González-García Yolanda, Grieve Janessa, Meza-Contreras Juan Carlos, Clifton-García Berenice, Silva-Guzman José Antonio
Department of Wood, Cellulose and Paper, University of Guadalajara, 45020 Zapopan, Mexico.
Department of Chemical Engineering, University of Guadalajara, 44430 Guadalajara, Mexico.
Bioengineering (Basel). 2019 Dec 17;6(4):115. doi: 10.3390/bioengineering6040115.
Tequila agave bagasse (TAB) is the fibrous waste from the Tequila production process. It is generated in large amounts and its disposal is an environmental problem. Its use as a source of fermentable sugars for biotechnological processes is of interest; thus, it was investigated for the production of polyhydroxybutyrate (PHB) by the xylose-assimilating bacteria . First, it was chemically hydrolyzed, yielding 20.6 g·L of reducing sugars, with xylose and glucose as the main components (7:3 ratio). Next, the effect of hydrolysis by-products on growth was evaluated. Phenolic compounds showed the highest toxicity (> 60% of growth inhibition). Then, detoxification methods (resins, activated charcoal, laccases) were tested to remove the growth inhibitory compounds from the TAB hydrolysate (TABH). The highest removal percentage (92%) was achieved using activated charcoal (50 g·L, pH 2, 4 h). Finally, detoxified TABH was used as the carbon source for the production of PHB in a two-step batch culture, reaching a biomass production of 11.3 g·L and a PHB accumulation of 24 g PHB g dry cell (after 122 h of culture). The polymer structure resulted in a homopolymer of 3-hydroxybutyric acid. It is concluded that the TAB could be hydrolyzed and valorized as a carbon source for producing PHB.
龙舌兰废料(TAB)是龙舌兰酒生产过程中产生的纤维状废弃物。其产量巨大,对其进行处置是一个环境问题。将其用作生物技术过程中可发酵糖的来源具有一定意义;因此,研究了利用木糖同化细菌生产聚羟基丁酸酯(PHB)。首先,对其进行化学水解,得到20.6 g·L的还原糖,主要成分是木糖和葡萄糖(比例为7:3)。接下来,评估了水解副产物对生长的影响。酚类化合物显示出最高的毒性(生长抑制率>60%)。然后,测试了解毒方法(树脂、活性炭、漆酶)以从TAB水解物(TABH)中去除生长抑制化合物。使用活性炭(50 g·L,pH 2,4 h)时去除率最高(92%)。最后,将解毒后的TABH用作两步分批培养生产PHB的碳源,生物量产量达到11.3 g·L,PHB积累量为24 g PHB/g干细胞(培养122 h后)。聚合物结构为3-羟基丁酸的均聚物。得出的结论是,TAB可以被水解并作为生产PHB的碳源加以利用。