• 제목/요약/키워드: morphological description

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Codium fragile subsp. fragile (Suringar) Hariot in Tunisia: morphological data and status of knowledge

  • Cherif, Wafa;Ktari, Leila;Bour, Monia El;Boudabous, Abdellatif;Grignon-Dubois, Micheline
    • ALGAE
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    • 제31권2호
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    • pp.129-136
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    • 2016
  • The Mediterranean Sea is currently facing dramatic changes and threats, including change in native species and accidental introductions. The introduced green alga Codium fragile subsp. fragile (Suringar) Hariot influences diversity and community structure in some parts of the world. This paper documents the distribution of this species in Tunisia and provides a morphological description of C. fragile subsp. fragile in Northern Tunisia. Results confirm the identity of Tunisian specimens as the invasive subspecies C. fragile subsp. fragile. This is the first morphological characterization of this subspecies in Tunisia.

Morphological description and molecular analysis of newly recorded Anneissia pinguis (Crinoidea: Comatulida: Comatulidae) from Korea

  • Kim, Philjae;Shin, Sook
    • Journal of Species Research
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    • 제9권4호
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    • pp.467-472
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    • 2020
  • The crinoid specimens of the genus Anneissia were collected from Nokdong, Korea Strait, and Moseulpo, Jeju Island. The specimens were identified as Anneissia pinguis (A.H. Clark, 1909), which belongs to the family Comatulidae of the order Comatulida. Anneissia pinguis was first described by A.H. Clark in 1909 around southern Japan. This species can be distinguished from other Anneissia species by a longish and stout cirrus, much fewer arms, and short distal cirrus segments. The morphological features of Korean specimens are as follows: large disk (20-35 mm), 28-36 segments and 32-43 mm length cirrus, division series in all 4 (3+4), very stout and strong distal pinnule with 18-19 comb and 40 arms. In Korea fauna, only three species of genus Anneissia were recorded: A. intermedia, A. japonica, and A. solaster. In this study, we provide the morphological description and phylogenetic analysis based on cytochrome c oxidase subunit I.

Further observations on the genetics and morphometrics of Coolia santacroce (Dinophyceae)

  • Karafas, Sarah J.;Tomas, Carmelo R.
    • ALGAE
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    • 제30권4호
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    • pp.275-280
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    • 2015
  • Coolia santacroce is a newly described epibenthic dinoflagellate species collected from the U.S. Virgin Islands. The original description indicates this species is unique from others in the Coolia monotis complex due to the relative size of the apical pore complex, broad range of pore sizes, and ribosomal DNA. The original description was done based on the isolation and cultivation of one isolate of the organism. In this study, we report three more isolates of Coolia santacroce collected from the Bahamas. Morphological observations were made using scanning electron microscopy that do not correspond to those from the original description, indicating the variability of the morphological features. However, analysis of the D1 / D2 regions of the large subunit rDNA places the three strains in a strongly supported monophyletic clade with the type specimen.

COI 바코딩으로 동정한 남방표문쥐치(Naso hexacanthus) 치어의 첫 형태 기재 (First Morphological Description of a Larval Sleek Unicornfish Naso hexacanthus(Acanthuridae, Perciformes) Identified by COI Barcoding in the East China Sea)

  • 최해영;최희찬;김성;오현주;윤석현
    • 한국어류학회지
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    • 제34권2호
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    • pp.119-126
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    • 2022
  • 본 연구는 동중국해에서 수집한 치어(체장 5.2 mm)의 종을 COI 바코딩을 통해 남방표문쥐치(Naso hexacanthus)로 동정하고, 형태를 처음으로 보고한다. 치어는 마름모꼴의 몸통으로 등지느러미와 뒷지느러미의 첫 극조는 길고 톱니가 나 있었다. 뒷지느러미 기저부에 네 개의 흑색소포, 미병부에 밀집한 흑색소포, 뇌 표면에 퍼져 있는 흑색소포가 있었다. 작은 가시 한 개가 각각 콧등과 눈 뒤에 있었고, 톱니 모양의 돌기가 머리, 눈 위, 전새개골 내부와 외부, 새개골 아래와 옆 부분에 발달하였다. COI 바코딩으로 동정한 남방표문쥐치 치어의 형태적 특징은 치어의 종 동정에 유용할 것이다.

Morphological description and DNA barcode information of seven newly reported nudibranch species from Korea

  • Lee, Yucheol;Nam, Eunjung;Kil, Hyun-Jong;Park, Joong-Ki
    • Journal of Species Research
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    • 제11권2호
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    • pp.102-107
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    • 2022
  • The order Nudibranchia Cuvier, 1817 is among the most colorful gastropod group that lacks an external shell and mantle cavity at their adult stage. They are widely found in the intertidal to subtidal zones of marine habitats worldwide. To date, a total of 58 species are known from Korean waters. In this study, we report seven nudibranch species that are newly reported from Korean waters and provide their color images of external body, morphological description, taxonomic remarks, and mtDNA cox1 barcode sequence information: Dendronotus primorjensis Martynov, Sanamyan & Korshunova, 2015; Doto japonica Odhner, 1936; Trinchesia ornata (Baba, 1937); Antiopella fusca (O'Donoghue, 1924); Cadlina paninae Korshunova, Fletcher, Picton, Lundin, Kashio, N. Sanamyan, K. Sanamyan, Padula, Schrodi & Martynov, 2020; Rostanga bifurcata Rudman & Avern, 1989; and Goniodoridella savignyi Pruvot-Fol, 1933.

인도산 참복과(Tetraodontidae) 어류 3종의 형태 기재 (Morphological Description of Three Species of Pufferfishes (Tetraodontidae) from India)

  • 한경호;백정익;신임수;김희진;윤병일;황재호;이성훈
    • 한국수산과학회지
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    • 제50권1호
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    • pp.77-84
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    • 2017
  • Three species of pufferfishes (family Tetraodontidae) were examined to determine their morphological characteristics based on meristics, morphometrics, olfactory organs, and lateral line systems of specimens collected from the Chennai Fish Market in Tamil Nadu, India, in December 2016. The three species, which are all previously unreported in Korea, are Chelonodon patoca (Hamilton, 1822), Lagocephalus spadiceus (Richardson, 1845), and Arothron immaculatus (Bloch and Schneider, 1801). For nostril shape, fishes of the genus Lagocephalus have two nostrils, while Arothron and Chelonodon have none. Fishes of the genera Lagocephalus and Arothron have a single well-developed lateral line on the body, while Chelonodon fishes have two lateral lines that merge on the caudal peduncle.

제주 근해에서 채집된 나망곰치, Gymnothorax minor (뱀장어목, 곰치과) 엽상자어의 분자동정 및 형태기재 (Molecular Identification and Morphological Description of Gymnothorax minor (Muraenidae, Anguilliformes) Leptocephali off Jeju Island)

  • 이승종;지환성;김진구
    • 한국어류학회지
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    • 제25권2호
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    • pp.59-64
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    • 2013
  • 한국 제주도에서 채집된 곰치과(Muraenidae) 엽상자어 2개체 (전장 36.2~69.2 mm)를 대상으로 mtDNA 12S rRNA 724 base pair 염기서열을 분석한 결과, 한국 통영에서 채집된 나망곰치(Gymnothorax minor) 성어와 100% 일치하였다. 나망곰치 엽상자어는 전체 근절수가 137~139개, 등지느러미 앞 근절수가 32개, 항문앞 근절수가 82~86개, 전장에 대한 체고가 10% 이상인 형태적 특징을 나타내었다.

미토콘드리아 전장 유전체로 동정한 아귀목 Himantolophus groenlandicus 자어의 형태적 특징 (Morphology of a Larval Atlantic Footballfish Himantolophus groenlandicus Reinhardt, 1837 (Lophiiformes: Himantolophidae) Identified by Complete Mitochondrial DNA)

  • 최해영;장요순;김성
    • 한국어류학회지
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    • 제34권1호
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    • pp.1-7
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    • 2022
  • 북서태평양 표층에서 채집한 후기 자어 (2.2 mm BL)의 미토콘드리아 전장 유전체를 근거로 Himantolophus groenlandicus로 동정하였다. 후기 자어는 둥근 몸통, 작은 이빨, 발달하기 시작한 등 지느러미, 아래 부분이 들어간 눈, 그리고 지느러미, 정수리, 등 부분에 분포하는 흑색소포를 가졌다. 이러한 특징은 크기가 유사한 동종으로 보고된 자어(2.1 mm BL)와 차이가 컸다. 본 연구 자어의 유전적, 형태적 특징은 유사종의 동정에 유용할 것이다.

Description of Spheropistha melanosoma Yaginuma, 1957 (Araneae: Theridiidae) from Korea

  • Sue Yeon Lee;Jung Sun Yoo;Chang Moon Jang;Seung Tae Kim
    • 환경생물
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    • 제41권1호
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    • pp.14-17
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    • 2023
  • A male Spheropistha melanosoma Yaginuma, 1957 from Korea in the family Theridiidae Sundevall, 1833 is described with measurements and morphological photos of the diagnostic characteristics. This species was collected with a sweep net around arable lands in a mountainous mixed forest during the investigation of spider fauna on Ulleungdo Island in 2019.

Use of the Quantitatively Transformed Field Soil Structure Description of the US National Pedon Characterization Database to Improve Soil Pedotransfer Function

  • Yoon, Sung-Won;Gimenez, Daniel;Nemes, Attila;Chun, Hyen-Chung;Zhang, Yong-Seon;Sonn, Yeon-Kyu;Kang, Seong-Soo;Kim, Myung-Sook;Kim, Yoo-Hak;Ha, Sang-Keun
    • 한국토양비료학회지
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    • 제44권5호
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    • pp.944-958
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    • 2011
  • Soil hydraulic properties such as hydraulic conductivity or water retention which are costly to measure can be indirectly generated by soil pedotransfer function (PTF) using easily obtainable soil data. The field soil structure description which is routinely recorded could also be used in PTF as an input to reduce the uncertainty. The purposes of this study were to use qualitative morphological soil structure descriptions and soil structural index into PTF and to evaluate their contribution in the prediction of soil hydraulic properties. We transformed categorical morphological descriptions of soil structure into quantitative values using categorical principal component analysis (CATPCA). This approach was tested with a large data set from the US National Pedon Characterization database with the aid of a categorical regression tree analysis. Six different PTFs were used to predict the saturated hydraulic conductivity and those results were averaged to quantify the uncertainty. Quantified morphological description was successively used in multiple linear regression approach to predict the averaged ensemble saturated conductivity. The selected stepwise regression model with only the transformed morphological variables and structural index as predictors predicted the $K_{sat}$ with $r^2$ = 0.48 (p = 0.018), indicating the feasibility of CATPCA approach. In a regression tree analysis, soil structure index and soil texture turned out to be important factors in the prediction of the hydraulic properties. Among structural descriptions size class turned out to be an important grouping parameter in the regression tree. Bulk density, clay content, W33 and structural index explained clusters selected by a two step clustering technique, implying the morphologically described soil structural features are closely related to soil physical as well as hydraulic properties. Although this study provided relatively new method which related soil structure description to soil structure index, the same approach should be tested using a datasets containing the actual measurement of hydraulic properties. More insight on the predictive power of soil structure index to estimate hydraulic properties would be achieved by considering measured the saturated hydraulic conductivity and the soil water retention.