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소나무 天然生林의 集團遺傳學的 硏究 Ⅰ. 過酸化同位酵素의 遺傳樣式
Y. G. PARK(朴龍求) 한국육종학회 1976 한국육종학회지 Vol.8 No.1
The genetics of four peroxidase isozyme loci (Ρχ₁H, Ρχ₂Κ, Ρχ₃Μ, Ρχ₄Ν) in Pinus densiflora were studied by starch gel electrophoresis. Two alleles, active and unactive, were found at each locus. But Ρχ₂Κ was found to be operating two alleles Ρχκ₂ (active) and Ρχο₂ (unactive) by regulating two dominant alleles R/r. Data are presented demonstrating that the Ρχ₃Μ and Ρχ₄Ν are located in the same linkage group and between Ρχ₁H and Ρχ₄Ν, Ρχ₂Κ and Ρχ₃Μ, Ρχ₂Κ and Ρχ₄Ν are related to repulsion.
Inheritance of Leucine Aminopeptidase, Esterase and Peroxidase Isozymes in Pinus koraiensis
Y. G. PARK(朴龍求) 한국육종학회 1983 한국육종학회지 Vol.15 No.2
The present paper contains a description of inheredity of leucine aminopeptidase(LAP) esterase(Est) and peroxidase(Px) isozymes in endosperm tissues(n) from germinating stage of Pinus koraiensis. Three zones of LAP activity(LAP-A, LAP-B and LAP-C) are separated in the gel. The analysis based on the banding patterns are estimated two alleles at each locus; LAP-A locus is controlled by A₁, and A₂, LAP-B locus by B₁ and B₂. and LAP-C locus by C₁ and C₀, Two esterase loci(Est-C, Est-E) assumed to be controlled by three alleles; Est-C(C₁, C₂, C₀) and Est-E(E₁, E₂, E₀). Two peroxidase loci(Px-B. Px-D) are estimated to be controlled by two alleles; Px-B(B₁, B₀) and Px-D(D₁, D₂).
Populus × alba glandulosa에 있어서 peroxidase 同位酵素의 遺傳
C.S. KIM(金鼎錫),Y.G. PARK(朴龍求),S.S. KIM(金三植) 한국육종학회 1980 한국육종학회지 Vol.12 No.3
The genetics of two peroxidase isozyme loci (Px-A, Px-B) in Populus alba×glandulosa were studied by starch gel electrophoresis. Three alleles(Bl, B2, B3) were found at Px-B locus. But Px-A locus was found to be operating two alleles A1 and A2 by regulating two dominant alleles R/r. Data are presented demonstrating that the A1 and B3 are related to repulsion.
人爲 4倍體와 2倍體아까시나무에 있어서 Isoperoxidase의 活性度
C. S. Kim(金鼎錫),S. K. Lee(李錫求),Y. G. Park(朴龍求) 한국육종학회 1973 한국육종학회지 Vol.5 No.2
The great variation of isoperoxidase band patterns in leaves and seedlings of R. pseudoacacia was observed among diploids and tetraploids, and within tetraploid individuals. There was no relation among the five phenotype in the isozyme band patterns of tetraploid. On the other hand, the closed fertilization might not be always brought out in R. pseudoacacia by judging from the variation of isoperoxidase banding patterns on the zymogram of the progenies of a parent.