Ecophysiological Studies on Growth and Enlargement of Tubers in Yam III. Detection of activity of the endogenous substances related to the growth and enlargement of tubers.

마塊莖의 肥大生長에 관한 生理.生態學的 硏究 第3報. 塊莖의 肥大生長에 關與하는 植物生理 活性物質의 檢出

  • Published : 1997.03.01

Abstract

Using a bioassay for tuber enlargement activity, which was carried out with culture of microtuber of nodal stem segments in vitro, the endogenous substances was detected from leaves of yam(Diosorea alata L., cv. Solo Yam) treated under the short and the long day length condition. Tuber enlargement activity was found in both the aqueous and ethyl acetate phase of extract obtained from leaves of yams. Those activity was found in both the aqueous and ethyl acetate phase of extract obtained from leaves of yams. Those activities increased under the short day length, whereas not increased under the long day length. Guided by bioassay, the active substances in the ethyl acetate phase were purified by charcoal adsorption chromatography. The result obtained indicated that the 40% ethanol fraction contained the most prominent tuber enlargement activity. In seasonal changes of the leaves, tuber enlargement activity remained almost constant during summer(June-August), but after. the middle of September, the activity increased gradually and then reached a maximum in early October. Jasmonic acid (JA) was isolated with the guidance of microtuber test and identified by gas chromatography. The level of endogenous JA in the leaves of plants was more than $290{\mu}g/kg$ at the 10 hr day length. These results seem evidences for the occurrence of the tuber enlargement activity which is formed in leaves under the short days and transmitted to under ground part to induce growth and enlargement of tuber.

마 식물체(植物體)를 장일(長日) 및 단일(短日) 조건(條件)으로 일장처리(日長處理)한 각각의 잎으로부터 분리(分離) 정제(精製)한 추출물(抽出物)을 microtuber test로 검정(檢定)하였다. 1. 단일처리(短日處理) 잎에서 얻어진 추출액(抽出液)의 산성(酸性)충과 중성(中性)충의 추출물(抽出物)은 소괴경(小塊莖)의 비대생장(肥大生長)을 촉진(促進)하는 강(强)한 활성(活性)이 인정(認定)되었다. 그리나 장일처리(長日處理) 잎에서는 추출물 활성이 나타나지 않았다. 2. 산성층(酸性層)의 추출물(抽出物)을 활성탄(活性炭) 흡착(吸着) column 으로 정제(精製)하여 각농도의 활성(活性)을 생물검정(生物檢定) (microtuber test)한 결과(結果) 40% 에탈올 용출구의 추출물에서 가장 큰 촉진활성(促進活性)이 나타났다. 3. 포장(圃場)에서 재배(栽培)중인 식물(植物)에서 경시적(經時的)으로 잎을 채취(採取)하여 추출물(抽出物의 활성(活性) 변화(變化)를 검정(檢定)했을 때 괴경(塊莖)의 생장(生長)이 정체(停滯)해 있는 시기(時期)(9월 상순)까지는 활성(活性)이 나타나지 않았으나 9월 중순 이후 활성(活性)이 나타나 10월 상순에는 강한 활성(活性)이 인정(認定)되었다. 이 활성(活性)의 변화(變化)는 괴경(塊莖)의 비대생장(肥大生長) 패턴과 거의 일치(一致)했다. 4. 단일처리(短日處理)한 일에서 얻어진 산성층(酸性層)의 추출물(抽出物)에 다량(多量)의 JA산이 함유(含有)되어 있는 것이 밝혀졌다. 잎 1kg에 포함된 JA산의 양(量)은 $290{\mu}g/kg$으로 추정(推定)되었다. 이상(以上)의 결과(結果)에서 마 괴경(塊莖)의 비대생장(肥大生長)은 단일조건하(單一條件下)의 엽(葉)에 형성(形成)되어진 생리활성물질(生理活性物質)에 의해 기인(起因)될 가능성(可能性)이 큰 것으로 추정(推定)되었다.

Keywords

References

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