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龙舌兰果聚糖对开菲尔粒生物量生长过程中化学、形态和成分变化的影响。

Effect of Agave Fructans on Changes in Chemistry, Morphology and Composition in the Biomass Growth of Milk Kefir Grains.

作者信息

Moreno-León Germán R, Avila-Reyes Sandra V, Villalobos-Espinosa Julieta C, Camacho-Díaz Brenda H, Tapia-Maruri Daniel, Jiménez-Aparicio Antonio R, Arenas-Ocampo Martha L, Solorza-Feria Javier

机构信息

CEPROBI-Instituto Politécnico Nacional, Carretera Yautepec-Jojutla, Km. 6 calle CEPROBI No. 8, Colonia San Isidro, Yautepec C.P. 62730, Morelos, Mexico.

CONAHCyT- CEPROBI-Instituto Politécnico Nacional, Carretera Yautepec-Jojutla, Km. 6 calle CEPROBI No. 8, Colonia San Isidro, Yautepec C.P. 62730, Morelos, Mexico.

出版信息

Microorganisms. 2023 Jun 13;11(6):1570. doi: 10.3390/microorganisms11061570.

Abstract

Prebiotic effects have been attributed to agave fructans through bacterial and yeast fermentations, but there are few reports on their use as raw materials of a carbon source. Kefir milk is a fermented drink with lactic acid bacteria and yeast that coexist in a symbiotic association. During fermentation, these microorganisms mainly consume lactose and produce a polymeric matrix called kefiran, which is an exopolysaccharide composed mainly of water-soluble glucogalactan, suitable for the development of bio-degradable films. Using the biomass of microorganisms and proteins together can be a sustainable and innovative source of biopolymers. In this investigation, the effects of lactose-free milk as a culture medium and the addition of other carbon sources (dextrose, fructose, galactose, lactose, inulin and fructans) in concentrations of 2, 4 and 6% /, coupled with initial parameters such as temperature (20, 25 and 30 °C), % of starter inoculum (2, 5 and 10% /) was evaluated. The method of response surface analysis was performed to determine the optimum biomass production conditions at the start of the experiment. The response surface method showed that a 2% inoculum and a temperature of 25 °C were the best parameters for fermentation. The addition of 6% / agave fructans in the culture medium favored the growth of biomass (75.94%) with respect to the lactose-free culture medium. An increase in fat (3.76%), ash (5.57%) and protein (7.12%) content was observed when adding agave fructans. There was an important change in the diversity of microorganisms with an absence of lactose. These compounds have the potential to be used as a carbon source in a medium culture to increase kefir granule biomass. There was an important change in the diversity of microorganisms with an absence of lactose, where the applied image digital analysis led to the identification of the morphological changes in the kefir granules through modification of the profile of such microorganisms.

摘要

益生元效应已归因于龙舌兰果聚糖通过细菌和酵母发酵产生的作用,但关于它们作为碳源原料的使用报道很少。开菲尔乳是一种含有共生的乳酸菌和酵母的发酵饮品。在发酵过程中,这些微生物主要消耗乳糖并产生一种称为开菲尔多糖的聚合物基质,它是一种主要由水溶性葡糖半乳聚糖组成的胞外多糖,适用于开发可生物降解的薄膜。将微生物生物质和蛋白质一起使用可以成为生物聚合物的可持续和创新来源。在本研究中,评估了无乳糖牛奶作为培养基以及添加浓度为2%、4%和6%的其他碳源(葡萄糖、果糖、半乳糖、乳糖、菊粉和果聚糖)的效果,同时还考虑了初始参数,如温度(20℃、25℃和30℃)、发酵剂接种量百分比(2%、5%和10%)。进行了响应面分析方法以确定实验开始时的最佳生物质生产条件。响应面方法表明,2%的接种量和25℃的温度是发酵的最佳参数。在培养基中添加6%的龙舌兰果聚糖相对于无乳糖培养基有利于生物质的生长(75.94%)。添加龙舌兰果聚糖后,脂肪(3.76%)、灰分(5.57%)和蛋白质(7.12%)含量有所增加。在没有乳糖的情况下,微生物多样性发生了重要变化。这些化合物有潜力在培养基中用作碳源以增加开菲尔颗粒生物质。在没有乳糖的情况下,微生物多样性发生了重要变化,应用的图像数字分析通过改变这些微生物的轮廓导致了开菲尔颗粒形态变化的识别。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a649/10302084/380807ab08f1/microorganisms-11-01570-g001.jpg

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