E. Virginia Armbrust,John A. Berges,Chris Bowler,Beverley R. Green,Diego Martínez,Nicholas H. Putnam,Shiguo Zhou,Andrew E. Allen,Kirk E. Apt,Michael Bechner,Mark A. Brzezinski,Balbir K. Chaal,Anthony Chiovitti,Aubrey K. Davis,Mark S. Demarest,J. Chris Detter,Tijana Glavina,David Goodstein,Masood Z. Hadi,Uffe Hellsten
出处
期刊:Science [American Association for the Advancement of Science (AAAS)] 日期:2004-09-30卷期号:306 (5693): 79-86被引量:1946
Diatoms are unicellular algae with plastids acquired by secondary endosymbiosis. They are responsible for ∼20% of global carbon fixation. We report the 34 million–base pair draft nuclear genome of the marine diatom Thalassiosira pseudonana and its 129 thousand–base pair plastid and 44 thousand–base pair mitochondrial genomes. Sequence and optical restriction mapping revealed 24 diploid nuclear chromosomes. We identified novel genes for silicic acid transport and formation of silica-based cell walls, high-affinity iron uptake, biosynthetic enzymes for several types of polyunsaturated fatty acids, use of a range of nitrogenous compounds, and a complete urea cycle, all attributes that allow diatoms to prosper in aquatic environments.