Evolution and Diversity of Plant Cell Walls: From Algae to Flowering Plants

被引:523
作者
Popper, Zoe A. [1 ]
Michel, Gurvan [5 ,6 ]
Herve, Cecile [5 ,6 ]
Domozych, David S. [2 ,3 ]
Willats, William G. T. [4 ]
Tuohy, Maria G. [1 ]
Kloareg, Bernard [5 ,6 ]
Stengel, Dagmar B.
机构
[1] Natl Univ Ireland, Sch Nat Sci, Mol Glycotechnol Grp, Galway, Ireland
[2] Skidmore Coll, Skidmore Microscopy Imaging Ctr, Saratoga Springs, NY 12866 USA
[3] Skidmore Coll, Dept Biol, Saratoga Springs, NY 12866 USA
[4] Univ Copenhagen, Fac Life Sci, Dept Plant Biol & Biochem, DK-1870 Frederiksberg, Denmark
[5] CNRS, F-29682 Roscoff, Bretagne, France
[6] Univ Paris 06, Stn Biol Roscoff, UMR Marine Plants & Biomol 7139, F-29682 Roscoff, Bretagne, France
来源
ANNUAL REVIEW OF PLANT BIOLOGY, VOL 62 | 2011年 / 62卷
基金
美国国家科学基金会;
关键词
xyloglucan; mannan; arabinogalactan proteins; genome; environment; multicellularity; CARBOHYDRATE-ACTIVE ENZYMES; CHAROPHYCEAN GREEN-ALGA; LONG-DISTANCE TRANSPORT; EXTRACELLULAR-MATRIX; SYRINGYL LIGNIN; GENOME REVEALS; MIXED-LINKAGE; RHAMNOGALACTURONAN-II; KAPPA-CARRAGEENASE; RED ALGAE;
D O I
10.1146/annurev-arplant-042110-103809
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
All photosynthetic multicellular Eukaryotes, including land plants and algae, have cells that are surrounded by a dynamic, complex, carbohydrate-rich cell wall. The cell wall exerts considerable biological and biomechanical control over individual cells and organisms, thus playing a key role in their environmental interactions. This has resulted in compositional variation that is dependent on developmental stage, cell type, and season. Further variation is evident that has a phylogenetic basis. Plants and algae have a complex phylogenetic history, including acquisition of genes responsible for carbohydrate synthesis and modification through a series of primary (leading to red algae, green algae, and land plants) and secondary (generating brown algae, diatoms, and dinoflagellates) endosymbiotic events. Therefore, organisms that have the shared features of photosynthesis and possession of a cell wall do not form a monophyletic group. Yet they contain some common wall components that can be explained increasingly by genetic and biochemical evidence.
引用
收藏
页码:567 / +
页数:6
相关论文
共 146 条
[1]   The new higher level classification of eukaryotes with emphasis on the taxonomy of protists [J].
Adl, SM ;
Simpson, AGB ;
Farmer, MA ;
Andersen, RA ;
Anderson, OR ;
Barta, JR ;
Bowser, SS ;
Brugerolle, G ;
Fensome, RA ;
Fredericq, S ;
James, TY ;
Karpov, S ;
Kugrens, P ;
Krug, J ;
Lane, CE ;
Lewis, LA ;
Lodge, J ;
Lynn, DH ;
Mann, DG ;
McCourt, RM ;
Mendoza, L ;
Moestrup, O ;
Mozley-Standridge, SE ;
Nerad, TA ;
Shearer, CA ;
Smirnov, AV ;
Spiegel, FW ;
Taylor, MFJR .
JOURNAL OF EUKARYOTIC MICROBIOLOGY, 2005, 52 (05) :399-451
[2]   Occurrence of sulfated galactans in marine angiosperms: evolutionary implications [J].
Aquino, RS ;
Landeira-Fernandez, AM ;
Valente, AP ;
Andrade, LR ;
Mourao, PAS .
GLYCOBIOLOGY, 2005, 15 (01) :11-20
[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]  
Baldauf SL, 2008, J SYST EVOL, V46, P263, DOI 10.3724/SP.J.1002.2008.08008
[5]   The kappa-carrageenase of the marine bacterium Cytophaga drobachiensis.: Structural and phylogenetic relationships within family-16 glycoside hydrolases [J].
Barbeyron, T ;
Gerard, A ;
Potin, P ;
Henrissat, B ;
Kloareg, B .
MOLECULAR BIOLOGY AND EVOLUTION, 1998, 15 (05) :528-537
[6]   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
[7]  
Barwell CJ., 1989, J. Appl. Phycol, V1, P319, DOI [10.1016/j.cogsc.2021.100522, DOI 10.1016/J.COGSC.2021.100522, 10.1007/BF00003468, DOI 10.1007/BF00003468]
[8]   Structural evidence for the evolution of xyloglucanase activity from xyloglucan endo-transglycosylases:: Biological implications for cell wall metabolism [J].
Baumann, Martin J. ;
Eklof, Jens M. ;
Michel, Gurvan ;
Kallas, Asa M. ;
Teeri, Tuula T. ;
Czjzek, Mirjam ;
Brumer, Harry, III .
PLANT CELL, 2007, 19 (06) :1947-1963
[9]   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
[10]   Streptophyte algae and the origin of embryophytes [J].
Becker, Burkhard ;
Marin, Birger .
ANNALS OF BOTANY, 2009, 103 (07) :999-1004