In situ analysis of nitrogen fixation and metabolic switching in unicellular thermophilic cyanobacteria inhabiting hot spring microbial mats

被引:151
作者
Steunou, AS
Bhaya, D
Bateson, MM
Melendrez, MC
Ward, DM
Brecht, E
Peters, JW
Kühl, M
Grossman, AR
机构
[1] Carnegie Inst, Dept Plant Biol, Stanford, CA 94305 USA
[2] Montana State Univ, Dept Land Resources & Environm Sci, Bozeman, MT 59715 USA
[3] Montana State Univ, Dept Chem & Biochem, Bozeman, MT 59715 USA
[4] Univ Copenhagen, Marine Biol Lab, Inst Biol, DK-3000 Helsingor, Denmark
关键词
Synechococcus; diel regulation; fermentation; nitrogenase; Yellowstone National Park;
D O I
10.1073/pnas.0507513103
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
Genome sequences of two Synechococcus ecotypes inhabiting the octopus Spring microbial mat in Yellowstone National Park revealed the presence of all genes required for nitrogenase biosynthesis. We demonstrate that nif genes of the Synechococcus ecotypes are expressed in situ in a region of the mat that varies in temperature from 53.5 degrees C to 63.4 degrees C (average 60 degrees C) transcripts are only detected at the end of the day when the mat becomes anoxic. Nitrogenase activity in mat samples was also detected in the evening. Hitherto, N-2 fixation in hot spring mats was attributed either to filamentous cyanobacteria (not present at > 50 degrees C in these mats) or to heterotrophic bacteria. To explore how energy-generating processes of the Synechococcus ecotypes track natural light and O-2 conditions, we evaluated accumulation of transcripts encoding proteins involved in photosynthesis, respiration, and fermentation. Transcripts from photosynthesis (cpcF, cpcE, psaB, and psbB) and respiration (coxA and cydA) genes declined in the evening. In contrast, transcripts encoding enzymes that may participate in fermentation fell into two categories; some (Idh, pdhB, ald, and ackA) decreased in the evening, whereas others (PflB, pflA, adhE, and acs) increased at the end of the day and remained high into the night. Energy required for N-2 fixation during the night may be derived from fermentation pathways that become prominent as the mat becomes anoxic. In a broader context, our data suggest that there are critical regulatory switches in situ that are linked to the diel cycle and that these switches alter many metabolic processes within the microbial mat.
引用
收藏
页码:2398 / 2403
页数:6
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