• 제목/요약/키워드: Prey

검색결과 567건 처리시간 0.028초

Feeding Habits of Yellow Goose Fish Lophius litulon and John Dory Zeus faber in the South Sea of Korea

  • Choi, Jung-Hwa;Sung, Bong-Jun;Lee, Dong-Woo;Kim, Jong-Bin;Oh, Taeck-Yun;Kim, Jung-Nyun
    • Fisheries and Aquatic Sciences
    • /
    • 제14권4호
    • /
    • pp.435-441
    • /
    • 2011
  • The feeding habits of yellow goosefish Lophius litulon and John Dory Zeus faber were studied by analyzing the stomach contents of specimens collected in the South Sea of Korea. In total, 132 hauls were taken during six experimental trawl survey (Tamgu 1) cruises conducted on a seasonal basis (March 2005-October 2007). The main prey items of the two species were similar. Fishes and crustaceans were the most important prey, with neither species showing ontogenetic changes in preferred species. Specifically, Pennahia argentata was the preferred prey item of L. litulon, whereas Trichiurus lepturus and Engraulis japonicus were preferred by Z. faber. Larger Z. faber (>24 cm) preferred bigger prey such as T. lepturus and Larimichthys polyactis, while smaller Z. faber preferred E. japonicus and Acropoma japonicum.

순천 상내리 갯골에 출현하는 농어(Lateolabrax japonicus) 치어의 식성 (Feeding habits of juvenile sea perch, Lateolabrax japonicus in tidal creek at Sangnae-ri Suncheon, Korea)

  • 정재묵;김현지;예상진;염시동;박종혁;백근욱
    • 수산해양기술연구
    • /
    • 제51권2호
    • /
    • pp.221-226
    • /
    • 2015
  • During the study periods, total 143 individuals of Lateolabrax japonicus were collected. Body length (BL) range was 2.0-11.8 cm. Empty stomach occurred in 8.4%. The most abundant prey was copepods. Among copepods, Tigriopus japonicus was the most abundant prey appeared 32.1 in %F. Next important prey was shrimps and mysids. The results of analysis in ontogenetic changes, main prey of two small size classes (2.0-3.9 cm, 4.0-5.9 cm) were copepods. Thereafter, copepods percentage was decreased, but shrimps, mysids, fishes percentage was increased by increasing body length from 8.0 cm< size class.

방류 연어, Oncorhynchus keta 치어의 해양 먹이선택성 (Marine Prey Selectivity of Released Juvenile Chum Salmon (Oncorhynchus keta) During arly Marine Migration in Korean Waters)

  • 권오남;김주경;윤문근;김두호;홍관의
    • 수산해양교육연구
    • /
    • 제26권2호
    • /
    • pp.421-429
    • /
    • 2014
  • We investigated the feeding ecology of juvenile chum salmon (Oncorhynchus keta) during the critical early life stage prey selectivity of juvenile chum salmon during early marine migration in Korean waters at spring 2011. Salmon juveniles and zooplanktons were collected to draw with $20m{\times}5m$ gill net and $300{\mu}m$ mesh zooplankton net at each station on 11th-13th April n 2011. Collected zooplanktons were classified to 5 Phylum, 6 Class, 9 Order 17 Species in this study. Almost 76.4-100% species were classified to Phylum Arthropoda, dominant species was a species out of Hyperia galba of Order Amphipoda, Acartia spp and Paracalanus parvus of Order Calanoida. Collected salmon juveniles were grew up to average 4.7-5.4 cm fork length and average 1.0-1.5 g wet weight in whole station. Fish stomach content (mg/salmon) was heaver to 97.4, 82.4 and 63.2 mg wet weight/salmon in ST 2, 3, 4 than 20.4, 18.9 mg/salmon of ST 1, 5, because there are fish (sand eel, Hypoptychus dybowskii) and Krill (Euphausia) as prey in salmon stomach in ST 2, 3, 4. And ST 2, 3, 4 and 5 were dominated by Amphipoda as Hyperia galba, Themisto japonica and Gammarus sp., but ST 1 was dominated by copepod, because of absence of Amphipoda in the station. Therefore small Amphipoda as Hyperia galba was good prey for just released salmon juvenile in nature.

다섯동갈망둑, Pterogobius zacalles의 채식행동: 채식방법과 먹이생물 크기의 관계에 관하여 (Foraging Behavior in Beauty Goby, Pterogobius zacalles: Relationship between Foraging Modes and Prey Size)

  • 최승호
    • 한국어류학회지
    • /
    • 제20권2호
    • /
    • pp.123-128
    • /
    • 2008
  • 2000년 10월부터 11월까지 일본 Aomori현 Mutu만에서 다섯동갈망둑, Pterogobius zacalles의 섭식행동에 관하여 연구를 실시하였다. 다섯동갈망둑은 돌 틈에서 펄과 함께 먹이를 채식하는 쪼기와 돌 표면에서 먹이생물을 흡입하는 두 가지 유형의 채식방법이 있지만, 주로 돌 틈에서 먹이를 채식하는 방법을 이용한다. 다섯동갈망둑의 두 가지 채식방법 모두는 먹이를 찾아 유영하는 찾기, 섭식장소에서 먹이생물을 발견하고 먹는 섭식, 섭식한 후에 먹이를 씹고 이물질을 뱉어내는 씹기의 3단계로 구성된다. 다섯동갈망둑은 두 가지 채식방법 중에서 돌 틈에서 섭식하는 쪼기를 이용할 때 더 먼 거리를 유영하여 먹이를 찾으며, 긴 시간동안 먹이를 씹는다. 다섯동갈망둑은 채식방법에 상관없이 단각류가 주요 먹이생물이지만, 돌 표면에서 채식하였을 때보다 돌 틈에서 채식하였을 때 상대적으로 크기가 큰 단각류나 십각류를 섭식한다. 이들은 돌 틈에서 먹이를 섭식할 때 더 많은 에너지와 시간을 소비하지만, 높은 칼로리의 먹이를 섭식한다. 따라서 먹이생물의 크기는 이들의 섭식방법을 결정하는 요인으로 사료된다.

먹이 종 감각 정보 제공에 따른 긴호랑거미(Argiope bruennichi)의 웹 건축 전략 (Web-Building Strategy of a Wasp Spider, Argiope bruennichi, under Sensory Information Emitted by a Prey Species)

  • 진우영;신현철;김길원
    • 생명과학회지
    • /
    • 제21권7호
    • /
    • pp.1009-1015
    • /
    • 2011
  • 거미의 건축물인 웹의 구조는 먹이 포획을 위한 자원의 투자이자 그 자체가 포식 전략이다. 잠재적인 먹이종으로부터 제공되는 감각정보를 바탕으로 포식 전략을 수정하는 개체는 그렇지 못한 개체에 비해 더 높은 적응도를 가질 것이다. 본 연구는 공중에 둥근 웹을 건축하는 긴호랑거미(Argiope bruennichi)를 대상으로 자외선을 인식하는 비행성 곤충인 서양뒤영벌(Bombus terrestris)의 정보를 경험한 개체가 자신의 건축 행동을 수정하는지를 알아보기 위해 수행되었다. 서양뒤영벌(B. terrestris)의 정보를 제공받은 실험군의 개체가 건축한 웹의 구조를 대조군(정보 없음)의 웹과 비교하였다. 본 연구의 가설은 실험군 개체들은 웹과 흰띠줄 건축에 더 많은 투자를 할 것이라는 것이다. 실험 결과는 당초의 가설을 기각했다. 웹과 흰띠줄 건축은 실험군과 대조군 모두에서 전반적으로 감소하는 경향을 나타냈다. 개체는 꽃꿀채집자의 정보에도 불구하고 흰띠줄을 더 길게 만들지도 웹을 확장하지도 않았다.

먹이 곤충에 따른 Orius strigicollis(Poppius)의 발육과 산란 (Development and oviposition of Orius strigicollis (Poppius) (Hemiptera: Anthocoridae) reared on three different insect preys)

  • 김정환;한만위;이건형;김용헌;이정운;인치종
    • 한국응용곤충학회지
    • /
    • 제36권2호
    • /
    • pp.166-171
    • /
    • 1997
  • 총채벌레류의 유력천적인 Orius strigicollis의 연중 실내사육에 적합한 대체먹이를 선발하고자 먹이 곤충으로 목화진딧물, 점박이응애, 긴털가루응애를 각각 급여하여 O. strigicollis의 발육과 산란수를 $25\pm$$1^{\circ}C$, RH60-80%, 16L:8D 조건에서 조사하였다. 약충기간 중 생존율과 발육기간은 목화진딧물 급여시 81.6%와 11.6일, 점박이응애 급여시 56.7%와 14.6일, 긴털가루응애 급여시 42.3%와 16.5일 이었으며, 성충기간 중 총산란수는 목화진딧물 급여시 68.5개, 점박이응애 급여시 46.1개, 긴털가루응애 급여시 26.5개로 3종의 먹이곤충 중 목화진딧물 급여가 가장 좋은 것으로 나타났다.

  • PDF

Simulation of Sustainable Co-evolving Predator-Prey System Controlled by Neural Network

  • Lee, Taewoo;Kim, Sookyun;Shim, Yoonsik
    • 한국컴퓨터정보학회논문지
    • /
    • 제26권9호
    • /
    • pp.27-35
    • /
    • 2021
  • 인공생명체 연구는 자연 생명과 관련된 시스템이나 그 과정들, 진화 등을 평가해 다양한 응용과학 분야에 활용된다. 이러한 인공생명체의 원활한 활동을 위해 물리적 신체 설계와 행동 제어전략을 진화시키는 연구가 활발히 진행되었다. 그러나 형태와 신경망을 공진화시키는 것은 어렵기에 최적화된 움직임을 가진 인공생명체는 한 가지 형태에 한 가지 움직임만을 가지며 주변 환경 상황은 고려하지 않는 것이 대부분이다. 본 논문에서는 포식자-피식자 모델을 이용하여 형태와 신경망을 공진화하는 인공생명체가 환경적응형 움직임을 갖게 한다. 그런 다음 포식자-피식자 계층 구조를 최상위 포식자-중간 포식자-최하위 피식자 3단계로 확장하여 초기 개체군 밀도에 따라 시뮬레이션의 안정성을 판별하며 형태 진화와 개체군 역학 간의 상관관계를 분석한다.

Ecophysiology of the kleptoplastidic dinoflagellate Shimiella gracilenta: I. spatiotemporal distribution in Korean coastal waters and growth and ingestion rates

  • Ok, Jin Hee;Jeong, Hae Jin;Kang, Hee Chang;Park, Sang Ah;Eom, Se Hee;You, Ji Hyun;Lee, Sung Yeon
    • ALGAE
    • /
    • 제36권4호
    • /
    • pp.263-283
    • /
    • 2021
  • To explore the ecophysiological characteristics of the kleptoplastidic dinoflagellate Shimiella gracilenta, we determined its spatiotemporal distribution in Korean coastal waters and growth and ingestion rates as a function of prey concentration. The abundance of S. gracilenta at 28 stations from 2015 to 2018 was measured using quantitative real-time polymerase chain reaction. Cells of S. gracilenta were detected at least once at all the stations and in each season, when temperature and salinity were 1.7-26.4℃ and 9.9-35.6, respectively. Moreover, among the 28 potential prey species tested, S. gracilenta SGJH1904 fed on diverse prey taxa. However, the highest abundance of S. gracilenta was only 3 cells mL-1 during the study period. The threshold Teleaulax amphioxeia concentration for S. gracilenta growth was 5,618 cells mL-1, which was much higher than the highest abundance of T. amphioxeia (667 cells mL-1). Thus, T. amphioxeia was not likely to support the growth of S. gracilenta in the field during the study period. However, the maximum specific growth and ingestion rates of S. gracilenta on T. amphioxeia, the optimal prey species, were 1.36 d-1 and 0.04 ng C predator-1 d-1, respectively. Thus, if the abundance of T. amphioxeia was much higher than 5,618 cells mL-1, the abundance of S. gracilenta could be much higher than the highest abundance observed in this study. Eurythermal and euryhaline characteristics of S. gracilenta and its ability to feed on diverse prey species and conduct kleptoplastidy are likely to be responsible for its common spatiotemporal distribution.

Lack of mixotrophy in three Karenia species and the prey spectrum of Karenia mikimotoi (Gymnodiniales, Dinophyceae)

  • Jin Hee Ok;Hae Jin Jeong;An Suk Lim;Hee Chang Kang;Ji Hyun You;Sang Ah Park;Se Hee Eom
    • ALGAE
    • /
    • 제38권1호
    • /
    • pp.39-55
    • /
    • 2023
  • Exploring mixotrophy of dinoflagellate species is critical to understanding red-tide dynamics and dinoflagellate evolution. Some species in the dinoflagellate genus Karenia have caused harmful algal blooms. Among 10 Karenia species, the mixotrophic ability of only two species, Karenia mikimotoi and Karenia brevis, has been investigated. These species have been revealed to be mixotrophic; however, the mixotrophy of the other species should be explored. Moreover, although K. mikimotoi was previously known to be mixotrophic, only a few potential prey species have been tested. We explored the mixotrophic ability of Karenia bicuneiformis, Karenia papilionacea, and Karenia selliformis and the prey spectrum of K. mikimotoi by incubating them with 16 potential prey species, including a cyanobacterium, diatom, prymnesiophyte, prasinophyte, raphidophyte, cryptophytes, and dinoflagellates. Cells of K. bicuneiformis, K. papilionacea, and K. selliformis did not feed on any tested potential prey species, indicating a lack of mixotrophy. The present study newly discovered that K. mikimotoi was able to feed on the common cryptophyte Teleaulax amphioxeia. The phylogenetic tree based on the large subunit ribosomal DNA showed that the mixotrophic species K. mikimotoi and K. brevis belonged to the same clade, but K. bicuneiformis, K. papilionacea, and K. selliformis were divided into different clades. Therefore, the presence or lack of a mixotrophic ability in this genus may be partially related to genetic characterizations. The results of this study suggest that Karenia species are not all mixotrophic, varying from the results of previous studies.

Dietary composition of two coexisting bat species, Myotis ikonnikovi and Plecotus ognevi, in the Mt. Jumbong forests, South Korea

  • Sungbae Joo;Injung An;Sun-Sook Kim
    • Journal of Ecology and Environment
    • /
    • 제47권4호
    • /
    • pp.168-176
    • /
    • 2023
  • Background: Many insectivorous bats have flexible diets, and the difference in prey item consumption among species is one of the key mechanisms that allows for the avoidance of interspecies competition and promotes coexistence within a microhabitat. In Korea, of the 24 bat species that are known to be distributed, eight insectivorous bats use forest areas as both roosting and foraging sites. Here, we aimed to understand the resource partitioning and coexistence strategies between two bat species, Myotis ikonnikovi and Plecotus ognevi, cohabiting the Mt. Jumbong forests, by comparing the differences in dietary consumption based on habitat utilization. Results: Upon examining their dietary composition using the DNA meta-barcoding approach, we identified 403 prey items (amplicon sequence variants). A greater prey diversity including Lepidoptera, Diptera, Coleoptera, and Ephemeroptera, was detected from M. ikonnikovi, whereas most prey items identified from P. ognevi belonged to Lepidoptera. The diversity index of prey items was higher for M. ikonnikovi (H': 5.67, D: 0.995) than that for P. ognevi (H': 4.31, D: 0.985). Pianka's index value was 0.207, indicating little overlap in the dietary composition of these bat species. Our results suggest that M. ikonnikovi has a wider diet composition than P. ognevi. Conclusions: Based on the dietary analysis results, our results suggests the possibility of differences in foraging site preferences or microhabitat utilization between two bat species cohabiting the Mt. Jumbong. In addition, these differences may represent one of the important mechanism in reducing interspecific competition and enabling coexistence between the two bat species. We expected that our results will be valuable for understanding resource partitioning and the coexistence of bats inhabiting the Korean forests.