• 제목/요약/키워드: major intrinsic protein (MIP)

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Characterization of a Tomato (Lycopersicon esculentum Mill.) Ripening-associated Membrane Protein (TRAMP) Gene Expression and Flavour Volatile Changes in TRAMP Transgenic Plants

  • Kim Seog-Hyung;Ji Hee-Chung;Lim Ki-Byung
    • Journal of Plant Biotechnology
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    • 제7권2호
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    • pp.87-95
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    • 2005
  • The tomato ripening associated membrane protein (TRAMP) (Fray et al., 1994) is a member of the major intrinsic protein (MIP) family, defined as channels facilitating the passage of water and small solutes through membranes. During normal fruit ripening the TRAMP mRNA levels were increased whereas the expression levels of TRAMP in low ethylene ACO1-sense suppressed lines, Nr and rin fruits, were lower than at the breaker stage of wild type fruit. TRAMP mRNA is inhibited by $LaCl_3$, which is an inhibitor of $Ca^{2+}$-stimulated responses, treatment but drought condition did not affect TRAMP expression. The levels of TRAMP mRNA transcripts were substantially higher in the dark treated seedlings and fruits. These suggest that TRAMP function as a water channel may be doubted because of several reasons; no water content was changed during ripening in wild type, antisense and overexpression lines, TRAMP expression under light condition was lower than dark condition and TRAMP expression was not changed in drought condition. Co-suppression plant, 3588 was one of sense suppression lines, which contain CaMV 35S promoter and sense pNY507 cDNA, produced small antisense RNA, approximately 21-25 nucleotides in length, mediated post-transcriptional gene silencing. Therefore, TRAMP expression was inhibited by small antisense and multiple copies might induce gene silencing without any production of double strand RNA. Total seven selected volatile productions, isobutylthiazole, 6-methyl-5-hepten-2-one, hexanal, hexenal methylbutanal, hexenol, and methylbutanol, were highly reduced in sense line whereas total volatile production was increased in TRAMP antisense line. These results suggested TRAMP might change volatile related compounds.

사상성 진균 Aspergillus nidulans에서 아쿠아포린 유전자 aqpA의 분리 및 분석 (Identification and Characterization of the Aquaporin Gene aqpA in a Filamentous Fungus Aspergillus nidulans)

  • 오동순;육함연;한갑훈
    • 미생물학회지
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    • 제47권4호
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    • pp.295-301
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    • 2011
  • 아쿠아포린(aquaporin)은 MIP (Major Intrinsic Protein) 패밀리에 속하는 물 수송 채널(water transport channel) 단백질로 단세포 생물인 박테리아부터 다세포 고등생물인 인간에 이르기까지 다양한 기관계에서 잘 보존되어 있다. 아쿠아포린은 정통아쿠아포린(orthodox aquaporin)과 아쿠아글리세로포린(aquaglyceroporin)으로 구분되는데, 정통아쿠아포린은 주로 세포내의 물 유입 및 수송에 관여하며 아쿠아글리세로포린은 glycerol, polyol, urea를 비롯한 작은 비극성 분자의 수송에 관여하는 것으로 알려져 있다. 최근까지 효모에서 아쿠아포린 기능이 일부 밝혀졌지만 Aspergillus 속을 포함하는 사상성 진균에서는 거의 연구가 되어있지 않은 실정이다. 본 연구에서는 A. nidulans의 유전체 염기서열 정보를 분석하여 하나의 정통아쿠아포린(aqpA)과 네 개의 아쿠아글리세로포린(aqpB-E)을 발견하였다. 이를 바탕으로 aqpA 유전자 결실돌연변이들을 만들어 그 기능을 분석하였다. aqpA 결실돌연변이는 각종 삼투 스트레스(osmotic stress)에서는 표현형의 변화가 거의 관찰되지 않았으며 이는 이들 유전자가 삼투 스트레스에 반응하지 않거나 유전자의 중복성 때문으로 여겨진다. 그러나 항진균제인 fluconazol에 대해서 그 감수성이 적어지는 것이 관찰 되었다. 이는 aqpA 유전자가 삼투스트레스 반응보다 항진균제의 감지에 더 기능을 가지고 있을 수 있음을 시사한다.

Molecular Characterization of Silicon (Si) Transporter Genes, Insights into Si-acquisition Status, Plant Growth, Development, and Yield in Alfalfa

  • Md Atikur Rahman;Sang-Hoon Lee;Yowook Song;Hyung Soo Park;Jae Hoon Woo;Bo Ram Choi;Ki-Won Lee
    • 한국초지조사료학회지
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    • 제43권3호
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    • pp.168-176
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    • 2023
  • Silicon (Si) has the potential to improve plant growth and stress tolerance. The study aimed to explore Si-involving plant responses and molecular characterization of different Si-responsive genes in alfalfa. In this study, the exogenous supplementation of Si enhanced plant growth, and biomass yield. Si-acquisition in alfalfa root and shoot was higher in Si-supplemented compared to silicon deficient (-Si) plants, implying Si-acquisition has beneficial on alfalfa plants. As a consequence, the quantum efficiency of photosystem II (Fv/Fm) was significantly increased in silicon-sufficient (+Si) plants. The quantitative gene expression analysis exhibited a significant upregulation of the Lsi1, Lsi2, Lsi3, NIP5;1, and NIP6;1 genes in alfalfa roots, while BOR1, BOR4, NIP2, and NIP3 showed no significant variation in their expression. The MEME results further noticed the association of four motifs related to the major intrinsic protein (MIP). The interaction analysis revealed that NIP5;1 and Lsi1 showed a shared gene network with NIP2, BOR1, and BOR4, and Lsi2, Lsi3 and NIP3-1, respectively. These results suggest that members of the major intrinsic proteins (MIPs) family especially Lsi1, Lsi2, Lsi3, NIP5;1, and NIP6;1 genes helped to pass water and other neutral solutes through the cell membrane and those played significant roles in Si uptake and transport in plants. Together, these insights might be useful for alfalfa breeding and genome editing approaches for alfalfa improvement.

사람과 흰쥐의 고환에서 Aquaporin 유전자의 발현 (Molecular Identification and Distribution of Aquaporins in Human and Rat Testes)

  • 박남철;박영수;오금수;정진섭
    • Clinical and Experimental Reproductive Medicine
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    • 제27권2호
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    • pp.133-144
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    • 2000
  • Objective: Several water channels (aquaporins; AQP) that belong to the MIP (major intrinsic protein) family have identified. In the selected tissues including red blood cells or renal tubules, water movements are abundant and/or physiologically important. Unexpectedly, a high water permeability of human and ram sperm has been reported. Recent studies showed that AQP7 and AQP8 are present in testes, so that the high water permeability of human sperm suggested to be mediated by AQPs. Method: To identify the identity of aquaporins expressed in testes, RT-PCR was performed using degenerative primers, which were designed to correspond to highly conserved sequences surrounding the Asn-Pro-Ala (NPA) motifs in the aquaporins. New expressed AQP series were reconfirmed by immunohistochemical study using rabbit polyclonal antibodies. Results: DNA sequencing of PCR products revealed that AQP2 and AQP3 mRNA as well as AQP7 and AQP8 are expressed in human and rat testes. In human and rat testes, AQP2 are expressed in spermatozoa, interstitial cells and myofibroblasts and AQP3 are expressed in myofibroblasts of semineferous tubules on immunocytochemical stain. Conclusion: These results indicate that multiple aquaporins are expressed in testes, and that they may have important roles in the spermatogenesis and the germ cell function of testis.

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