토양부식산(土壤腐植酸)의 형태별(形態別) Amino 산(酸) 함량(含量)에 관(關)한 연구(硏究)

A Study on the Amino Acid Components Soil Humus Composition

  • 발행 : 1988.09.30

초록

토양부식산(土壤腐植酸) 형태(形態)(Rp, B, A, P)별(別) 부식산(腐植酸)과 fulv 산중(酸中) amino 산(酸)의 함량(含量)과 조성(組成)을 규명코자 부식산(腐植酸)과 fluv산(酸)을 각각(各各) 분수(分雖) 정렬(精裂)하여 분석(分析)해 얻은 결과(結果)를 요약(要約)하면 다음과 같다. 1. 부식(腐植)의 조방(粗放) 전부식량(全部植量)$(H_T)$, 부식산량(腐植酸量)(a), fulv 산량(酸量)(b), 색조계수(色調係數)$({\Delta}logK)$$Rp{\rightarrow}B{\rightarrow}A{\rightarrow}P$형(型)으로 갈수록 적어졌고 전질소(全窒素) 전탄소(全炭素)도 같은 경향이었다. 2. 부식산중(腐植酸中) amino 산(酸)의 함량(含量) 및 조성(組成) 가. 부식산(腐植酸)의 형태별(形態別) 전(全) amino 산(酸)의 함량(含量)은 침엽수(針葉樹) 임토양(林土壤)에서는 Rp>B>A>P형(型)의 순(順)이었으나 활엽수(闊葉樹) 임토양(林土壤)에서는 P>A>Rp>B형(型)의 순(順)이었다. 전(全) amino산(酸)과 부식조성(腐植組成)과의 관계(關係)에서 침엽수림토양(針葉樹林土壤)에서 전탄소(全炭素)${\Delta}logK$와는 정(正)의 상관(相關)이 있었고 C/N율(率)과는 부(負)의 상관(相關)이 있었다. 활엽수림토양(闊葉樹林土壤)에서는 유의상관(有意相關)이 없었다. 나. 형태문(形態問) 산성(酸性), 중성(中性), 염기성(鹽基性) amino 산(酸)의 함량비(含量比)는 침엽수림토양(針葉樹林土壤)에서 산성(酸性) amino 산(酸)은 P>Rp>B>A 형(型)의 순(順), 중성(中性) amino 산(酸)은 Rp>B>A>P형(型)의 순(順), 염기성(鹽基性) amino 산(酸)은 B>A>Rp>P형(型)의 순(順)이었다. 함량(含量)은 중성(中性)>산성(酸性)>염기성(鹽基性) anomi 산(酸)의 순(順)이었다. 활엽수림토양(闊葉樹林土壤)에서는 산성(酸性) amino 산(酸) A>P>B>Rp형(形)의 순(順), 중성(中性) amino 산(酸)은 P>Rp>A>B 형(形)의 순(順), 염기성(鹽基性) amino 산(酸)은 $$P{\geq_-}$$ A > $$B{\geq_-}Rp$$형(形)으로 근소한 차이였다. 다. 형태별(形態別) 각(各) amino 산(酸) 함량(含量)에서는 전체적으로 aspartic acid, glycine, glutamic acid 가 많았고 histidine, tyrosine, methionine이 적었다. 3. Fulv 산중(酸中) amino 산(酸)의 함량(含量) 및 조성(組成) 가. 형태별(形態別) 전(全) amino 산(酸)의 함량(含量)은 두 토양(土壤) 공(共)히 Rp>B>P>A 형(形)의 순(順)이었다. 침엽수림토양(針葉樹林土壤)에서 전(全) amno산(酸)과 전탄소(全炭素), ${\Delta}logK$와 정(正)의 상관(相關)이 있었고 활엽수림토양(闊葉樹林土壤)에서는 전질소(全窒素), 전부식량(全腐植量)$(H_T)$, 부식산량(腐植酸量)(a), 색조계수(色調係數)$({\Delta}logK)$와는 정(正)의 상관(相關)이 있었고 C/N율(率)과는 부(負)의 상관(相關)이 있었다. 나. 형태문(形態問) 산성(酸性), 중성(中性), 염기성(鹽基性) amino 산(酸)의 함량비(含量比)는 두 토양(土壤) 공(共)히 Rp>B>P>A형(形)의 순(順)이었다. 다. 형태문(形態問) 각(各) amino 산(酸)의 함량(含量)을 비교(比較)할 때 전체적(全體的)으로 glycine, aspartic acid, alanine 이 많았고 tyrosine, methionine은 적었고 arginine은 거의 측정되지 않았다.

Contents and distribution of amino acids in the humic acid and fulvic acid fractions of different types ($R_p$, B, A, P) were investigated. Extracted humic and fulvic acids were purified and analyzed. The results are summarized as the following: (1) Composition of Humus The total humus ($H_T$), amount of humic acid (a), amount of fulvic acid (b), and ${\Delta}logK$ all decrease in the order of $R_p$ > B > A > P type. The same trend was observed in the total nitrogen and carbon. (2) Contents and composition of amino acids in humic acids. 1) The total amounts of amino acids in the humic acid fraction of different types were in the following order for soils under coniferous forest trees: $R_p$ > B > A > P type, but for soils under deciduous forest trees the order was P > A > $R_p$ > B type. There were positive correlationships between total amino acids and total carbon and ${\Delta}logK$ for humic acids from soils under coniferous forest trees, but a negative correlationship was existed. between total amino acids and C/N ratios. No significant correlation was found for samples taken from soils under deciduous forest trees. 2) The ratios of one group of amino acids to the others were compared. The ratios of acidic amino acids were in the order of P > $R_p$ > B > A type. those of neutral amino acids followed the order of $R_p$ > B > A > P type and those of the basic amino acids were in the order of B > A >$R_p$ > P type for soils under coniferous forest trees. Contents of total amino acids were in the order of the neutral > the acidic > the basic amino acids. For the soils under deciduous forest trees the order of the ratio was different. Acidic amino acids followed the order of A > P > B > $R_p$ type, neutral ones followed the order of P > $R_p$ > A > B type, and the basic amino acids did the order of $$P{\geq_-}$$ A > B $$\geq_-$$ $-R_p$ type where the difference was very small. 3) In general aspartic aicd, glycine and glutamic acid were the major components in all samples. Histidine, tyrosine and methionine belonged to the group contained in a small amount. (3) Contents and composition of amino acids in fulvic acids. 1) The total amounts of amino acids of different types of fulvic acids were in the order of $R_p$ > B > P > A type regardless of origin of samples. There were positive correlationships observed between the toal amino acids and total carbon and ${\Delta}logK$ for soils under coniferous forest trees. For soils under deciduous forest trees, positive correlationships were observed among total amino aicds, total nitrogen, total humus ($H_T$), total humic aicd (a), and ${\Delta}logK$, but a negative correlationship existed between total amino acids and C/N ratio. 2) Thr ratio among acidic amino acids, neutral amino acids and basic amino acids of different types were $R_p$ > B > P > A type. In this respect there was no difference between the two soils. 3) In general glycine, aspartic acid, and alanine were the major constituents in all samples of different types, while tyrosine and methionine were contained in a small amount. Virtually no amount of arginine was measured.

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