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이춘우,竹內安智 한국국제농업개발학회 1998 韓國國際農業開發學會誌 Vol.10 No.4
農水産物 自給率은 매년 減少하고 있으며, 수입은 증가하고 있다. 농지 및 농업인구의 감소로 農業基盤이 弱化되고 있다. 葉表面wax, 寄生雜草, 生物農藥, allelopathy 등을 연구하고 있으며, 遺傳子操作作物은 8個 作物에서 수행되고 있다. 67개의 화합물질이 環境호르몬작용을 하거나 可能性이 있는 것으로 밝혀졌고, 除草劑, 殺菌제, 殺蟲劑 등 농업과 관련된 화합물은 43種이다. 그리고 麥類政策 改正이 推進되고 있다. The self supplying ratio of agricultural products is decreasing markedly every year. Whereas imports of agricultural products are increasing. Considering that the cultivated area, and the farm population is decreasing, the infra structure of agriculture nowadays is weakening as comparable to that of 30 years ago. The epicuticular waxs of several weeds, the parasitic angiosperms, the bioagrochemcals, and the allelopathy are studying. 43 chemicals among 67 endocrine disrupting chemicals are agricultural chemicals such as herbicides, fungicides, and pesticides. Transformation study is underway in 8 crops. The renovation of the policy of wheat and barley is underway.
김석정,박진희,죽내안지,김길웅,신동현,허영조 한국잔디학회 1996 한국잔디학회지 Vol.10 No.3
This experiment was conducted to investigate the loss of various herbicides by means of vola-tility from the turfgrass field and the hare ground with the different soil moisture contents and temperatures. Different herbicides were applied at the rates of 375 g a.i. /l0a of pendimethalin,250 g a.i. /l0a of napropamide, and 96.4 g a.i. /l0a of dicamba with 200 \ulcorner/10a of spray volume in the turfgrass(Zoysia japonica cut off 5cm) grown in pots(265.8 $cm^2$) and bared soil. The pots were placed in the growth chamber with 10,000 lux of light intensity(12h per day) at 25 and 35˚C for 7days. Amberlite XAD polymeric resin(20/50 mesh) was used as sampling media for herbicide airborne residues. Air flow was maintained at 10 \ulcorner /min by vacuum pump regulated with a factory calibrated flow meter. Herbicide airborne residues were extracted from the XAD resin with 300 ml of 1:1 acetone and hexane. The extracts were concentrated by rotary evaporation at 35˚C and dissolved in 1 ml MeCN for HPLC analysis. The airborne losses of the herbicide applied in the turfgrass and bare soil increased as the temperature and soil moisture contents were increased, regardless of the kinds of herbicide. Higher airborne residues was observed in the turfgrass pots than the bare soil pots. Pendimethalin and dicamba with higher vapor pressure gave rise to the increased loss of airborne herbicides, showing that 6.26 and 6.4% of average airborne loss in pendimethalin and dicamba, respectively, compared to 0.56% in napropamide. The amount of airborne losses in turfgrass was highest at one day after application and then a declined trend was observed as the time was prolonged. Key words. Herbicides, Turfgrass field, Bare ground, Volatility.
Brassinolide와 기존 식물생장조절제(植物生長調節劑)와의 상호작용(相互作用)
최충돈,죽송철부,죽내안지,김길웅,Choi, C.D.,Takematsu, T.,Takeuchi, Y.,Kim, K.U. 한국잡초학회 1987 Weed&Turfgrass Science Vol.7 No.1
새로운 식물생장조절제(植物生長調節劑)인 brassinolide와 기존(旣存) 식물생장조절물질(植物生長調節物質)과의 혼용(混用)의 효과(?果)를 우우 불배축(不胚軸)의 신장반응(伸長反應)으로 조사(調査)하여 얻어진 결과(結果)를 요약(要約)하면 다음과 같다. 1. HBR 단독처리(單獨處理)는 처리농도(處理濃度)가 0.1 에서 1.0ppm 증가(增加)할 수록 무우 하배축(下胚軸)의 신장(伸長)이 촉진(促進)되었으며 무처리(無處理)에 비(比)하여 1.0 ppm에서 60% 이상(以上) 증대(增大)시켰다. 2. GA나 BA의 단독처리(單獨處理)는 처리농도(處理濃度)에 관계(關係)없이 하배축(下胚軸) 신장(伸長)을 촉진(促進)시키지 못하였으나 IAA는 처리농도(處理濃度)가 증가(增加)할 수록 다소(多少) 증가(增加)시켰다. 3. HBR과 GA, BA 및 IAA와의 혼용(混用)은 HBR의 농도(濃度)가 증가(增加)할수록 무우 하배축(下胚軸)의 신장(伸長)의 증대(增大)시켰다. 4. HBR과 GA 및 BA와의 상호작용(相互作用)의 반응(反應)은 대체로 길항적(拮抗的)이며 HBR과 IAA와는 HBR의 0.03 ppm에서 0.3ppm과 IAA 3.0ppm에서 10.0 ppm 혼용(混用)에서 상승작용(相乘作用)을 나타냈으며 저농도(低濃度) 조합(組合)에서 5% 미만(未滿)의 길항(拮抗) 또는 상가반응(相加反應)을 보였다. 5. B-9과 CCC 단독처리(單獨處理)는 농도(濃度)가 증가(增加)할수록 무우 하배축(下胚軸)의 신장(伸長)이 억제(抑制)되었으나 HBR과 혼용(混用)하므로 신장(伸長)이 회복(回復)되었고 HBR에 의해 유도(誘導)된 신장(伸長)이 B-9에 의해서 억제(抑制)되지 않았으나 CCC에 의해서는 크게 억제(抑制)되어 강(强)한 길항관계(拮抗關係)가 있는 것으로 나타났다. This study was attempted to evaluate the combining effect of HBR (homobrassinolide) with the known growth regulators such as GA (gibberellic acid), BA(6-benzyl aminopurine), IAA (indole-3-acetic acid), B-9 (N-dimethylamino succinamic acid) and CCC (2-chloroethyl-trimethylammonium chloride) on the growth of radish hypocotyl. A single application of HBR increased hypocotyl growth as its rates increased from 0.1 to 1.0 ppm, showing a maximum increase at 1.0 ppm. GA and BA had no direct effects on hyopcotyl growth, but IAA showed some effect as its concentration increased. However, the mixed application of HBR with GA, BA and IAA increased the length of radish hypocotyl as the concentration of HBR became higher. The mixture of HBR with GA and BA showed antagonistic reaction on radish hypocotyl growth, but synergistic effect was shown in the higher rate mixture of HBR with IAA in the range of HBR at 0.03 to 0.30 ppm with IAA at 3.0 to 10.0 ppm, but antagonistic or additive response at the mixture of low rates. An increased growth of hypocotyl by HBR was ified by CCC, showing the strong antagonistic reaction, but B-9 was not able to ify HBR's effect on hypocotyl growth.