• Title/Summary/Keyword: Aplysia kurodai

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Composition of the Stomach Contents and Marine Algal Flora Around Sea Hare Aplysia kurodai Habitats in the East and South Coast of Korea (동해와 남해 연안에 서식하는 군소(Aplysia kurodai) 서식지 주변의 해조상과 위 내용물 조성)

  • Min-Ju Kim;Nam-Gil Kim
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.56 no.1
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    • pp.66-78
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    • 2023
  • The sea hare Aplysia kurodai is an economic species located along the Korean coast. This study aimed to investigate the stomach contents of A. kurodai and its relationship with marine algal flora surrounding their habitat. A. kurodai and marine algae were sampled in seven and five areas in the East and the South seas, respectively. The marine algae found in the stomach and surrounding marine habitat were identified. In the East Sea of Korea, 134 species of seaweed were recorded. Thirty-nine species of marine algae were identified in the stomach contents of A. korudai collected from the East Sea of Korea. Seventy-five species of seaweed were collected in the South Sea of Korea. In addition, 26 species of marine algae were identified in the stomach contents of A. kurodai from the South Sea of Korea. Among the stomach contents of A. kurodai, ten sheet,12 filamentous, 27 coarsely branched, and one jointed calcareous form species were identified.

A Study on the Dyeing of Silk Fabrics Treated with Aplysia kurodai Extract (군소 추출색소를 이용한 견직물의 염색성에 관한 연구)

  • Kim, Hyun-Mi;Kim, Sang-Bum;Jang, Ae-Ran
    • Korean Journal of Human Ecology
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    • v.21 no.4
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    • pp.791-803
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    • 2012
  • This study intends to identify applicability of natural dye extracted from Aplysia kurodai, aiming to standardization of Aplysia kurodai natural dyeing through scientific validation by analyzing characteristics of pigment elements to review dyeability, colorfastness and antibacterial activity. Such material as silk fabrics that is animal fiber were used for this purpose, and derived following summarized results. UV/VIS spectrum analysis on the pigment of Aplysia kurodai that was extracted from purple gland showed that maximum absorbtion was near 540 nm. The silk fabric optimal dyeing can be achieved at a temperature of $55^{\circ}C$ with a colorant concentration of 5%. Dyed at $55^{\circ}C$ with interval of 10~90 minutes for identifying dye uptake over time to observed slow increase of dye uptake over time, and equilibrium occurred at 50 minutes. For dye uptake according to pH, while dye uptake was superior in acidity, it decreased rapidly in a base after pH 7. For color changes according to pH variation, it was reddish purple in acidity and was purplish red in a base. For color changes according to mordanting method, more clear color change had been obtained when process with aluminium pre-mordanting than non-mordanting and post-mordanting. The colorfastness to light, perspiration and washing was 1, 4~5, and 3~4 ratings respectively. The silk fabric dyed with Aplysia kurodai demonstrated excellent antimicrobial activity to Staphylococcus aureus and Klebsiella pneumoniae. The Aplysia kurodai can be used as a new colorant for the natural dyeing of silk.

Gonadal Development and Reproductive Cycle of Sea Hare Aplysia kurodai in Jeju Coastal Waters

  • Lee, Chi-Hoon;Kaang, Bong-Kiun;Lee, Young-Don
    • Development and Reproduction
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    • v.15 no.3
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    • pp.257-263
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    • 2011
  • Gonadal development and reproductive cycle of Aplysia kurodai inhabiting the coastal waters of Jeju Island, Korea were investigated based on monthly changes of gonadosomatic index, gametogenesis, and developmental phases of ovotestis. A. kurodai was simultaneous hermaphrodite; the ovotestis generally embedded in the posterior dorsal surface of the brownish digestive gland. The ovotestis is composed of a large number of follicles, and both oocytes and sperm are produced in the same follicles. In the sampling periods, the adult A. kurodai population have characteristic of seasonal pattern present during only 10 months. The reproductive cycle can be grouped into the following successive stages in the ovary: inactive (December to February), active (December to April), mature and spawning (April to September). The gonadal development of A. kurodai coincided with rising temperature, and spawning occurred from April to September, when the temperature was high. The histological observations of the ovotestis suggested that this species have a single spawning season that extend over six months.

Immune Regulating Effect of Polysaccharide Fraction from Sea Hare (Aplysia kurodai) (군소(Aplysia kurodai)에서 추출한 다당 분획물의 면역 조절 효과)

  • Park, Si-Hyang;Choung, Se-Young;Choi, Yeung-Joon
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.40 no.3
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    • pp.372-378
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    • 2011
  • We extracted polysaccharide from the sea hare, Aplysia kurodai, purified it partially, and experimented its immune response using the human blood lymphocytes and macrophage cell lines. Aplysia kurodai polysaccharide fraction (APF) improved the growth of the T cell (Jurkat) up to 40% by treatment for 48 hours, and decreased the growth of blood cancer, Jiyoye cell line. The APF on RAW 264.7 cell also increased interleukin-12 up to 47%. In contrast, the secretion of interleukin-2 and interferon-gamma by treatment of only APF or APF and concanavalin A on Jurkat for 24 hours and 48 hours didn't influence significantly. These results suggest that the APF has possible immune regulating ability.

Two Patients of Acute Liver Damage following the Ingestion of a Sea Hare Eggs (군소 알을 섭취한 후 발생한 급성 독선간염 2예)

  • Lee, Won-Jae;Lim, Hyun-Sul
    • Journal of agricultural medicine and community health
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    • v.30 no.2
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    • pp.241-249
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    • 2005
  • Herein, two patients of acute toxic hepatitis occurred to persons had eaten Aplysia kurodai and their eggs. The authors report 2 patients of acute toxic hepatitis with reviews of the clinical features. One patient had gathered Aplysia kurodai and it's eggs from Ulleungdo sea shore on May 17, 2003. He ate with boiling the eggs. This patient developed acute toxic hepatitis and symptoms of aplysianin poisoning, such as abdominal pain, nausea, vomiting and watery diarrhea about 10 and half hours after ingestion. The other patient had gathered Aplysia kurodai and its egg from Ulleungdo sea shore on 16 May 2004, which were consumed without boiling the eggs. This patient developed acute toxic hepatitis and symptoms of aplysianin poisoning, such as abdominal pain, nausea, vomiting and watery diarrhea, about 10 and half hours after ingestion. This patient complained of jaundice and pruritus, about 10 days after ingestion. The 2 patients all improved within 15~25 days with conservative treatment. This is the first significant report of acute toxic hepatitis caused by aplysianin poisoning following the consumption of Aplysia kurodai and their eggs in Korea. The clinical features, management and preventive counterplan of acute toxic hepatitis caused by aplysianin poisoning are also presented.

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Screening of cDNAs Encoding Secreted and Membrane Proteins in the Nervous System of Marine Snail Aplysia kurodai

  • Kim, Min-Jeong;Chang, Deok-Jin;Lim, Chae-Seok;Park, Woo-Jin;Kaang, Bong-Kiun
    • Animal cells and systems
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    • v.7 no.2
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    • pp.133-137
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    • 2003
  • Secreted proteins and membrane proteins play key roles in the formation, differentiation, and maintenance of multicellular organisms. In this study, we undertook to characterize these protein types in the central nervous system of the marine snail Aplysia kurodai using a yeast-based signal sequence trap method. One hundred and three cDNA clones were obtained by screening 300,000 clones from the signal sequence trap cDNA library. Of these, twelve were identical to previously identified Aplysia genes, 19 were related to known proteins in other organisms, and 54 clones were novel. These 54 new genes had high signal peptide scores or were found likely to contain a transmembrane domain sequence. Only 18 of the 103 clones proved to be false positive. The study demonstrates that the signal sequence trap method is an effective tool for Isolating Aplysia genes encoding secreted and membrane proteins.

Spawning Behavior and Egg Development of Aplysia kurodai Inhabiting the Coastal Waters of Jeju Island, Korea

  • Lee, Chi-Hoon;Kaang, Bong-Kiun;Lee, Young-Don
    • Development and Reproduction
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    • v.18 no.1
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    • pp.25-31
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    • 2014
  • This study was investigated spawning behavior, structure of egg masses and egg development in Aplysia kurodai inhabiting the coastal waters of Jeju Island, Korea. The mating and courtship behavior of A. kurodai occurred in the form of unilateral copulating with chain formation. In chain copulation, only the first animal acted as a female; the second and succeeding animals acted as males (sperm donors) to the animals in front and as females to the animals behind. The fertilized eggs were packaged in capsules that are embedded in jelly to form a cylindrical string called an egg masses. The number of capsule per cm of the egg masses was 55 to 60 capsules and each capsule within the egg masses held 15 to 25 eggs. After spawning, the egg masses were bright yellow or orange in color. This egg masses color not changed until embryos developed into trochophore stage. Thereafter, as embryo developed from trochophore stage to veliger stage the egg masses color became brownish. The fertilized eggs were spherical, with a diameter of approximately $80{\pm}1{\mu}m$ at spawning. At 5 to 6 days after spawning, the embryo developed into trochophore stage and began to rotate within the egg capsule. In the trochophore stage, the precursor of the velum, called the prototroch or prevelum, developed. At 10 days after spawning, the prevelum is transformed into the velum, and the trochophore developed into veliger stage. Between 10 to 15 days after spawning, the veligers broke out of the egg capsule, and hatched as free-swimming larvae.

Structure and Function of the Reproductive System of Aplysia kurodai

  • Lee, Chi-Hoon;Kaang, Bong-Kiun;Lee, Young-Don
    • Development and Reproduction
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    • v.19 no.4
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    • pp.197-207
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    • 2015
  • This study investigated structure and function of the reproductive system in Aplysia kurodai by means of anatomical, histological, and histochemical observation. Reproductive system of this species is consisted of ovotestis, small hermaphroditic duct, ampulla, accessory genital mass and large hermaphroditic duct. The ovotestis is composed of a large number of follicles, and both oocytes and spermatocytes matured in the same follicle. The small hermaphroditic duct is a single tube and contains a swelling, the ampulla, which functions as a storage organ for endogenous sperm and an oviduct. The accessory genital mass is connected to both the small and large hermaphroditic duct, and consisted of three glands: albumen, membrane (winding) and mucus gland. The albumen gland is consisted of granular cells producing basophilic and neutral mucopolysaccharides. The membrane and mucus gland are consisted of granular cells producing acidophilc and sulfated mucopolysaccharides. The large hermaphroditic duct is a single tubular gonoduct linking the accessory genital mass to the common genital aperture but is consisted of two parallel compartments. Internally, these two compartments are incompletely divided by internal septum or fold, which are called as the red hemiduct and white hemiduct, respectively. The red hemiduct functions as an oviduct and the white hemiduct functions as a copulatory duct. The reproductive system of A. kurodai is externally comprised a single tube, i.e., monaulic type. However, internal structure of duct is incompletely divided into oviduct and copulatory duct, i.e., the oodiaulic type.