바이오 그린 기능수는 지하수 순수화→처리 촉매제 첨가→에너지 imprinting→여과 과정을 거쳐 제조되는 미약 에너지 발생 신소재로서 10년생 사과 쓰가루/M26 품종의 수관하부에 1995년 4월 20일, 5월 20일 및 6월 20일 ‘바이오 그린’ 기능수를 주당 0, 5, l0l씩 관주 처리하여 얻어진 결과는 다음과 같다. 사과원 토양의 화학적 특성에 있어서 무처리구의 pH 5.73에 비하여 기능수 처리구는 pH 6.31-6.43이었고, 기능수 처리에 의하여 치환성 Ca 및 Mg 함량이 증가되었다. 한편 P2 O5, K 및 B 함량은 차이가 인정되지 않았다. 기능수 처리에 의하여 수확기 사과 과실의 당함량과 과피의 안토시아닌 함량이 증가되었고, Ca 함량이 현저히 증가되었다. 그러나 N, K, Mg는 처리간에 차이가 없었다. 기능수가 처리된 사과의 수체특성에 있어서 뿌리활력과 잎의 광합성 능력이 향상되었다. 과실 저장중 (4℃) 기능수 처리구의 과실은 고두병 발생이 현저히 감소되었고, 호흡과 에틸렌 발생량이 상대적으로 적었으며, 높은 과실 경도를 나타냄으로써 과실 저장력이 향상되었다.
To investigate the partitioning of newly absorbed N derived from NO3 - and NH4 + , 6 mM K15 NO3 or 3 mM (15 NH4 )2 was fed continuously in Italian ryegrass (Lolium multiflrum L.) for 7 days. Nitrogen metabolites (nitrate, amino acid, soluble- and insoluble protein) were analyzed at the end of 15 N feeding. Dry weight in shoot, stubble and root was not significantly different between NO3 [-10] and NH4 + feeding. Total nitrogen content in all three organs was significantly higher in NH4 + than NO3 [-10] feeding. Sum on N content in reduced N fractions (amino acids + proteins) in shoot, stubble and roots in NH4 + feeding increased by 13.3, 12.5 and 35.4 %, respectively, compared to NO3 [-10] feeding. The Relative Specific Activity (RSA, percentage of newly absorbed 15 N relative to total N in a sample) values of amino acids and insoluble proteins were significantly higher in NH4 + feeding. Total amount of newly absorbed 15 N in NO3 [-10] and NO3 [-10] feeding was 52.3 and 69.5 mg/plant on dry matter basis, respectively. In both NH4 + and NO3 [-10] grown plants, most of the N was allocated to the shoot, 67.5% in NH4 + feeding and 58.8% NO3 [-10] feeding, respectively. The 15 N amount incorporated in the reduced N compounds (amino acids and proteins) in NH4 + grown plants significantly increased by 74.8% compared to NO3 [-10] grown plants. The increase of the 15 N amount assimilated to amino acids in NH4 + grown plants was remarkably higher in roots as more than 7.25 times compared to NO3 [-10] feeding. These results indicated that Italian ryegrass was much efficiently utilized NH4 + -N for the synthesis of reduced N compounds.reduced N compounds.
To investigate of C and N metabolisms in response to phosphorus-deficient stress during regrowth of Italian ryegrass (Lolium multiflorum L.), C and N metabolites were analyzed at 0, 6, 12 and 24 days after defoliation. P-sufficient (control, +P) and P-absent (-P) nutrient solutions were applied from 7 days before defoliation, and continued for one cycle of 24 day-regrowth period. During 24 days of regrowth, dry matter of regrowing shoots and remaining tissues were not significantly different between +P and -P treatment. In remaining stubble, 70% to 91 % decline of the initial level (at day 0) in all C compounds occurred during the first 6 days of regrowth. Initial amounts of nitrate and amino acids in roots were significantly higher in the +P medium. Nitrate contents in stubble in the +P medium significantly decreased for the first 12 days and then rapidly recovered, while that of the -P medium continuously decreased until day 24. Amino acids in stubble in the P medium were continuously increased during the whole regrowth period. Soluble proteins in stubble in the +P medium also largely fell down (46.0% of the initial) for only the first 6 days, however the decline in the -P medium continued until day 12. In regrowing shoots, the accumulation of C compounds was significantly higher, while that of N compounds except amino acids was largely lower in the -P medium. These results showed a stimulation of carbohydrate synthesis and a compensatory utilization of organic reserves occurred to support regrowth under P-deficient condition.