• 제목/요약/키워드: Stay-green mutant

검색결과 6건 처리시간 0.021초

Agronomic characteristics of stay-green mutant derived from an early-maturing rice variety 'Pyeongwon'

  • Won, Yong-Jae;Ji, Hyeon-So;Ahn, Eok-Keun;Lee, Jeong-Heui;Jung, Kuk-Hyun;Lee, Sang-Bok;Hong, Ha-Cheol;Hyun, Ung-Jo;Ha, Woon-Goo;Kim, Myeong-Ki;Kim, Byeong-Ju
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.72-72
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    • 2017
  • We found a new stay-green mutant from 'Pyeongwon' which is an early-maturing rice variety in Korea. The mutant showed green leaves after grain ripening period and it maintained higher SPAD value than wild type rice plant and original variety 'Pyeongwon'. The stay-green trait in rice, three genes have been identified up to date. The non-yellow coloring1 (NYC1) gene encodes a chloroplast-localized short-chain dehydrogenase/reductase (SDR) with three transmembrane domains. The non-yellow coloring3 (NYC3) gene encodes a plastid-localizing alpha/beta hydrolase-fold family protein with an esterase/lipase motif. The Sgr gene encodes a novel chloroplast protein and regulates the destabilization of the light-harvesting chlorophyll binding protein (LHCP) complexes of the thylakoid membranes, which is a prerequisite event for the degradation of chlorophylls and LHCPs during senescence. After sequencing the PCR products, we found a single nucleotide variation($A{\rightarrow}T$) in the NYC1 gene, which changes the amino acid lysine to methionine. The NYC1 gene encodes a short-chain dehydrogenase/reductase(SDR) protein. And we confirmed the co-segregation between SNP and stay-green trait from genotyping the progenies of the mutant.

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Leaf Senescence in a Stay-Green Mutant of Arabidopsis thaliana: Disassembly Process of Photosystem I and II during Dark-Incubation

  • Oh, Min-Hyuk;Kim, Yung-Jin;Lee, Choon-Hwan
    • BMB Reports
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    • 제33권3호
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    • pp.256-262
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    • 2000
  • In this study the disassembly process of chlorophyII (ChI)protein complexes of a stay-green mutant (ore10 of Arabidopsis thaliana) was investigated during the dark incubation of detached leaves. During this dark-induced senescence (DIS), the Chi loss was delayed in the mutant, while the photochemical efficiency of photosystem II (PSII) or Fv/Fm was accelerated when compared with the wild type (WT) leaves. This indicates that the decrease in Fv/Fm is a separate process and not causally-linked to the degradation of Chi during DIS of Arabidopsis leaves. In the native green gel electrophoresis of the Chi-protein complexes, which was combined with an additional twodimensional SDS-PAGE analysis, the delayed senescence of this mutant was characterized by the appearance of an aggregate at 1 d or 2 d, as well as very stable light harvesting complex II (LHCII) trimers until 5 d after the start of DIS. The polypeptide composition of the aggregates varied during the whole DIS at 5 d. Dl protein appeared to be missing in the aggregates. This result supports the idea of a faster depletion of functional PSH in the mutants compared with WT, as suggested by the earlier reduction of Fv/Fm and the stable Chl a/b ratio in the mutants. At 5 d, the WT leaves also often showed aggregates, but the polypeptide composition was different from those of ore10. The results presented suggest that the formation of aggregates, or stable LHCII trimers in the stay-green mutants, is a way to structurally protect Chi-protein complexes from serious proteolytic degradation. Detailed disassembly processes of Chi-protein complexes in WT and ore10 mutants are discussed.

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녹색자엽 검정콩 품종 육성을 위한 Stay green 변이체 활용 (Introduction of Stay Green Mutant for the Development of Black Seed Coat and Green Cotyledon Soybean Variety)

  • 강성택;서민정;문중경;윤홍태;이영호;김시주;황영선;이석기;정명근
    • 한국작물학회지
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    • 제55권3호
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    • pp.187-194
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    • 2010
  • 고품질 녹색자엽 검정콩 신품종 육성 연구의 일환으로 녹색자엽의 유전자원별 녹색의 정도를 평가할 수 있는 엽록소 함량 및 조성과 이들의 유전양상을 검토하고, 유전적 배경을 달리한 녹색자엽 자원을 활용한 녹색자엽 검정콩의 선발 효율을 검토한 결과를 요약하면 아래와 같다. 1. 유전적 배경이 상이한 녹색자엽 자원을 검정콩 육종프로그램에 도입코자 실시한 특성조사 결과 핵유전 녹색자엽 유전자 d1d2를 보유한 자원은 세포질 유전 녹색자엽 유전자 cytG를 보유한 자원보다 총 엽록소의 함량이 매우 높은 경향이었고, 조성에서는 d1d2 보유 자원은 엽록소 a의 함량이 엽록소 b보다 2배 이상 높고, cytG 보유 유전자원은 엽록소 b의 함량이 엽록소 a 함량 보다 높은 경향이었다. 2. 핵유전 녹색자엽 유전자(d1d2)는 당대의 종실에서 발현되어 $F_1$ 세대의 $F_2$ 종실에서부터 선발이 가능하며, 2개의 열성유전자에 지배를 받는다. 3. 녹색 종피의 핵유전 녹색자엽(d1d2)과 황색자엽 검정콩(D1D2)의 교배후대에서 검정색 종피에 녹색자엽 종자를 가진 개체는 모본의 유전적 배경에 따라 조금은 다르지만 $F_2$ 전체 개체 중 3% 미만의 낮은 비율로 나타나, 향후 핵유전 녹색자엽 검정콩 신품종 육성효율 증진을 위해서는 핵유전 녹색자엽 검정콩 중간모본 개발과 선발방법 개선이 필요할 것으로 판단된다.