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Bioproduction of 2-phenylethanol and 2-phenethyl acetate by Kluyveromyces marxianus through the solid-state fermentation of sugarcane bagasse

机译:通过甘蔗蔗糖固态发酵的Kluyveromyces Marxianus对2-苯基乙醇和2-苯乙酸乙酯的生物制备

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2-Phenylethanol (2-PE) and 2-phenethyl acetate (2-PEA) are important aroma compounds widely used in food and cosmetic industries due to their rose-like odor. Nowadays, due to the growing demand for natural products, the development of bioprocesses for obtaining value-added compounds has become of great significance. 2-PE and 2-PEA can be produced through the biotransformation of L-phenylalanine using the generally recognized as safe strain Kluyveromyces marxianus. L-phenylalanine bioconversion systems have been typically focused on submerged fermentation processes (SmF), but there is no information about other alternative productive approaches. Here, the solid-state fermentation (SSF) of sugarcane bagasse supplemented with L-phenylalanine was investigated as a sustainable alternative for producing 2-PE and 2-PEA in a residue-based system using Kluyveromyces marxianus as inoculum. An initial screening of the operational variables indicated that air supply, temperature, and initial moisture content significantly affect the product yield. Besides, it was found that the feeding strategy also affects the production and the efficiency of the process. While a basic batch system produced 16 mg(products) per gram of residue (dry basis), by using split feeding strategies (fed-batch) of only sugarcane bagasse, a maximum of 18.4 mg(Products) g(residue)(-1) were achieved. Increase in product yield was also accompanied by an increase in the consumption efficiency of nutrients and precursor. The suggested system results as effective as other more complex SmF systems to obtain 2-PE and 2-PEA, showing the feasibility of SSF as an alternative for producing these compounds through the valorization of an agro-industrial residue.
机译:2-苯基乙醇(2-PE)和2-苯乙酸乙酯(2-豌豆)是由于其玫瑰样气味而广泛用于食品和美容产业中的重要芳香化合物。如今,由于对天然产物的需求不断增长,获得增值化合物的生物过程的发展具有重要意义。通过使用普遍认为的作为安全菌株Kluyveromyces Marxianus,通过L-苯丙氨酸的生物转化来生产2-PE和2-豌豆。 L-苯丙氨酸生物转化系统通常集中在浸没式发酵过程(SMF)上,但没有关于其他替代生产方法的信息。这里,研究了使用L-苯丙氨酸的甘蔗果糖的固态发酵(SSF)作为在基于残留的体系中生产2-PE和2-PEA的可持续替代方案,使用Kluyveromyces Marxianus作为接种物。操作变量的初始筛选表明,空气供应,温度和初始水分含量显着影响产品产量。此外,发现饲养策略也影响了生产和过程的效率。虽然基本批量生产每克残留物(干基)产生16毫克(产品),但通过使用仅甘蔗蛋白甘蔗蛋白(FED-批次),最多18.4mg(产品)G(残留物)( - 1 )是实现的。产品产量的增加还伴随着营养和前体的消费效率的增加。建议的系统与其他更复杂的SMF系统一样有效,以获得2-PE和2-豌豆,显示SSF通过较易化农产品残留物的储存来生产这些化合物的替代方案。

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