Biodiversity of terrestrial protozoa appears homogeneous across local and global spatial scales

被引:68
作者
Finlay, BJ [1 ]
Esteban, GF [1 ]
Clarke, KJ [1 ]
Olmo, JL [1 ]
机构
[1] CEH Windermere, Ambleside LA22 0LP, Cumbria, England
基金
英国自然环境研究理事会;
关键词
D O I
10.1078/1434-4610-00073
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Free-living microbes are by far the most abundant group of organisms in the biosphere, yet estimates of global species richness remain nebulous, and there is no consensus regarding the likely geographical distribution of species. Both uncertainties are addressed by the suggestion that the vast abundance of microbes may drive their ubiquitous random dispersal; for this would also make it likely that global species richness is relatively low. Here we test the idea of ubiquitous dispersal of testate amoebae and ciliates living in soil. We analysed their abundance and species richness in 150 soil samples collected from the one-hectare grassland site at Sourhope in Scotland, and in comparable published data from 1500 soil samples collected worldwide. Following taxonomic revision and removal of synonyms, there remained a total of 186 taxa (91 testate and 95 ciliate) recorded from both Sourhope and other places in the world. A fundamental pattern of random spatial distribution of species was revealed in species that are relatively rare. This probably arises from random dispersal, for when localised population growth occurs, the distributions become aggregated, as in virtually all metazoan species. We find no evidence for geographically-restricted protozoan morphospecies at spatial scales of 4 m(2), 10,000 m(2), or worldwide. Species that are locally rare or abundant are similarly rare or abundant on a global scale. Approximately one third of the global diversity of soil protozoa was found at the one-hectare grassland site in Scotland, but this is a minimum figure, for recorded species richness is proportional to sampling effort, as shown here.
引用
收藏
页码:355 / 366
页数:12
相关论文
共 32 条
[1]   A survey of flagellate diversity at four deep-sea hydrothermal vents in the Eastern Pacific Ocean using structural and molecular approaches [J].
Atkins, MS ;
Teske, AP ;
Anderson, OR .
JOURNAL OF EUKARYOTIC MICROBIOLOGY, 2000, 47 (04) :400-411
[2]  
Berger H., 1999, MONOGR BIOL, V78, P1, DOI DOI 10.1007/978-94-011-4637-1
[3]   ON THE HABITAT SPECIFICITY OF THE TESTATE AMEBAS ASSEMBLAGES FROM DEVON-ISLAND (NWT, CANADIAN ARCTIC), WITH THE DESCRIPTION OF A NEW SPECIES - DIFFLUGIA-OVALISINA [J].
BEYENS, L ;
CHARDEZ, D .
ARCHIV FUR PROTISTENKUNDE, 1994, 144 (02) :137-142
[4]   ECOLOGY OF TERRESTRIAL TESTATE AMEBAS ASSEMBLAGES FROM COASTAL LOWLANDS ON DEVON ISLAND (NWT, CANADIAN ARCTIC) [J].
BEYENS, L ;
CHARDEZ, D ;
DEBAERE, D ;
DEBOCK, P ;
JACQUES, E .
POLAR BIOLOGY, 1990, 10 (06) :431-440
[5]   Substrate heterogeneity and microfauna in soil organic 'hotspots' as determinants of nitrogen capture and growth of ryegrass [J].
Bonkowski, M ;
Griffiths, B ;
Scrimgeour, C .
APPLIED SOIL ECOLOGY, 2000, 14 (01) :37-53
[6]  
Bonnet L., 1975, Protistologica, V11, P363
[7]  
BUITKAMP U, 1977, ACTA PROTOZOOL, V16, P249
[8]   Molecular evidence for genetic mixing of Arctic and Antarctic subpolar populations of planktonic foraminifers [J].
Darling, KF ;
Wade, CM ;
Stewart, IA ;
Kroon, D ;
Dingle, R ;
Brown, AJL .
NATURE, 2000, 405 (6782) :43-47
[9]   On the geographic distribution, of Loxodes rex (Protozoa, Ciliophora) and other alleged endemic species of ciliates [J].
Esteban, GF ;
Finlay, BJ ;
Charubhun, N ;
Charubhun, B .
JOURNAL OF ZOOLOGY, 2001, 255 :139-143
[10]   THERE ARE MORE SMALL THAN LARGE SPECIES [J].
FENCHEL, T .
OIKOS, 1993, 68 (02) :375-378