Spectroscopic Elucidation of the Biodeterioration Potentials of Aspergillus niger on Lagenaria siceraria Seed Oil

P. Dass, D. Kubmarawa, A. Akinterinwa, Buba Mohammed
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Abstract

Vegetable oil was extracted from Lagenaria siceraria seeds and some physico-chemical analysis determined. The refractive index of 1.47, saponification value of 465.9 mgKOH/g, iodine value of 15.86 I2 /100 g, Acid value mgKOH/g of 2.52 and density of 0.93 were obtained. GC-MS of both the un-inoculated and inoculated oil was measured before and after four weeks of incubation with Aspergillus niger. The disappearance and or appearance of some absorption peaks which correspond to hydroxyl, carbonyl, methyl, and carboxylic acid functional groups were identified. MS provided the mass fragments of the possible components formed during the degradation of the oil to include 12-methyl-methyl ester, tetradecanoic acid, hexadecanoic acid, heptadecanoic acid, oleic acid, 2, 6, 10-Dodecatrien-1-ol, 3, 7, 11-trimethyl (E.E) and pentadecanoic acid as biodegradation Original Research Article Dass et al.; ACSJ, 15(1): 1-11, 2016; Article no.ACSJ.25510 2 by-products. Despite, low acid value obtained which may have suggested stability of the oil to oxidation, its high iodine value indicated a rather high level of unsaturation i.e. presence of double bonds. The position of double bonds was viewed as possible sites for the initial attack by the microorganisms. These absorption bands disappeared after inoculation and incubation with Aspergillus niger after four weeks with prominent peaks noticed to be of fatty acids as a result of the action of Aspergillus niger on the Lagenaria siceraria oil. The fragmentation of the triglycerides suggested that the unsaturation is not on an even number of carbon atom along the chain length resulting in the propyl – like breakage with molecular weight of 42 (C3H7) whereas, fragmentation on even carbon atom resulting in ethyl-like breakage with molecular weight of 28 (C2H2). The GC-MS showed that acidic metabolites were mostly produced. This is similar to the hydrolysis of vegetable oil by other agents where sterol and fatty acids are usually produced in the ratio 1:3. Therefore, it is recommended that the storage of these oils in the presence of common mold such as Aspergillus niger at temperature above 37°C would lead to its deterioration. However, Lagenaria siceraria seed oil can be used as lubricants, for cooking and paint production.
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黑曲霉对木参籽油生物腐坏潜力的光谱分析
从银根草种子中提取植物油,并进行理化分析。折射率为1.47,皂化值为465.9 mgKOH/g,碘值为15.86 I2 /100 g,酸值为2.52,密度为0.93。在黑曲霉孵育4周前后分别测定未接种油和接种油的GC-MS。确定了羟基、羰基、甲基和羧基官能团对应的一些吸收峰的消失或出现。质谱提供了油降解过程中可能形成的组分的质量片段,包括12-甲基甲酯、十四烷酸、十六烷酸、十七烷酸、油酸、2,6,10 -十二烷基-1-醇、3,7,11 -三甲基(E.E)和五烷酸作为生物降解物;植物学报,15(1):1-11,2016;文章no.ACSJ。25510 2副产物。尽管获得的低酸值可能表明油对氧化的稳定性,但其高碘值表明相当高的不饱和水平,即双键的存在。双键的位置被认为是微生物最初攻击的可能位置。这些吸收带在黑曲霉接种和孵育4周后消失,由于黑曲霉对黑曲霉油的作用,脂肪酸的吸收峰明显。甘油三酯的断裂表明,不饱和不是在沿链长度的偶数个碳原子上,导致分子量为42的丙基断裂(C3H7),而在偶数个碳原子上的断裂导致分子量为28的乙基断裂(C2H2)。气相色谱-质谱分析表明,主要产生酸性代谢物。这类似于其他试剂对植物油的水解,通常以1:3的比例产生甾醇和脂肪酸。因此,建议将这些油在黑曲霉等常见霉菌存在的情况下,在37℃以上的温度下储存,会导致其变质。然而,木槿花种子油可以用作润滑剂,用于烹饪和油漆生产。
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