The Ectocarpus genome and the independent evolution of multicellularity in brown algae

多细胞生物 生物 褐藻 有机体 基因组 谱系(遗传) 藻类 进化生物学 普氏藻 绿藻 基因 模式生物 细胞生物学 水蛇许德拉 遗传学 生态学 突变体
作者
J. Mark Cock,Lieven Sterck,Pierre Rouzé,Delphine Scornet,Andrew E. Allen,Grigoris D. Amoutzias,Véronique Anthouard,François Artiguenave,Jean-Marc Aury,Jonathan H. Badger,Bank Beszteri,Kenny Billiau,Eric Bonnet,John H. F. Bothwell,Chris Bowler,Catherine Boyen,Colin Brownlee,Carl J. Carrano,Bénédicte Charrier,Ga Youn Cho,Susana M. Coelho,Jonas Collén,Erwan Corre,Corinne Da Silva,Ludovic Delage,Nicolas Delaroque,Simon M. Dittami,Sylvie Doulbeau,Marek Eliáš,Garry Farnham,Claire M. M. Gachon,Bernhard Gschloessl,Svenja Heesch,Kamel Jabbari,Claire Jubin,Hiroshi Kawai,Kei Kimura,Bernard Kloareg,Frithjof C. Küpper,Daniel J. Lang,Aude Le Bail,Catherine Leblanc,Patrice Lerouge,Martin Lohr,Pascal J. Lopez,Cindy Martens,Florian Maumus,Gurvan Michel,Diego Miranda-Saavedra,Julia Morales,Hervé Moreau,Taizo Motomura,Chikako Nagasato,Carolyn A. Napoli,David R. Nelson,Pi Nyvall-Collén,Akira F. Peters,Cyril Pommier,Philippe Potin,Julie Poulain,Hadi Quesneville,Betsy A. Read,Stefan A. Rensing,Andrés Ritter,Sylvie Rousvoal,Manoj P. Samanta,Gaelle Samson,Declan C. Schroeder,Béatrice Segurens,Martina Strittmatter,Thierry Tonon,James Tregear,Klaus-Ulrich Valentin,Peter von Dassow,Takahiro Yamagishi,Yves Van de Peer,Patrick Wincker
出处
期刊:Nature [Springer Nature]
卷期号:465 (7298): 617-621 被引量:738
标识
DOI:10.1038/nature09016
摘要

Brown algae (Phaeophyceae) are complex photosynthetic organisms with a very different evolutionary history to green plants, to which they are only distantly related. These seaweeds are the dominant species in rocky coastal ecosystems and they exhibit many interesting adaptations to these, often harsh, environments. Brown algae are also one of only a small number of eukaryotic lineages that have evolved complex multicellularity (Fig. 1). We report the 214 million base pair (Mbp) genome sequence of the filamentous seaweed Ectocarpus siliculosus (Dillwyn) Lyngbye, a model organism for brown algae, closely related to the kelps (Fig. 1). Genome features such as the presence of an extended set of light-harvesting and pigment biosynthesis genes and new metabolic processes such as halide metabolism help explain the ability of this organism to cope with the highly variable tidal environment. The evolution of multicellularity in this lineage is correlated with the presence of a rich array of signal transduction genes. Of particular interest is the presence of a family of receptor kinases, as the independent evolution of related molecules has been linked with the emergence of multicellularity in both the animal and green plant lineages. The Ectocarpus genome sequence represents an important step towards developing this organism as a model species, providing the possibility to combine genomic and genetic approaches to explore these and other aspects of brown algal biology further.
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