DINOFLAGELLATE; ENDOSYMBIOSIS;
D O I
10.1371/journal.pone.0029138
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Membrane transporters (MTs) facilitate the movement of molecules between cellular compartments. The evolutionary history of these key components of eukaryote genomes remains unclear. Many photosynthetic microbial eukaryotes (e. g., diatoms, haptophytes, and dinoflagellates) appear to have undergone serial endosymbiosis and thereby recruited foreign genes through endosymbiotic/horizontal gene transfer (E/HGT). Here we used the diatoms Thalassiosira pseudonana and Phaeodactylum tricornutum as models to examine the evolutionary origin of MTs in this important group of marine primary producers. Using phylogenomics, we used 1,014 diatom MTs as query against a broadly sampled protein sequence database that includes novel genome data from the mesophilic red algae Porphyridium cruentum and Calliarthron tuberculosum, and the stramenopile Ectocarpus siliculosus. Our conservative approach resulted in 879 maximum likelihood trees of which 399 genes show a non-lineal history between diatoms and other eukaryotes and prokaryotes (at the bootstrap value >= 70%). Of the eukaryote-derived MTs, 172 (ca. 25% of 697 examined phylogenies) have members of both red/green algae as sister groups, with 103 putatively arising from green algae, 19 from red algae, and 50 have an unresolved affiliation to red and/or green algae. We used topology tests to analyze the most convincing cases of non-lineal gene history in which red and/or green algae were nested within stramenopiles. This analysis showed that ca. 6% of all trees (our most conservative estimate) support an algal origin of MTs in stramenopiles with the majority derived from green algae. Our findings demonstrate the complex evolutionary history of photosynthetic eukaryotes and indicate a reticulate origin of MT genes in diatoms. We postulate that the algal-derived MTs acquired via E/HGT provided diatoms and other related microbial eukaryotes the ability to persist under conditions of fluctuating ocean chemistry, likely contributing to their great success in marine environments.
引用
收藏
页数:11
相关论文
共 68 条
[1]   Gene Transfer and Diversification of Microbial Eukaryotes [J].
Andersson, Jan O. .
ANNUAL REVIEW OF MICROBIOLOGY, 2009, 63 :177-193
[2]   Lateral gene transfer and the evolution of plastid-targeted proteins in the secondary plastid-containing alga Bigelowiella natans [J].
Archibald, JM ;
Rogers, MB ;
Toop, M ;
Ishida, K ;
Keeling, PJ .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2003, 100 (13) :7678-7683
[3]   The genome of the diatom Thalassiosira pseudonana:: Ecology, evolution, and metabolism [J].
Armbrust, EV ;
Berges, JA ;
Bowler, C ;
Green, BR ;
Martinez, D ;
Putnam, NH ;
Zhou, SG ;
Allen, AE ;
Apt, KE ;
Bechner, M ;
Brzezinski, MA ;
Chaal, BK ;
Chiovitti, A ;
Davis, AK ;
Demarest, MS ;
Detter, JC ;
Glavina, T ;
Goodstein, D ;
Hadi, MZ ;
Hellsten, U ;
Hildebrand, M ;
Jenkins, BD ;
Jurka, J ;
Kapitonov, VV ;
Kröger, N ;
Lau, WWY ;
Lane, TW ;
Larimer, FW ;
Lippmeier, JC ;
Lucas, S ;
Medina, M ;
Montsant, A ;
Obornik, M ;
Parker, MS ;
Palenik, B ;
Pazour, GJ ;
Richardson, PM ;
Rynearson, TA ;
Saito, MA ;
Schwartz, DC ;
Thamatrakoln, K ;
Valentin, K ;
Vardi, A ;
Wilkerson, FP ;
Rokhsar, DS .
SCIENCE, 2004, 306 (5693) :79-86
[4]   Comparative genomics of two closely related unicellular thermo-acidophilic red algae, Galdieria sulphuraria and Cyanidioschyzon merolae, reveals the molecular basis of the metabolic flexibility of Galdieria sulphuraria and significant differences in carbohydrate metabolism of both algae [J].
Barbier, G ;
Oesterhelt, C ;
Larson, MD ;
Halgren, RG ;
Wilkerson, C ;
Garavito, RM ;
Benning, C ;
Weber, APM .
PLANT PHYSIOLOGY, 2005, 137 (02) :460-474
[5]   Phylogenomic Evidence for Separate Acquisition of Plastids in Cryptophytes, Haptophytes, and Stramenopiles [J].
Baurain, Denis ;
Brinkmann, Henner ;
Petersen, Joern ;
Rodriguez-Ezpeleta, Naiara ;
Stechmann, Alexandra ;
Demoulin, Vincent ;
Roger, Andrew J. ;
Burger, Gertraud ;
Lang, B. Franz ;
Philippe, Herve .
MOLECULAR BIOLOGY AND EVOLUTION, 2010, 27 (07) :1698-1709
[6]   Photosynthetic eukaryotes unite: endosymbiosis connects the dots [J].
Bhattacharya, D ;
Yoon, HS ;
Hackett, JD .
BIOESSAYS, 2004, 26 (01) :50-60
[7]   The Phaeodactylum genome reveals the evolutionary history of diatom genomes [J].
Bowler, Chris ;
Allen, Andrew E. ;
Badger, Jonathan H. ;
Grimwood, Jane ;
Jabbari, Kamel ;
Kuo, Alan ;
Maheswari, Uma ;
Martens, Cindy ;
Maumus, Florian ;
Otillar, Robert P. ;
Rayko, Edda ;
Salamov, Asaf ;
Vandepoele, Klaas ;
Beszteri, Bank ;
Gruber, Ansgar ;
Heijde, Marc ;
Katinka, Michael ;
Mock, Thomas ;
Valentin, Klaus ;
Verret, Frederic ;
Berges, John A. ;
Brownlee, Colin ;
Cadoret, Jean-Paul ;
Chiovitti, Anthony ;
Choi, Chang Jae ;
Coesel, Sacha ;
De Martino, Alessandra ;
Detter, J. Chris ;
Durkin, Colleen ;
Falciatore, Angela ;
Fournet, Jerome ;
Haruta, Miyoshi ;
Huysman, Marie J. J. ;
Jenkins, Bethany D. ;
Jiroutova, Katerina ;
Jorgensen, Richard E. ;
Joubert, Yolaine ;
Kaplan, Aaron ;
Kroger, Nils ;
Kroth, Peter G. ;
La Roche, Julie ;
Lindquist, Erica ;
Lommer, Markus ;
Martin-Jezequel, Veronique ;
Lopez, Pascal J. ;
Lucas, Susan ;
Mangogna, Manuela ;
McGinnis, Karen ;
Medlin, Linda K. ;
Montsant, Anton .
NATURE, 2008, 456 (7219) :239-244
[8]   Phylogenomics Reshuffles the Eukaryotic Supergroups [J].
Burki, Fabien ;
Shalchian-Tabrizi, Kamran ;
Minge, Marianne ;
Skjaeveland, Asmund ;
Nikolaev, Sergey I. ;
Jakobsen, Kjetill S. ;
Pawlowski, Jan .
PLOS ONE, 2007, 2 (08)
[9]   BLAST plus : architecture and applications [J].
Camacho, Christiam ;
Coulouris, George ;
Avagyan, Vahram ;
Ma, Ning ;
Papadopoulos, Jason ;
Bealer, Kevin ;
Madden, Thomas L. .
BMC BIOINFORMATICS, 2009, 10
[10]   Principles of protein and lipid targeting in secondary symbiogenesis: Euglenoid, dinoflagellate, and sporozoan plastid origins and the eukaryote family tree [J].
Cavalier-Smith, T .
JOURNAL OF EUKARYOTIC MICROBIOLOGY, 1999, 46 (04) :347-366