Microorganisms and Detritus in the Water Column of a Subtidal Reef of Natal

Microorganisms and Detritus in the Water Column of a Subtidal Reef of Natal
复制标题

纳塔尔潮下礁石水柱中的微生物和碎屑

DOI:
10.3354/meps004307
复制
发表时间:
1981
影响因子:
2.5
通讯作者:
M. Schleyer
M. Schleyer
中科院分区:
环境科学与生态学3区
文献类型:
--
作者:
M. Schleyer

文献摘要

参考文献

被引文献

相似文献

The parameters measured in this study were light and dark-bottle uptake of NaHI4CO3, the chlorophyll content of seawater, direct counts of bacteria, microbial uptake of 14C glucose and a labelled algal extract, organic carbon in the seawater and the composition of debris washed onto the reef. The phytoplankton consisted largely of nannoplankton and primary production was low with an annual mean of P = 12.82 mg C n1r3h-', while the mean chlorophyll a content of 2.13 mg m-3 was equivalent to a dry biomass of 170.1 mg m-3 Microbial heterotrophic activity was relatively high with an annual mean glucose assimilation of V,,, = 0.612 @g l-'h-' and a total bacterial count of 2.02 X 106 ml-', equivalent to a dry biomass of 20.3 rng m-3. The largest proportion of this activity, measured by differential filtration and using antibiotic inhibitors, is performed by free bacteria as opposed to the smaller proportion conducted by bacteria attached to particles, or by microflagellates. Uptake of the labelled algal extract (V,,, 13.2-72.6 mg C m-3h-') indicates that microbial heterotrophic activity exceeds phytoplankton production. Carbon analyses gave an annual mean of 18.3 g m-3 total organic carbon, of which 20 % was particulate, the rest being dissolved organic carbon. Analysis of debris revealed that it consisted almost exclusively of seaweed, except when rivers were in flood, providing a large influx of terrestrial plant debris. These findings are compared with other published results, and their ecological significance is discussed in relation to the remainder of the environment. It is concluded that primary production by phytoplankton is not as important in supporting the biomass of filter feeders on the reef as is heterotrophic activity associated with organic detritus.
DOI: --
发表时间: 2023
期刊:
影响因子: --
作者:
Shigeki Wada;Yuhi Satoh
通讯作者: Yuhi Satoh