토양중(土壤中) 비소(砒素)의 행동(行動)과 수도(水稻)의 비소흡수(砒素吸收)에 의(依)한 피해(被害) 생리(生理) 생태(生態)에 관한 연구(硏究);IV. 수경시험(水耕試驗)에서 비소처리(卑小處理)가 수도(水稻)의 증산(蒸散), 기공저항성(氣孔抵抗性) 및 엽(葉)의 온(溫), 습도(濕度)에 미치는 영향(影響)

Behaviors of Arsenic in Paddy Soils and Effects of Absorbed Arsenic on Physiological and Ecological Characteristic of Rice Plant;IV. Effect of As content in water on transpiration, stomatal resistance, temperature and humidity in the leaves of rice plant

  • 발행 : 1987.12.30

초록

비소처리(砒素處理)에 의(依)한 수도(水稻)의 수분흡수양상(水分吸收樣相)을 구명(究明)하기 위하여 배양액(培養液)에 비소(砒素)를 0, 1, 5, 10, 15ppm 처리(處理)하고 수도(水稻)를 수경재배(水耕栽培)하여 비소처리별(砒素處理別) 수도(水稻)의 증산량(蒸散量)과 엽(葉)의 기공저항성(氣孔抵抗性), 공기유량(空氣流量), 엽(葉)의 온(溫), 습도(濕度) 및 식물체(植物體)의 비소함량등(砒素含量等)을 조사(調査)하여 얻어진 결과(結果)는 다음과 같다. 1. 증산량(蒸散量)은 배양액중(培養液中) 비소농도(砒素濃度)가 높아질수록 현저히 감소(減少)되었다. 2. 배양액중(培養液中) 비소농도(砒素濃度)가 높아질수록 엽(葉)의 기공저항성(氣孔抵抗性) 및 엽온(葉溫)은 높아지나 공기유량(空氣流量), 증산율(蒸散率) 및 엽내습도(葉內濕度)는 낮아졌다. 3. 엽(葉)의 공기유량(空氣流量), 증산율(蒸散率) 및 기공저항성(氣孔抵抗性)은 뿌리 및 경엽중(莖葉中) 비소함량(砒素含量)과 높은 상관(相關)을 나타내었으며 이들중 공기유량(空氣流量) 및 증산율(蒸散率)은 뿌리중 비소함량(砒素含量)과 기공저항성(氣孔抵抗性)은 경엽중(莖葉中) 비소함량(砒素含量)과 더 높은 상관(相關)을 나타내었다. 4. 수도(水稻)의 초장(草長), 분벽수(分蘗數), 엽폭(葉幅), 호중(蒿重) 및 근중(根重)은 배양약중(培養液中) 비소농도(砒素濃度)가 높아질수록 현저히 감소(減少)되었다. 5. 수도(水稻)에 대(對)한 비소피해증상(砒素被害症狀)은 뿌리가 갈변(褐變)하고 잎이 말리며 엽(葉)의 선단(先端)과 가장자리가 괴사(壞死)되었다.

A water culture experiment was conducted to investigate the effect of As content in a culture solution on the water status and growth of rice plants. Rice (Oryza sativa L. Line. Iri 316) seeds were germinated in bentonite and cultivated there for 30 days. Rice seedlings were transplanted into 3.5l pots containing the culture solution on May 1, 1985 and allowed to grow without As treatment for one month. Afterwards, they were grown in a culture solution maintaining the final concentration of As, 0, 1, 5, 10 and 15mg/1 renewing in the solution dissolved sodium arsenate at intervals of 3 to 7 days. Plants were cultivated in the green house during the growing period and harvested 60 days after As treatment. The results obtained were as follows: Transpiration of rice plants was decreased with the increase of the As level in the culture solution. Stomatal diffusive resistance and leaf temperature increased with increase of As levels though the humidity and the air flow rate in leaf decreased. Air flow rate, transpiration and stomatal diffusive resistance showed a highly significant correlation with As contents in shoots and roots of rice plants: Espally The air flow rate and transpiration revealed a significantly higher correlation with As contents in the root than that in the shoot, but diffusive resistance showed adverse tendency. High levels of As in the culture solution depressed plant height, no. of tillers, leaf width and dry weight of plant remarkably. Typical symptoms of As toxicity were root discoloration, and necrosis of leaf tips and margins, and leaf rolling during the sunny daytime were also another symptoms.

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