• 제목/요약/키워드: Zea mays

검색결과 362건 처리시간 0.044초

Imazapyr 유도체의 제초활성에 미치는 3-(N-methyl-N(X)-치환-Phenylaminooxoacetyl) Group의 영향 (Influence of 3-(N-methyl-N-X(Sub.)Phenylaminooxoacetyl) Group on the Herbicidal Activity of Imazapyr Derivatives)

  • 성낙도;유택승;장해성;김대황
    • Applied Biological Chemistry
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    • 제37권6호
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    • pp.516-521
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    • 1994
  • 새로운 17종의 imazapyr 유도체인 3-(N-methyl-N(X)-치환-phenylaminooxoacetyl)-2-(4-isopropyl-5-oxo-2-imidazoline-2-yl)pyridine, 6을 합성하고 3-(N-methyl-N(X)-치환-phenylaminooxoacetyl group중의 X-치환기 변화에 따른 구조와 옥수수(Zea mays L.)와 참비듬(Amaranthus viridis L.)에 대한 발아 전의 제초활성에 미치는 관계(SAR)를 검토 한 바, 옥수수의 경우에는 MR상수의 적정값(optimal value)이 $5.56\;cm^3/mol$이었으므로 이 값보다 크거나 작을수록 제초활성이 작았다. 참비듬의 경우에는 $L_1$상수의 적정값이 3.34 A이므로 이 값에 가까울수록 제초활성이 클 것임을 알 수 있었다. 특히, 2,5-difluoro group 치환체, 6i는 참비듬에 가장 큰 제초활성을 나타내었으나 옥수수에는 가장 작은 제초활성을 미치므로써 현저하게 두 초종간에 선택성을 나타내는 화합물이었다.

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Effect of ABA on Disassembly of Chloroplast during Senescence in Detached Leaves of Zea mays

  • Lee, Dong-Hee;Seo, Young-Hee;Kim, Young-Sang
    • Environmental Sciences Bulletin of The Korean Environmental Sciences Society
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    • 제3권3호
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    • pp.177-188
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    • 1999
  • The effect of ABA on the chloroplast disassembly of Zea mays was investigated by measuring the changes in the relative distribution of chlorophyll(Chl) between the Chl-protein complexes in ABA treated and untreated sensecting leaves. The reaction center(RC)-light harvesting complex(LHC) regions were rapidly disassembled in the late stage of dark-induced senescence. Plus, during dark-induced senescence, the disassembly of a reaction center of P700 apoproteins containing mainly Chl a was faster than that of a reaction center of LHCI apoproteins containing both Chl a and Chl b. The increase in the relative distribution of Chl-protein complexes in the RC-Core2 in the late stage of senescence was due to the accumulation of core complexes such as CP47/43 and reaction centers including D1/D2 apoproteins disassembled from the RC-Corel containing the dimer of D1/D2 apoproteins. The LHCII region was more stable than the other Chl-protein complexes throughout leaf senscence. Accordingly, it is suggested that the preferential breakdown of Chl a gives rise to the disassembly of Chl a-binding proteins, particularly reaction centers and core complexes during dark-induced senescence, plus the primary target of the photosynthetic apparatus in sensecing leaves would seem to be Chl a along with the proteins associated with Chl a. The application of ABA promoted the disassembly of the P700 apoproteins in the PSI reaction center and the dimer of D1/D2 apoproteins, and the conversion of the trimeric LHCII apoprotein to the monometirc LHCII apoprotein during the middle stage of leaf senescence, thereby suggesting that ABA accelerates the disassembly of both Chl a-binding and Chl a+b-binding proteins, particularly Chl a-binding proteins during the middle stage of leaf senescence.

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