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  1. National Taiwan Ocean University Research Hub

The Purification of Agarases Derived from Marine Bacteria and the Evaluation of Immune Activity of Oligosaccharides Hydrolyzed from Algal Polysaccharides by Agarases

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Project title
The Purification of Agarases Derived from Marine Bacteria and the Evaluation of Immune Activity of Oligosaccharides Hydrolyzed from Algal Polysaccharides by Agarases
Code/計畫編號
NSC88-2313-B019-021
Translated Name/計畫中文名
海洋細菌所產Agarases之純化與酵素水解藻類多醣所得寡醣類之免疫活性之探討
 
Project Coordinator/計畫主持人
Chorng-Liang Pan
Funding Organization/主管機關
National Science and Technology Council
 
Co-Investigator(s)/共同執行人
童本興
溫端南
 
Department/Unit
Department of Food Science
Website
https://www.grb.gov.tw/search/planDetail?id=434868
Year
1999
 
Start date/計畫起
01-08-1998
Expected Completion/計畫迄
01-07-1999
 
Bugetid/研究經費
658千元
 
ResearchField/研究領域
食品科技(農)
 

Description

Abstract
13株產agarase海洋細菌已完成初步鑑定,在初期測試條件下以Moraxella spp. Aga14、Flavobacterium spp. B13、Pseudomonas vesicularis MA103、Aeromonas salmonicida MAEF108 等四菌株之agarases產量較高。進行此四株海洋細菌生產agarase的最佳個別培養條件與培養基組成的實驗,所得結果顯示P. vesicularis MA103最高可得到 15.73 unit的agarase activity。綜合個別最佳反應條件進行培養時,A. salmonicida MAEF108可以得到71.35 unit 的agarases最高產量。P. vesicularis MA103所產agarases 經初步純化分離後,已可分離得到二個蛋白質,分別稱為agarase I 與agarase II。其中agarase I之分子量為42.7-50.3 kDa。而agarase II則仍待深入探討。酵素處理方法萃得之龍鬚菜海藻多醣以P. vesicularis MA103所產初步純化agarases 分解為寡多醣類混合物後,於動物細胞組織培養實驗中已呈現具有免疫活性之結果,但該部份之實驗仍待本年度延續計畫的工作中,以發酵槽大量生產適當的agarases以用來分解生產海藻寡多醣混合物後再繼續深入探討。 The primary identification of thirteen marine bacterial isolates had been complished. Four marine bacteria, Moraxella spp. Aga14, Flavobacterium spp. B13, Pseudomonas vesicularis MA103, and Aeromonas salmonicida MAEF108, showed higher agarase activities in their cultured broth than other nine marine agarase producing strains. After examining the individual incubation condition and the major components of the media for these four agarases producing strains, the results indicated that the highest agarase activity could be obtained was 15.73 unit by P. vesicularis MA103. While combining those optimal individual incubation factors together, A. salmonicida MAEF108 could increase its agarase yield up to 71.35 unit. The agarases that produced by P. vesicularis MA103 had been primarily purified, and two proteins were separated and then named agarase I and agarase II. The molecular weight of agarase I