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Seasonal variability of community structure and breeding activity in marine phytal harpacticoid copepods on Ulva pertusa from Pohang, east coast of Korea

Authors
Song, Sung JoonRyu, JongseongKhim, Jong SeongKim, WonYun, Sung Gyu
Issue Date
1월-2010
Publisher
ELSEVIER SCIENCE BV
Keywords
Phytal Fauna; Meiobenthus; Seasonal Dynamics; Breeding Activity
Citation
JOURNAL OF SEA RESEARCH, v.63, no.1, pp.1 - 10
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF SEA RESEARCH
Volume
63
Number
1
Start Page
1
End Page
10
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/117214
DOI
10.1016/j.seares.2009.08.004
ISSN
1385-1101
Abstract
Seasonal changes in community structure and reproductive status of phytal harpacticoid copepods in the Shallow sublittoral bottom at two sites (Masan-ri and Guryongpo) in Pohang (Korea) are described monthly over a period of 1 year (October 1996 to September 1997). A total of 36 harpacticoid species was identified and the numerically dominant copepods were made Lip of the families Porcellidiidae and Tisbidae. Although the number of species did not show a seasonal trend, total harpacticoid density revealed a favorable distribution for the warmer season (spring and summer) at both sites. Multiple linear regression analyses showed that univariate indices Such as density, evenness and diversity are closely associated with certain environmental parameters. For example, the dominant species fluctuated seasonally in abundance and their maximum densities were found to be temperature- (+ with Porcellidium ofunatense) and nutrient-dependent (+ with Scutellidium longicauda acheloides, + with Zaus unisetosus, and - with P. wandoensis). In addition, the dominant species appeared to breed year round and their reproductive indices are significantly correlated with some environmental parameters such as temperature (-), pH (+), and phosphate (+). Three species (S. I. acheloides, A wandoensis, and A ofunatense) showed maximum density two or three months after their reproductive activity reached a maximum. Overall, the seasonal changes in a phytal harpacticoid community Could be explained by combinations of environmental parameters supporting the complexity and biodiversity for this specific group of species in coastal ecosystems. (C) 2009 Elsevier B.V. All rights reserved.
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