Analysis of Plant Growth and Gallic Acid Content for Cavendish Banana (Musa acuminata) Shoot Culture with Bubble Column Bioreactor

N. Nurhayati, R. Esyanti, Khalilan Lambangsari
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引用次数: 1

Abstract

Cavendish banana (Musa acuminata) is one of the most important fruits in the world. Cavendish shoots tissue culture using bubble column bioreactor can be a solution to produce high yielding plantlet and gallic acid due to the aeration with minimum shear stress. In this study, the average growth rate, presence of gallic acid, and antioxidant activity (IC50) in the bubble column bioreactor (200 mL capacity) with the aeration rates of 1 mL/s and 2 mL/s using Murashige & Skoog half-strength liquid medium supplemented with 0.5 ppm gibberellic acid will be analyzed. The aeration system used was atmospheric air. The leaves and stems were extracted by maceration using 96% ethanol solvent (1:10 (w/v)). A qualitative phenolic test with FeCl3, thin layer chromatography, and antioxidant test with 2,2-diphenyl-1-picrylhydrazyl was carried out. The average growth rate in the bioreactor were 0.22 ± 0.001 g/day (1 mL/s) and 0.21 ± 0.001 g/day (2 mL/s). All the leaf and stem extracts showed positive results for the phenolic test, but the presence of gallic acid could not be detected clearly by thin-layer chromatography. The IC50 values in aeration rates of 1 mL/s and 2 mL/s of the leaves were 41.35 and 79.54 μg/mL, respectively, while the stems were 51.87 and 104.94 μg/mL, respectively. It could be concluded that the growth of the banana plantlet and the production of antioxidants in the bubble column bioreactor was higher in aeration rate of 1 mL/s than 2 mL/s.
气泡柱生物反应器培养卡文迪什香蕉(Musa acuminata)植株生长及没食子酸含量分析
卡文迪什香蕉(Musa acuminata)是世界上最重要的水果之一。利用气泡柱生物反应器进行卡文地什苗组织培养,可以在最小的剪切应力下获得高产苗和没食子酸。在本研究中,将分析在充气速率为1 mL/s和2 mL/s的气泡柱生物反应器(容量为200 mL)中,使用添加0.5 ppm赤霉素酸的Murashige & Skoog半强度液体培养基,平均生长速率、没食子酸的存在以及抗氧化活性(IC50)。所用的曝气系统为大气空气。用96%乙醇(1:10 (w/v))浸泡提取叶和茎。用FeCl3、薄层色谱进行了定性酚性试验,并用2,2-二苯基-1-苦味酰肼进行了抗氧化试验。生物反应器中的平均生长速率分别为0.22±0.001 g/d (1 mL/s)和0.21±0.001 g/d (2 mL/s)。所有叶和茎提取物的酚类检测结果均为阳性,但薄层色谱法无法检测到没食子酸的存在。叶片1 mL/s和2 mL/s曝气速率下的IC50值分别为41.35和79.54 μg/mL,茎部分别为51.87和104.94 μg/mL。结果表明,1 mL/s曝气速率比2 mL/s曝气速率对香蕉植株生长和抗氧化剂产量的影响较大。
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