• 제목/요약/키워드: trophic transfer

검색결과 17건 처리시간 0.02초

Trophic transfer of organochlorine pesticides through food-chain in coastal marine ecosystem

  • Kim, Seung-Kyu
    • Environmental Engineering Research
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    • 제25권1호
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    • pp.43-51
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    • 2020
  • The present study was designed to characterize the bioaccumulation of organochlorine pesticides (OCPs) in marine organisms (zooplankton, oyster, crab, and goby) on different trophic level. In the present study, sedentary bivalve (oyster) showed strong correlations in OCPs levels with surface sediment in the study area. This indicates the two compartments can be used as alternative for pollution monitoring of OCPs even in narrow scale in space. Bioaccumulation and trophic transfer of OCPs was strongly associated with their hydrophobicity (i.e., KOW). HCHs with log KOW < 5 did not show any enrichment through food-chain. However, log BAF values of OCPs with log KOW > 5 positioned over the 1:1 lines of log BAF and log KOW of the top predator, indicating the greater fugacities in the higher trophic level and thus the occurrence of biomagnification via ingestion. Based on trophic transfer factors (TTF), more hydrophobic OCPs with log KOW > 5 were enriched by several to several ten times in the highest trophic level relative to the lowest trophic level. This finding can be used in the establishment of marine environmental water quality criteria by considering biomagnification factors (TTF in this study) of OCPs.

Prediction of Daphnia Production along a Trophic Gradient

  • Park, Sang-Kyu;Goldman, C.R.
    • Journal of Ecology and Environment
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    • 제31권2호
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    • pp.125-129
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    • 2008
  • To predict Daphnia secondary productivity along a trophic gradient indexed as total phosphorus (TP) concentration, we estimated energy transfer efficiencies from food quality for Daphnia such as eicosa-pentaenoic acid (EPA) or docosahexaenoic acid (DHA) content. Eleven flow-through Daphnia magna growth experiments were conducted with seston from 9 lakes, ponds and river waters. Primary productivities were estimated from food supply rates in the flow-through experiments, producing energy transfer efficiencies from seston to D. magna. We found DHA content was the best predictor of energy transfer efficiencies among the essential fatty acids. An asymptotic saturation model explained 79.6% of the variability In energy transfer efficiencies. Based on empirical data in this study and empirical models from literature, we predict that Daphnia productivity would peak in mesotrophic systems by decreasing food quality and Increasing food quantity along trophic gradient.

나노입자의 수생태계 영양단계전이 연구동향 (Research Trend of Trophic Transfer of Nanoparticles in Aquatic Ecosystems)

  • 이우미;안윤주
    • 생태와환경
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    • 제44권4호
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    • pp.317-326
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    • 2011
  • With its recent advances, nanotechnology is now being applied to various areas. Despite the benefits of nanoparticles, their risk in the environment has caused controversy, which is now becoming an international issue. Nanoparticles can easily infiltrate into cells, accumulate in biota, and may cause adverse effects in the levels of molecules, cells and organisms, and in the community. If nanoparticles are released into the environment, they can be transferred to organisms in the ecosystem, and eventually to the human body through the food chain. In this study, the research trend of the trophic transfer of nanoparticles in the food chain was investigated. Although a few investigations have been conducted regarding this topic, the trophic transfer of nanoparticles is becoming a significant issue in the area of nanotoxicology due to the potential risk to humans via the biomagnification process. While previous studies have demonstrated evidence of the trophic transfer of nanoparticles intensive future studies are needed to provide further information on the properties of nanomaterials, the exposure media, and the in vivo mechanisms such as uptake, accumulation, and depuration.

담수 및 해양생태계에서 나노물질의 먹이사슬전이 연구추세 (Research Trends of Food Chain Transfer of Nanomaterials in Freshwater and Marine Ecosystems)

  • 채유은;안윤주
    • 한국물환경학회지
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    • 제30권6호
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    • pp.683-690
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    • 2014
  • Nanomaterials are used in a range of fields, including industry, medicine, aerospace, and manufacturing, due to their unique and useful properties. In recent years, nanotechnology has developed rapidly, and the amount of nanomaterials used in various fields has increased consistently. As a result, nanomaterials are released into the aquatic and soil ecosystem, posing potential risks to organisms and environment. These materials can enter the cells and may cause serious damage to organisms. Furthermore, they can be transferred through trophic levels and food web, thereby leading to bioconcentration and biomagnification. In this study, we analyzed the trends in research on food chain transfer of nanomaterials and investigated the techniques used in the research. Although many studies have been underway, there is a need for further advanced studies on higher trophic levels and complex microcosm and mesocosm. Furthermore, study topics should be expanded to include various types of nanomaterials and varied species and trophic levels.

석회암과 화강편마암 지역의 초지에서 영양단계별 칼슘 전이 (Transfer of Calcium along Trophic Levels on Limestone and Granitic Gneiss Grassland)

  • 이훈복;남상호;김준호
    • 환경생물
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    • 제25권3호
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    • pp.228-238
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    • 2007
  • Calcium plays an important role for the organisms' physiology, reproduction, and growth. Calcium amount and transfer efficiency along trophic levels were compared at two different geological areas, Limestone area (LS) and Granitic Gneiss area (GG) in 1992 and 1993. Biomass and calcium amount of plants, herbivores and carnivores were seasonally measured. The removal sweeping net method was used to collect the quantitative insect samples. Calcium content (mgCa $g^{-1}$ DM) and pH of soil were 4.85 and 7.3 at LS and 0.21 and 7.3 at GG. The calcium transfer efficiencies (%) at LS and CG were 0.2 and 4.2 from soil to plants, 0.002 and 0.02 from plants to herbivores, and 73 and 47 from herbivores to carnivores, respectively. As a whole, the high calcium content of the LS soil reduced the utilization of calcium by plants. The higher trophical levels were, the higher ecological efficiency of the biological levels was. The calcium transfer amount was higher at LS, but its efficiency was rather higher at GG.

Maternal Body-mass Transfer to Offspring in the Matriphagous Spider, Amaurobius ferox (Amaurobiidae)

  • Kim, Kil-Won
    • Journal of Ecology and Environment
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    • 제32권3호
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    • pp.177-182
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    • 2009
  • The optimal strategy for semelparous females may involve adjustments in the relative investment in two fitness components, the number of offspring and the post-hatching investment per capita. To determine the pattern of maternal resource allocation to offspring in the matriphagous spider, Amaurobius ferox (Amaurobiidae), I investigated the relationship between maternal body-mass and the number of offspring, and quantified the transfer of maternal body-mass to the offspring via different forms of maternal provisioning (trophic egg-laying and matriphagy). There was a positive relationship between female body-mass and the number of offspring. However, Amaurobius mothers did not produce more trophic eggs when they had larger broods. Rather, spiderlings in larger A. ferox broods consumed larger quantities of maternal body-mass via matriphagy. Mothers transferred $28.8{\pm}6.5%$ of their body-mass to the spiderlings via trophic egg-laying, and an estimated $39.0{\pm}12.5%$ of their body-mass was transferred to the spiderlings via matriphagy.

소독살균제 기인 화학물질의 수생태계 내 생물 전이 특성 연구 (Trophic Transfer of Disinfectant Chemical in Aquatic Ecosystem)

  • 조하은;김도균;원은지;조형욱;안광국;신경훈
    • 생태와환경
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    • 제55권4호
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    • pp.376-389
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    • 2022
  • 화학물질은 현대생활에서 없어서는 안될 매우 중요한 요소이며, 그 종류와 발생량이 꾸준히 증가하는 추세이다. 코로나19 발병 이후 소독제 사용증가로 인해 소독제 함유 화학물질의 사용 및 배출 또한 증가했지만, 환경모니터링이나 생물독성연구 외에 생태계 내 거동에 대한 연구는 부족한 실정이다. 본 연구는 2020, 2021년 금강, 한강, 영산강에서 어류를 대상으로 하는 생태계 먹이망을 조사하고, 어류의 근육에서 소독제 성분인 6종의 benzalkonium chloride (BACs)와 5종의 didecyldimethylammonium chlorides (DDACs)농도를 분석하여 생태계 내 거동을 살펴보았다. ∑BACs와 ∑DDACs는 한강에 서식하는 어류의 체내에서 가장 높은 농도로, 뒤이어 영산강, 금강하구언, 갑천 순서로 검출되었으며 강우 이후 물질의 농도와 검출 빈도가 감소하는 것으로 관찰되었다. BAC는 C12와 C14가, DDAC는 C10과 C14가 가장 빈번하게 검출되었다. BAC와 DDAC가 어류 조직에서 검출된 것으로 보아 물질이 생물과 먹이망 내 축적될 수 있음을 확인하였으나, 체내 축적률을 보여주는 biomagnification factor(BMF)가 1 미만의 값으로, 먹이망 내 전달을 보여주는 trophic magnification slope (TMS)이 -0.236에서 0.001의 값으로, trophic magnification factor(TMF)가 0.85에서 1.01의 값으로 도출되어 먹이망을 통해 물질이 확대되기보다는 희석된다는 것을 알 수 있었다.

위험평가모형($TrophicTrace^{(R)}$)을 이용한 가상 해양오염퇴적물의 쥐노래미와 인체 영향 예비평가 (Potential Human Health and Fish Risks Associated with Hypothetical Contaminated Sediments Using a Risk Assessment Model ($TrophicTrace^{(R)}$))

  • 양동범;홍기훈;김경련
    • 대한환경공학회지
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    • 제33권1호
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    • pp.60-70
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    • 2011
  • 본고에서는 현재 시행중인 해양오염퇴적물질 관리용 유해화학물질 정화지수($CI_{HC}$)를 대상으로, $CI_{HC}$은 동일하나 유해 물질별 함량이 다른 해저퇴적물들이 같은 생물위험을 보이는가를 판단하려 하였다. 이를 위해 5개의 가상 오염퇴적물을 설정하고, 퇴적물 위험평가를 위한 트로픽트레이스 모형($TrophicTrace^{(R)}$ model)을 이용하여, 이 가상 퇴적물이 쥐노래미(Hexagrammos otakii)에 대해 미치는 생물위험을 최대무작용량에 기반한 독성지수(NOAEL TQ)와 최소작용량에 기반한 독성지수(LOAEL TQ)로 평가하였다. 쥐노래미에 대한 NOAEL TQ의 합계는 5개 가상 오염퇴적물에서 0.69~1.54의 범위였고, LOAEL TQ의 합계는 0.111~0.261로 약 2배 이상의 차이가 났다. 이는 퇴적물 유해물질 환경기준이 해양저서무척추동물군집에 대한 영향만을 고려하고 사람으로 연결되는 식용의 쥐노래미에 대한 영향을 반영하지 않기 때문으로 사료된다. 인체에 대한 비발암위험지수(HI) 값은 PCB의 경우 9.8~47.1로 매우 위험한 것으로 나타났다. PCB의 발암위험도는 5개 퇴적물에서 $39{\sim}190{\times}10^{-5}$으로 높게 나타났으며 As의 경우에도 $8.1{\sim}18.0{\times}10^{-5}$으로 높게 나타났다. 유해화학물질정화지수가 8로 동일한 5개 가상 오염퇴적물에서 비발암위험지수(HI) 및 발암위험도가 서로 매우 다르게 나타난 것은 각 오염물질별로 인체에 악영향을 미치는 정도가 다르기 때문이다.

Seasonal and Spatial Diversity of Picocyanobacteria Community in the Great Mazurian Lakes Derived from DGGE Analyses of 16S rDNA and cpcBA-IGS Markers

  • Jasser, Iwona;Krolicka, Adriana;Jakubiec, Katarzyna;Chrost, Ryszard J.
    • Journal of Microbiology and Biotechnology
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    • 제23권6호
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    • pp.739-749
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    • 2013
  • The seasonal and spatial diversity of picocyanobacteria (Pcy) in lakes of the Great Mazurian Lakes (GLM) system was examined by DGGE analysis of molecular markers derived from the 16S-23S internal transcribed spacer (ITS) of the ribosomal operon and the phycocyanin operon (cpcBA-IGS). The study of nine lakes, ranging from mesotrophy to hypereutrophy, demonstrated seasonal variance of Pcy. The richness and Shannon diversity index calculated on the basis of both markers were higher in spring and lower in early and late summer. No statistically significant relationships were found between the markers and trophic status of the studied lakes or Pcy abundance. There were, however, statistically significant relationships between the diversity indices and sampling time. The analysis pointed to a different distribution of the two markers. The ITS marker exhibited more unique sequences in time and space, whereas a greater role for common and ubiquitous sequences was indicated by the cpcBA-IGS data. Examination of the Pcy community structure demonstrated that communities were grouped in highly similar clusters according to sampling season/time rather than to the trophic status of the lake. Our results suggest that time is more important than trophic status in shaping the diversity and structure of Pcy communities. The seasonal changes in picocyanobacteria and differences in diversity and community structures are discussed in the context of well-established ecological hypotheses: the PEG model, intermediate disturbance hypothesis (IDH), and horizontal gene transfer (HGT).