• 제목/요약/키워드: Seed protein

검색결과 832건 처리시간 0.024초

Lipoxygenase, Kunitz Trypsin inhibitor, 7Sα′-subunit 단백질이 결핍된 콩 계통의 선발 (Selection of Lipoxygenase, Kunitz Trypsin inhibitor and 7Sα′-subunit Protein Free Soybean Strain)

  • 성미경;김경록;박정수;한은희;남진우;정종일
    • 농업생명과학연구
    • /
    • 제44권5호
    • /
    • pp.29-33
    • /
    • 2010
  • 콩은 식물성 단백질 및 지방의 주요 공급원이고 콩 종실에는 기능성 성분이 많이 함유되어져 있어 소비가 점차 증가하고 있지만 Lipoxygenase, Kunitz Trypsin inhibitor, $7S{\alpha}^{\prime}-subunit$ 단백질과 같은 성분들이 존재하는데 이는 품질과 영양가치를 떨어뜨리고 섭취시 알러지를 일으키기도 한다. 콩에서 유전적으로 이러한 성분이 결핍되어져 있는 유전자형의 선발은 품질이 우수한 콩 육종의 기초단계이다. "개척2호"와 PI506876의 교배로부터 434개의 $F_2$종자를 얻어 $F_2$종자의 일부를 사용하여 SDS-PAGE로 각각의 종자를 분석한 결과 Lipoxygenase와 Kunitz Trypsin inhibitor 및 7S의 ${\alpha}^{\prime}-subunit$ 단백질이 모두 결핍되어져 있는 lx1lx1lx2lx2lx3lx3titicgy1cgy1 유전자형을 가진 종자를 선발하여 $F_2$식물체로 길러 성숙 후 $F_3$종자를 수확하였다. $F_3$종자로부터 Lipoxygenase, Kunitz Trypsin inhibitor, $7S{\alpha}^{\prime}-subunit$ 단백질이 모두 결핍되어져 있음을 재확인하였으며 선발된 종자는 고품질 콩 품종 육성에 유용하게 활용될 것으로 기대된다.

폐기종실(廢棄種實)의 식량자원화(食糧資源化)에 관(關)하여 제(第) 4 보(報) : 고추씨의 화학적(化學的) 조성(組成) (Studies on the Development of Food Resources from Waste Seeds IV. Chemical Composition of Red Pepper Seed)

  • 윤형식;권중호;배만종;황주호
    • 한국식품영양과학회지
    • /
    • 제12권1호
    • /
    • pp.46-50
    • /
    • 1983
  • 고추씨의 지질(脂質) 및 단백질(蛋白質)을 식량자원(食糧資源)에 이용(利用)할 목적(目的)으로 실험(實驗)한 결과(結果)는 다음과 같다. 1. 고추씨의 일반성분중(一般成分中) 조지방(粗脂肪)은 27.67%, 조단백질(粗蛋白質)은 22.24%였다. 2. 고추씨 기름에는 중성지질(中性脂質)이 95.41%이나 복합지질(複合脂質)은 4.59에 불과하였으며, 중성지질(中性脂質)의 성분(成分)으로는 트리 - 글리세리드가 85.60%, 스테롤 에스터 4.99%, 유리(遊離) 지방산(脂肪酸) 3.39, 디 - 글리세리드 2.45%, 스테롤 2.24% 및 모노 - 글리세리드가 1.33%였다. 3. 지방산(脂肪酸) 조성(組成)은 리놀레산(57.11~75.39%), 팔미트산(13.87~21.31%) 및 올레산(8.04~15.08%)이 주(主) 지방산(脂肪酸)이었고, 당지질(糖脂質)에서는 1.74%의 리놀레산과 미리스트산 및 알라키드산이 소량(少量)씩 검출(檢出)되었다. 4. 염(鹽) (1.0M $MgSO_4$) 용해성(溶解性) 단백질(蛋白質)의 추출율(抽出率)은 약(約) 25.0%, 아미노산(酸) 조성(組成)은 글루탐산과 아르지닌이 비교적(比較的) 높은 함량(含量)이었다. 5. 고추씨 단백질(蛋白質)의 전기영동(電氣泳動) 결과(結果) 6개의 밴드를 나타내었고, 분획(分劃)된 주(主) 단백질(蛋白質)의 수율(收率)은 약(約) 62.2%였으며, 아미노산(酸) 조성(組成)은 글루탐산(19.88%)이 가장 높고, 글라이신, 아라닌등의 순(順)으로 높은 함량(含量)이었다. 6. 염용해성(鹽溶解性) 단백질(蛋白質)에서 분획(分劃)된 주(主) 단백질(蛋白質)의 분자량(分子量)은 약(約) 93.000이었다.

  • PDF

폐엽종실(廢棄種實)의 식량자원화(貪糧資源化)에 관(關)하여 -제(第) 1 보(報) : 포도씨의 화학적(化學的) 조성(組成)- (Studies on the Development of Food Resources from Waste Seeds -I. Chemical Composition of Grape Seed-)

  • 윤형식;권중호;황주호;최재춘;신대휴
    • 한국식품과학회지
    • /
    • 제14권3호
    • /
    • pp.250-256
    • /
    • 1982
  • 미이용(未利用) 폐엽종자(廢葉種字)를 식량자원(貪糧資源)에 이용(利用)하기 위(爲)한 기초자료(基礎資料)를 얻기 위(爲)하여 포도씨의 지방질(脂肪質) 성분(成分)과 단백질(蛋白質) 성분(成分)을 검토(檢討)한 결과(結果)는 다음과 같다. 1. 포도씨의 일반성분중(一般成分中) 조지방(粗脂肪)은 25.1%, 조단백질(粗蛋白質)은 12.0%였다. 2. 포도씨 기름에는 중성지방질(中性脂肪質)이 95.46%이나 복합지방질(複合脂肪質)은 약(約) 4.5%에 불과하였으며, 중성지방질(中性脂肪質)의 성분(成分)으로써는 91.89%가 트리-글리세리드였고, 스테롤에스터, 스테롤, 디-글리세리드 및 유리 지방산은 각각(各各) 3.24% 2.87%, 1.20% 및 0.80%였다. 3. 지방산(脂肪酸) 조성(組成)은 총지방산(總脂肪酸)과 중성지방질(中性脂肪質)에서 리놀레산$(69.72{\sim}71.72%)$과 올레산$(18.09{\sim}19.46%)$이 주지방산(主脂肪酸)이었고, 총지방질(總脂肪質)과 인지질(燐脂質)은 올레산$(20.20{\sim}35.27%)$과 팔미트산$(26.80{\sim}39.98%)$의 함량(含量)이 비교적(比較的) 높았으며, 중성지방질(中性脂肪質)에서 분별(分別)한 트리-글리세리드의 지방산(脂肪酸) 조성(組成)은 올레산이 43.08%로 가장 늪은 함량(含量)이었다. 4. 염(鹽)$(0.1\;M\;MgSO_4)$ 용해성(溶解性) 단백질(蛋白質) 의 추출율(抽出率)은 약(約) 31%, 아미노산(酸) 조성(組成)은 글루탐산이 가장 높은 함량(含量)이었고 다음이 아르기린, 아스파르트산의 순(順)이었다. 5. 포도씨 단백질(蛋白質)의 전기영동(電氣泳動) 결과(結果) 3개의 밴드를 나타내었고, 분획(分劃)된 주단백질(主蛋白孫)의 수득율(收得率)은 약(約) 82%였으며, 아미노산(酸) 조성(組成)은 글루탐산, 아스파르트산 및 아르기린의 순(順)으로 높은 함량(含量)이었다. 6. 염용해성(鹽溶解性) 단백질(蛋白質)에서 분획(分劃)된 주단백질(主蛋白孫)의 분자량(分子量)은 약(約) 81,000이었다.

  • PDF

인삼(人蔘)(Panax ginseng)의 종자형성(種子形成)에 따른 배유세포(胚乳細胞)의 딕티오좀 및 Spherosome 형성 (Formation of Dictyosome and Spherosome in Endosperm Cells of Panax ginseng during seed Formation)

  • 유성철;김우갑
    • Applied Microscopy
    • /
    • 제21권2호
    • /
    • pp.117-125
    • /
    • 1991
  • This study has been carried out to investigate the development of dictyosome, and roles of dictyosome about the formation of spherosome in the endosperm cell during seed formation of Panax ginseng with electron microscope. The result is as follows; In the endosperm cells of early stage during seed formation of Panax ginseng, plastid, mitochondria, endoplasmic reticulum, dictyosome and ribosomes are evenly distributed in cytoplasm. Electron lucent vesicles derived from dictyosome are observed in endosperm cells. Vesicles that contain low electron density are derived from forming face of dictyosome and releases into the cytosol. This vesicles formed multi vesicular body or fused with the plasma membrane. The spherical spherosomes are formed from dictyosome containing the lipid materials of even electron density and are gradually increased in size and number. Dictyosome is located in between vacuole and spherosome and it's cisternae form a semicircle and a circle. Some membrane of the protein body that accumulate the storage protein are originate from the spherical vacuole which interfused between vesicles and vacuoles derived from dictyosome.

  • PDF

Antitumor Activity of Crude Sesaminol in Sesame Seed

  • Ryu, Su-Noh;Lee, Bong-Ho
    • 한국작물학회지
    • /
    • 제43권3호
    • /
    • pp.168-171
    • /
    • 1998
  • Sesaminol in sesame seed was postulated to have antitumor activity. The present study was performed to characterize the role of crude sesaminol extracted from sesame seed (Sesame Crude Sesaminol; SCS) on inhibiting the in vitro growth of human leukemia HL-60 cells. SCS inhibited the growth of human leukemia HL 60 cells in culture and macromolecular synthesis in a dose and time dependent manner. The cytostatic range of SCS concentration was found to be 60 to 100 $\mu\textrm{g}$/ml. SCS concentration greater than 200 $\mu\textrm{g}$/mlwere cytocidal to HL-60 cells. When SCS concentraction was 6 $\mu\textrm{g}$/mland 50 $\mu\textrm{g}$/ml the synthesis of HL-60 cells was inhibited by 35% for DNA, 6% for RNA and 5% for protein and 83% for DNA, 76% for RNA and 60% for protein. Of specific interest was the irreversible effect of SCS in inhibiting DNA synthesis of HL-60 cells. This was evidenced from the fact that, even after washed with PBS three times, preincubated HL-60 cells still showed the inhibited DNA synthesis.

  • PDF

Anatomical and Histochemical Changes in Berries of Piper nigrum L.

  • Kuriachen, P.M.;Dave, Yash
    • Journal of Plant Biology
    • /
    • 제32권1호
    • /
    • pp.11-21
    • /
    • 1989
  • Anatomical and histochemical changes taking place in Piper nigrum berries during their ripening are described. The important observations on the pericarp are the development of sclereids in the exocarp, a continuous band of oil cells in mesocarp and the wall thickening of the endocarpic cells. The mature seed with a single layer of seed coat, representing the innermost tegment layer, encloses abundant perisperm. The endosperm and embryo are situated laterally at the terminal part of the seed. The perisperm is distinguished into an outer protein-rich zone and inner starch-filled zone. Starch and protein are also deposited in the mature pericarpic tissue. Lipid bodies are seem in the form of oil globules in oil cells.

  • PDF

Grapefruit 종자 추출물의 항균작용 및 미생물 생리기능에 미치는 영향 (Antimicrobial activities and effect of grapefruit seed extract on the physiological function of microorganism)

  • 김영록;조성환
    • 한국식품저장유통학회지
    • /
    • 제3권2호
    • /
    • pp.187-193
    • /
    • 1996
  • To investigate the antimicrobial activities and effect of grapefruit seed extract(GFSE) on the physiological function of microorganism, antimicrobial activity, fatty acids of bacterial cell lipid and amino acids of bacterial cell protein were measured. The change of cell morphotype was observed by transmission electron microscope. GFSE was very stable on the wide range temperture and pH. The growth rate of E. coli and B. suvtilis were decreased above 40ppm GFSE There fore, minimum inhibitory concentration (MIC) of the E. coli and B. subtilis to GFSE were determined around 40ppm. In the change of fatty acids quantities, hexadecanoate was significantly decreased on the treatment compared with control in case of E. coli, whereas tridecanoate was not detected in case of B. subtilis. In the change of amino acids quantities, alanine, glutamic acid, glycine, lysine were decreased on the treatment compared with control in case of E. coli and B. subtilis Transmission electron microsgraphs(TEM) showed the microbial cells were destroyed by GFSE.

  • PDF

종자발아에 있어서 Protein Profile과 Isozyme에 관한 연구 (Studies on Protein Profiles and Isozymes in Germinating Seeds)

  • 권오용
    • Journal of Plant Biology
    • /
    • 제17권4호
    • /
    • pp.143-156
    • /
    • 1974
  • The purpose of this experiment was to study one side of germination physiology based on that protein profiles and protease relating to protein metabolism, that peroxidase, catalase, $\alpha$-amylase, $\beta$-amylase, and malate dehydrogenase involved in the carbohydrate metabolism of seed germination. All these experiments were divided into the two groups with and without acetone treatment, and were carried out. The protein bands of each germinating stage between the groups treated with and without acetone showed certain basic pattern in polyacrylamide gel disc electrophoresis. However, there was a little difference in the number of protein band, optical density, and migration velocity between two groups. The isozyme bands of peroxidase, and catalase between two groups in polyacrylamide gel disc electrophoresis did not show the numeral difference, but the optical density of certain germinating stage treated with acetone was higher than the group untreated with it and it showed their enzyme activity. The $\alpha$-amylase and $\beta$-amylase activities which involved in starch metabolism of seed germination were higher in the treated group than the other. On one hand, the protease activity of hydrolase occurred in the seeds for germination was also higher, more or less in the treated group than in the other. The isozyme band pattern of malate dehydrogenase in TCA cycle of energy metabolism pathway was very different between two groups growing for 72 hours with and without acetone treatment in cellulose acetate electrophoresis. It indicated that two isozyme bands of malate dehydrogenase was high. Consequently these experimental results mentioned above indicated that acetone treatment before sowing had an effect on dissolving certain complexed lipid substance involved in the seed coats, the activity of carbohydrate hydrolase increased with water absorption which was most comfortable in its germination, dissolved glycerin and fatty acid became certain energy source, and they stimulated the acceleration of respiration metabolism.

  • PDF

발아의 경과에 따른 참깨 종실내 주요성분의 변화 (Changes of Major Componets During Germination of Sesame (Sesamum indicum L.) Seeds)

  • 김현경;정대수
    • 생명과학회지
    • /
    • 제8권2호
    • /
    • pp.137-144
    • /
    • 1998
  • These studies were undertaken to investigate changes of major components occuring during germination of sesame (Sesamum indicum L.) seeds, Changes of total lipid and protein contents, and fatty acid composition were determined. Also, the correponding values of various components in cotyledons, hypocotyls and roots were measured according to germination stage. The results were summarized as follows; During germination, total lipid and protein contents decreased. In particular, protein contents rapidly decreased to the 3 days after gemination(DAG), and then total lipid contents rapidly decreased. In changes of total lipid and protein of cotyledons, hypocotyles and roots detected at the 10, 15 and 20 DAG, some variations were determined. The contents of lipid and protein in hypocotyls rapidly decreased, but since than no changes were observed. In contract, in roots similar changes patterns were observed, while since 15 DAG a rapidly increase was wxamined. In fatty acid composition of total lipid ,saturatedmfatty acids such as palmitic acid increased during the germination. On the other hand, unsaturated fatty acid such as olic acid and linoleic acid decreased during the same periods. In changes of fatty acid composition of total lipid of cotyledons, hypocotlys and roots, saturated fatty acids such as palmitic acid and stearic acid increased during the germination. However, linoleic acid decreased during the same germination suggesting that this may be due to the rapid degradation. However, linoleic acid decreased during the same periods. According to SDS-PAGE analysis, there was no detectible polypeptide bands on the gel before seed germination suggesting that this may be due to the rapid degradation of the storage peotein in the mature seed by hydrolytic enzymes during the stag. As germination continued polypeptide bands, one with 40KD, two with 32∼34Kd and one with 24KD, were detected on the gel.

  • PDF

Inheritance between Le Gene and Ti Gene in Soybean (Glycine max L.)

  • Lee, Kyoung Ja;Park, Mo Se;Sung, Mi Kyung;Kim, Myung Sik;Chung, Jong Il
    • 한국육종학회지
    • /
    • 제40권2호
    • /
    • pp.97-100
    • /
    • 2008
  • Lectin protein and Kunitz trypsin inhibitor (KTI) protein of mature soybean seed are a main antinutritional factor in soybean seed. The Le gene controls a lectin protein and Ti gene controls the KTI protein in soybean. Ti locus has been located on linkage group 9 in the classical linkage map of soybean. Position of Le locus on linkage map was not identified. Genetic relationship between Ti locus and Le locus could be useful in soybean breeding program for the genetic elimination of these factors. The objective of this study was to determine the independent inheritance or linkage between Ti locus and Le locus in soybean seed. Two $F_2$ populations were developed from three parents (Gaechuck#1, T102, and PI548415). The $F_1$ seeds from Gaechuck#1 (titiLeLe) ${\times}$ T102 (TiTilele) and Gaechuck#1 (titiLeLe) ${\times}$ PI548415 (TiTilele) were obtained. The lectin and KTI protein were analysed from $F_2$ seeds harvested from the $F_1$ plants to find independent assortment or linkage between Ti locus and Le locus. The segregation ratios of 3 : 1 for Le locus (129 Le_ : 44 lele) and Ti locus (132 Ti_ : 41 titi) and were observed. The segregation ratios of 9 : 3 : 3 : 1 (95 Le_Li_ : 34 Le_titi: 37 leleTi_ : 7 leletiti) between Le gene and Ti gene in $F_2$ seeds were observed. This data showed that Ti gene was inherited independently with the Le gene in soybean. These results will be helpful in breeding program for selecting the line with lacking both KTI and lectin protein in soybean.