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Trophic Enrichment Factors of Carbon and Nitrogen Isotopic Ratios (delta C-13 and delta N-15) in Four Marine Ciliates

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Abstract
Understanding the magnitude and causes of isotopic fractionation between organisms and their dietary resources is crucial for gaining knowledge on stable isotope ecology. However, little is known regarding the diet-tissue fractionation values of marine ciliates, which play a critical role in the reconstruction of microbial food webs. In the present study, we conducted experiments on two benthic (Pseudokeronopsis pararubra and Protocruzia labiata) and two pelagic (Strombidium sulcatum and Uronemella filificum) marine ciliates, where they were fed with isotopically constant foods (Chaetoceros calcitrans and Isochrysis galbana) under laboratory culture conditions to determine their carbon and nitrogen isotopic fractionation values (?C-13 and ?N-15). The stable isotope values (d(13)C and d(15)N) of ciliates for all experiments rapidly increased after the initial feeding, with half-lives ranging from 6.1 to 23.0h for d(13)C and from 3.1 to 24.9h for d(15)N. The ?C-13 and ?N-15 for all ciliates represented significantly positive enrichments, with overall mean fractionations of 0.6 & nbsp;+/- 0.2 and 1.2 +/- 0.4, respectively. Irrespective of the dietary type, both ?C-13 and ?N-15 were very similar for the same ciliate species. These results suggest that ????????C-13 and ?N-15 for marine ciliates are similar to those found in common marine organisms with very little food-dependent variation. Overall, quantifying the specific isotopic fractionation of marine ciliates is expected to provide fundamental information on the trophic transfer of carbon, nitrogen, and energy flow through the microbial pathway in marine ecosystems.
Author(s)
Park, Jun YoungJung, Jae-HoKwak, Jung HyunPark, Heum GiKang, Chang-KeunPark, Hyun Je
Issued Date
2021-09
Type
Article
DOI
10.3389/fmicb.2021.721157
URI
https://scholar.gist.ac.kr/handle/local/11294
Publisher
FRONTIERS MEDIA SA
Citation
FRONTIERS IN MICROBIOLOGY, v.12
ISSN
1664-302X
Appears in Collections:
Department of Environment and Energy Engineering > 1. Journal Articles
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