Trophodynamic structure of a swampy bog at the clymax stage of limnological succssion I. Prmary production dynamics

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Nozomi Ytow, Humitake Seki, Tomomi Mizusaki, Shigeaki Kojima, Antonio E. Batomalaque

1994 Water, Air, & Soil Pollution Vol. 76 Issue 3-4 Article Cited by 2 Quartile

Abstract

Effect of emergent vegetation on the population dynamics of phytoplankton community in Matsumi-ike Bog, a typical bog at the climax stage of limnological succession, was studied. The emergent vegetation grew until August and then withered and collapsed mainly during December and January, supplying the debris of emergent plants into the water column. Population density of the predominant phytoplankton showed sinusoidal fluctuation affected primarily by the water temperature, with various lag phases due to the function of other environmental factors. Shading by the emergent vegetation shifted the initiation of phytoplankton fluctuation earlier. This fluctuation patterns was most obvious among those phytoplankton contain chlorophyll-a and -b, but non -a and-c. The population dynamics were also compared with that of Matsumi-ike Bog at premature stages without (8 yr ago) or with littoral vegetations (3 yr ago). The population density of phytoplankton with chlorophyll-b decreased but those with chlorophyll-c increased, due to the shading effect of the emergent vegetation with the limnological succession of the bog. At the climax of succession, the dynamic state of phytoplankton community has become more stable. © 1994 Kluwer Academic Publishers.

Affiliations

Institute of Biological Sciences, University of Tsukuba, Ibaraki, 305, Tennou-dai 1-1-1, Tsukuba, Japan; Mitsukaido Research Institute, Isehan Co., Ibaraki, 303, Sakateachi, Mitsukaido, Japan; Ocean Research Institute, University of Tokyo, Tokyo, 164, Minami-dai 1-15-1, Nakano-ku, Japan; Biology Department, University of San Carlos, Cebu City, Philippines