SAR11クラードは,海洋表面の細菌・プランクトンコミュニティを支配している
Robert M Morris1, Michael S Rappé, Stephanie A Connon
1Department of Microbiology, Oregon State University, Corvallis, Oregon 97331, USA.
Nature
|December 20, 2002
まとめ
バクテリアのグループであるSAR11クラデは,海洋で最も豊富な微生物であり,表面水中の細胞の3分の1以上を占めています. このいたるところに存在する海洋細菌は,地球上で最も成功した生物の1つです.
科学分野:
- マリン・マイクロバイオロジー
- 海洋学 海洋学とは
- ゲノミクスゲノミクスとは
背景:
- SAR11クラドは,海水で検出された最も豊富な細菌のリボソーム性RNA遺伝子です.
- SAR11生物の細胞の豊富性と生態学的役割についてはほとんど知られていない.
研究 の 目的:
- 海洋環境におけるSAR11クラドの細胞豊富さを定量的に測定する.
- 海洋のSAR11細胞の世界的な集団サイズを推定する.
主な方法:
- リボソームRNA遺伝子を検出するための遺伝子クローニング.
- 海水のサンプルにおける細胞の豊富さの定量的な測定.
- 総細胞数を推定するエクストラポレーション.
主要な成果:
- SAR11クラードは,平均すると,地表水中の細胞の3分の1を占め,メソペラジックゾーンではほぼ5分の1を占めています.
- いくつかの地域では,SAR11は表面微生物コミュニティの50%までを占めています.
- 海洋におけるSAR11細胞の推定の世界人口は2.4×1028である.
結論:
- SAR11クラードは,世界の海洋で支配的で非常に成功した微生物群です.
- SAR11バクテリアは,様々な海洋地帯の海洋微生物コミュニティの重要な構成要素です.
さらに関連する動画
10:43Unraveling the Unseen Players in the Ocean - A Field Guide to Water Chemistry and Marine Microbiology
Published on: November 5, 2014
25.0K
08:09An Aquatic Microbial Metaproteomics Workflow: From Cells to Tryptic Peptides Suitable for Tandem Mass Spectrometry-based Analysis
Published on: September 15, 2015
8.2K
関連する概念動画
Bacterial Phylum Proteobacteria
1.1K
Proteobacteria, one of the largest and most diverse bacterial phyla, encompasses a wide range of Gram-negative bacteria distinguished by their outer membrane composed of lipopolysaccharides. These microorganisms exhibit various metabolic capabilities, including phototrophy, chemolithotrophy, and heterotrophy, and thrive in diverse environments from soil to aquatic systems and host-associated niches. The phylum is divided into six classes: Alphaproteobacteria, Betaproteobacteria,...
1.1K
Bacterial Phylum Bacteroidota
885
The phylum Bacteroidota includes over 700 species classified into four primary orders: Bacteroidales, Cytophagales, Flavobacteriales, and Sphingobacteriales. These gram-negative, non-sporulating rods exhibit saccharolytic capabilities and can be aerobic or fermentative, encompassing obligate aerobes, facultative aerobes, and obligate anaerobes. Many species display gliding motility, though some are nonmotile or use flagella. The genus Bacteroides is well-studied due to its significant role in...
885
Diversity of Archaea II
706
Archaea, one of the three domains of life, exhibit remarkable diversity and adaptability, thriving in both extreme and moderate environments. Historically, most identified archaea have been classified into two major phyla: Euryarchaeota and Crenarchaeota. However, recent molecular studies have expanded this classification to include three additional phyla: Thaumarchaeota, Nanoarchaeota, and Korarchaeota, each exhibiting unique characteristics and ecological roles.Thaumarchaeota: Mesophiles...
706
Diversity of Protists III
2.1K
Rhizaria are a diverse group of unicellular protists characterized by their threadlike cytoplasmic extensions known as pseudopodia. These structures aid in both locomotion and feeding, giving Rhizaria an amoeboid appearance. Their amoeboid morphology once led to taxonomic confusion, but molecular phylogenetics has clarified their evolutionary placement and emphasized their shared use of pseudopodia despite divergent lineages.This clade comprises diverse lineages such as Chlorarachniophyta,...
2.1K
Marine Microbial Ecology
66
Marine microbial ecosystems are shaped by distinct physicochemical limits, including high salinity, low nutrient availability, and fluctuating oxygen levels. These conditions favor smaller microbial cell sizes, which maximize their surface-to-volume ratio for efficient nutrient uptake.Microbial activity and community composition are closely linked to biogeochemical cycles, particularly in dynamic environments like estuaries, where halotolerant microbes thrive in response to variable salinity...
66
Deep Sea Microbial Ecology
53
The deep ocean and its underlying sediments represent vast, largely unexplored microbial habitats that extend far beyond the sunlit photic zone. The photic (euphotic) zone typically spans the upper ~100–200 meters of pelagic waters in the open ocean, but its depth varies geographically and seasonally, where sufficient light supports photosynthetic life. Below this lies the deep sea, spanning roughly 1000–6000 meters (bathypelagic to abyssal zones), with deeper hadal trenches...
53
