• Title/Summary/Keyword: Seed storage protein

검색결과 103건 처리시간 0.019초

Proteomic Approach of the Protein Profiles during Seed Maturation in Common Buckwheat (Fagopyrum esculentum Moench.)

  • Park, Min-Hwa;Shin, Dong-Hoon;Han, Myoung-Hae;Yun, Young-Ho;Bae, Jeong-Sook;Lee, Yun-Sang;Chung, Keun-Yook;Lee, Moon-Soon;Woo, Sun-Hee
    • 한국자원식물학회지
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    • 제22권3호
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    • pp.227-235
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    • 2009
  • Single seeds of common buckwheat cultivar Suwon No. 1 when subjected to SDS-PAGE revealed very high polymorphism. High variation existed for protein or protein subunits with molecular weight 54-47kDa, 45-25kDa and 16-11kDa. The electrophoregram showed variation for globulin as well as other protein fractions. About 300 proteins were separated by two-dimensional electrophoresis in common buckwheat (Fagopyrum esculentum Moench.) seed. Seed maturation is a dynamic and temporally regulated phase of seed development that determines the composition of storage proteins reserves in mature seeds. Buckwheat seeds from 5, 10, 15, 20, and 25 days after pollination and matured stage were used for the analysis. This led to the establishment of high-resolution proteome reference maps, expression profiles of 48 spots. It was identified 48 proteins from MALDI-TOF/MS analysis of wild buckwheat seed storage proteins. The 48 proteins were found identical or similar to those of proteins reported in buckwheat and other plants; it is belonging to 9 major functional categories including seed storage proteins, stress/defense response, protein synthesis, photosynthesis, allergy proteins, amino acid, enzyme, metabolism, and miscellaneous. It appears that the major allergenic storage protein separated played the important role in buckwheat breeding and biochemical characterization.

Effects of Sulfur Nutritional Forms on Accumulation of Seed Storage Proteins in Soybean (Glycine max)

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    • 한국자원식물학회지
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    • 제10권3호
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    • pp.221-226
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    • 1997
  • Improvement of seed protein quality might be an essential issus in soybean and would give more profit directly to both farmers and users. This study was carried out to investigate the effects of reduced-S form(s) on seed storage protein components in soybean during seed filling stages. The reduced-S forms during seed fill were sodium thiosulfate, sodium sulfite, sodium sulfide, thioaceteat, $\beta$-mercaptoethanol, thiourea, thiamine-HCI, L-cysteine, L-cystine, and L-methionine. Seed storage protein concentration did not appear to be affected by any reduced-S forms. However, glycinin and $\beta$-conglycinin concentration seemed to be changed greatly by L-methionine. This resulted in the increase in the 11S/7S ratio(3.58). Among the $\beta$-conglycinin, $\beta$-subunit was not accumulated at all. $\alpha$-subunit concentration appeared to be decreased and $\alpha'$-subunit concentration was not altered in comparison with sulfate control. Also, $\beta$-conglycine concentration, especially $\beta$-subunit concentration, tended to be decreased with L-cystine treatment, resulting in an increase in the 11S/7S ratio(1.83). The glycinin concentration tended to be increased at the expense of the decrease in the $\beta$-conglycinin concentration. Therefore, it is suggested that enhancing soybean protein quality would be achieved by improving metabolic pathways of S assimilation in soybean plants during seed filling period under sulfate-sufficient condition.

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Interrelation between N and S Nutrition on Accumulation of Storage Protein in Soybean Seed

  • Paek, Nam-Chon;Richard Shibles
    • Plant Resources
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    • 제1권2호
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    • pp.113-120
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    • 1998
  • Soybean is an important crop because its seed has very high protein relative to others. The quality of soy protein is limited by the concentration of the sulfur-containing amino acids in the amino acid profile. Among the supply of various forms of 0.4mM sulfur as S nutrition during seed fill. only 0.4mM L-methionine can inhibit ${\beta}$-subunit synthesis completely and produce the highest glycinin-containing seeds. Compared to 0.4mM sulfate control, seeds supplied by 0.4mM L-methionine have lower ${\alpha}$-, no ${\beta}$-subunit, and highly increased glycinin without altering total protein concentration. Supply of 0.2mM cystine (0.4mM S) did not affect the accumulative pattern of seed storage protein (SSP) subunits. In the supply of L-methionine, 0.2mM treatment showed higher glycinin in seeds but 0.05mM resulted in lower glycinin than tile sulfate control. The relative abundance of ${\alpha}^`$-subunit was not altered by any N or S nutrition. Under 5mM nitrogen, protein concentration was increased about 3-5% by substituting ammonia for nitrate during seed fill independent of nutrition. The increase resulted in the only increase of 7S protein, mainly ${\beta}$-subunit. Our data suggest that the regulatory system of SSP genes responds to the balance between N and S assimilates supplied from mother plant. and controls the di fferential synthesis of their subunits for the maximum protein accumulation in developing soybean seed.

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콩 돌연변이 계통의 단백질 특성 (Seed Protein Quality of Soybean Mutants)

  • 양무희
    • 한국작물학회지
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    • 제39권3호
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    • pp.278-284
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    • 1994
  • 콩단백질의 황 아미노산함량은 가축 영양학상 중요한 위치를 차지하기 때문에 신계통이 가져야만 할 필수조건일지도 모른다. 콩 계통간에 저장단백질의 유전적변이가 존재한다면 이는 기존의 육종방법을 통하여 콩의 종자단백질 구성성분을 유전적으로 변경하여 품질을 개량할 수 있는 가능성을 시사하고 있다. 본 연구는 여러 문헌에 보고된 콩종자 저장단백질의 돌연변이 계통들을 선별하여 콩단백질의 품질을 향상시키기 위한 육종 재료로서의 가능성을 평가하기 위하여 실행되었다. 수집된 돌연변이 계통들은 저장단백질의 또 다른 특성을 나타내었다. 그 돌연변이 계통들 중에서 Keburi(P.I.417016), Keburi(P.I.506817), P.I.154608-1 등은 황 아미노산 함량이 상대적으로 다른 돌연변이 계통보다 높은 1.9, 2.1, 1.8%를 나타내었으며, 이는 7S 단백질인 ${\alpha}$ ', ${\alpha}$ , ${\beta}$단백질 함량이 상대적으로 낮기 때문인 것으로 나타났다. 그러므로 그 돌연변이 계통들 중에서 Keburi(P.I.417016), Keburi(P.I.506817), P.I.54608-1 등은 황 아미노산 함량을 향상시키기 위한 중요한 육종재료로, 그 외 돌연변이 계통들은 다른 용도의 육종 재료로 이용할 수 있을 것으로 추측된다.

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Changes of Chemical Components During Seed Development in Black Soybean (Glycine max L.)

  • Shim Sang In;Kang Byeung Hoa
    • 한국작물학회지
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    • 제49권4호
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    • pp.331-336
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    • 2004
  • Changes in the level of metabolites in leaves and pods were examined with respect to the seed chemical composition in black soybean. There was no further increase in pod length after 42 days after flowering (DAF). Pod weight, however, persistently increase until 73 DAF, thereafter the weight was slightly lowered. The seed storage protein, however, increased drastically as the increasing rate of pod weight was lessened at 61 DAF. The accumulation of seed storage proteins was occurred conspicuously as the increasing rate of pod weight was slowed down. The chlorophyll content both in leaves and pods was drastically decreased after 50 DAF. The beginning of drastic reduction in chlorophyll content was occurred concomitantly with the reduction of soluble protein content in leaves. The sugar content in leaves showed similar tendency with chlorophyll and soluble protein content. The starch level in leaves, however, showed different changing pattern during seed development. The starch content in leaves was increased persistently until 66 DAF, thereafter the content was decreased drastically to about $55\%$ of maximal value at 66 DAF. Total phenolics content in leaves and the anthocyanins content in seeds were stable without noticeable increase until 66 DAF. The contents were increased dramatically after 66 DAF showing the synchronized pattern with the decrease in starch level in leaves. The levels of the selected metabolites in leaf and seed suggested that the accumulation of chemical components of black soybean seed is launched actively at 66 DAF. The profile of storage proteins was nearly completed at 61 DAF because there was no large difference in densitometric intensity among protein subunits after 61 DAF. In soybean, chemical maturation of seed begins around 61 to 66 DAF at which most metabolites in vegetative parts are decreased and remobilized into maturing seeds.

Immunocytochemical Localization of Storage Protein in Pea (Pisum sativum) Cotyledon

  • Yu, Seong-Cheol;Lee, Chang-Seob;Kim, Woo-Kap
    • Journal of Plant Biology
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    • 제39권2호
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    • pp.123-126
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    • 1996
  • The pattern of seed storage protein, vicilin, deposition and site of intracellular localization was examined in cotyledon cells of pea (Pisum sativum) seed using the immunocytochemical methods. The vicilin was confined to the cisternae fo the rough endoplasmic reticulum and dictyosome as well as protein granules newly formed in rough endoplasmic reticulum. Vacuolar protein deposites and protein bodies were also labelled by gold particles. After small protein bodies were formed in the rough endoplasmic reticulum, they were transported to large protein bodies and then fused together. Electron dense protein granule, elaborated in the dictyosome, appears to be transported from dictyosome to protein body. A few unlabelled protein granules seem to be accumulated in other type of proteins than vicilin.

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완두 자엽에서 소포체 말단의 팽창에 의한 단백과립 발달 (Terminal Dilation and Transformation of the Protein-filled ER to Form Protein Bodies in Pea (Pisum sativum L. var, exzellenz) Cotyledons)

  • 정병갑
    • Applied Microscopy
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    • 제29권4호
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    • pp.499-509
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    • 1999
  • 완두 종자에 축적되는 저장물질은 주로 전분과 단백질로서 이러한 저장물질 때문에 고정이나 전자현미경 관찰시료를 제작하기가 쉽지 않다. 따라서 자엽을 얇게 절편을 만들고 효소를 사용하여 단일세포로 분리한 다음 고정하여 관찰하였다. 완두의 저장단백질이 축적되는 단백질 저장 액포는 종자발달의 이른 시기에 기존의 액포를 둘러싸고 발달하게 되므로서 액포는 수축되고 단백질 저장 액포는 점점 발달하여 그 가장자리에 단백질 덩어리가 축적되게 된다. 이와는 별도로 종자발달의 이른 시기에 조면소포체의 내강에 전자밀도가 높은 단백질이 축적되기 시작하여 늦은 시기에 이 소포체의 끝이 부풀어서 구형의 단백과립으로 발달하였다. 완두종자의 저장단백질은 주로 vicilin과 legumin으로서 단백과립에 대한 면역세포화학적 방법으로 확인한 결과 vicilin은 세포질에 발달된 작은 단백과립과 단백질 저장액포의 가장자리에 축적된 단백질 덩어리에 모두 반응하였으나 legumin은 세포질의 단백과립에만 반응하였다. 또한 소포체에 존재하는 단백질인 Bip은 단백질 저장액포에 축적된 단백질 덩어리의 안쪽 가장자리에만 반응하였다. 이는 단백질이 활발하게 축적되고있는 시기에 특징적으로 작용하는 Bip의 기능과 관련되는 것으로 사료된다.

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인삼 종자의 저장단백질에 관한 면역 세포화학적 연구 - Tris 완충액 가용성 단백질 - (An Immunocytochemical Study on Storage Proteins of Ginseng Seed - Tris Buffer Soluble Protein -)

  • 김우갑
    • Applied Microscopy
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    • 제19권2호
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    • pp.74-84
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    • 1989
  • 인삼 종자의 배유조직에서 Tris 완충액 가용성 저장단백질을 추출한 후 전기 영동적 분석으로 분리하여 $SP_{1}$(MW=160,000)과 $SP_2$(MW=70,000)의 두가지 저장단백질을 정제하였다. 이 두가지 저장단백질을 항원으로 사용하여 토끼에 피하주사하여 항체를 얻었으며, 이 항체를 이용하여 면역 세포화학적 금입자표지법을 실시한 결과, $SP_1$$SP_2$ 모두 구형의 protein body내에 산재하여 있음을 확인되었으며, globoid에는 이러한 두가지 단백질중 어느 것도 함유되어 있지 않는 것으로 나타났다. 또한 각각의 protein body에 함유된 $SP_1$$SP_2$의 상대적 함량에는 서로 차이가 있음이 확인되었다.

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A Systematic Proteome Study of Seed Storage Proteins from Two Soybean Genotypes

  • Cho, Seong-Woo;Kwon, Soo-Jeong;Roy, Swapan Kumar;Kim, Hong-Sig;Lee, Chul-Won;Woo, Sun Hee
    • 한국작물학회지
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    • 제59권3호
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    • pp.359-363
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    • 2014
  • Soybean seed is a good source of plant protein in human consumables such as baby formula and protein concentrate. The seeds contain an abundance of storage proteins, namely ${\beta}$-conglycin and glycinin that account for ~ 70-80% of the total seed protein content. Proteome profiling has been proved to be an efficient way that can help us to investigate the seed storage proteins. In the present study, the seeds were removed from the pods and the cotylendonary tissues were separated from the testa for proteome analysis in order to investigate the seed storage proteins. A systematic proteome profiling was conducted through one-dimensional gel electrophoresis followed by MALDI-TOF-TOF mass spectrometry in the seeds (cotyledonary tissue) of soybean genotypes. Two dimensional gels stained with CBB, a total of 10 proteins were identified and analyzed using MASCOT search engine according to the similarity of sequences with previously characterized proteins along with the UniProt database. A total of ten proteins such as glycinin Gy4 precursor, glycinin G3 precursor, glycinin G1 precursor, glycinin chain A2B1a precursor, glycinin chain A2B1a precursor were identified in our investigation. However, the glycinin subunit may be considered to play important roles in soybean breeding and biochemical characterization. In addition, the improved technique will be useful to dissect the genetic control of glycinin expression in soybean.

Systematic Studies of 12S Seed Storage Protein Accumulation and Degradation Patterns during Arabidopsis Seed Maturation and Early Seedling Germination Stages

  • Li, Qing;Wang, Bai-Chen;Xu, Yu;Zhu, Yu-Xian
    • BMB Reports
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    • 제40권3호
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    • pp.373-381
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    • 2007
  • Seed storage proteins (SSPs) are important for seed germination and early seedling growth. We studied the accumulation and degradation profiles of four major Arabidopsis 12S SSPs using a 2-DE scheme combined with mass spectrometric methods. On the 2-DE map of 23 dpa (days post anthesis) siliques, 48 protein spots were identified as putative full-length or partial $\alpha$, $\delta$ subunits. Only 9 of them were found in 12 dpa siliques with none in younger than 8 dpa siliques, indicating that the accumulation of 12S SSPs started after the completion of cell elongation processes both in siliques and in developing seeds. The length and strength of transcription activity for each gene determined the final contents of respective SSP. At the beginning of imbibition, 68 SSP spots were identified while only 2 spots were found at the end of the 4 d germination period, with $\alpha$, subunits degraded more rapidly than the $\alpha$ subunits. The CRC $\delta$ subunit was found to degrade from its C-terminus with conserved sequence motifs. Our data provide an important basis for understanding the nutritional value of developing plant seeds and may serve as a useful platform for other species.