通过刺激理化应激提高谷斑皮蠹的黄酮苷产量,并将生物产品用作食品工业的添加剂。

IF 3.5 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Bioprocess and Biosystems Engineering Pub Date : 2025-04-01 Epub Date: 2025-02-28 DOI:10.1007/s00449-024-03126-w
Júlio Gabriel Oliveira de Lima, Nathalia Vieira Porphirio Veríssimo, Caio de Azevedo Lima, Flávio Pereira Picheli, Ariela Veloso de Paula, Valéria de Carvalho Santos-Ebinuma
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引用次数: 0

摘要

类胡萝卜素是有价值的食品中的红橙色色素,它们可以通过微生物通过生物技术手段生产。除了作为天然着色剂的作用外,一些类胡萝卜素还具有显著的抗氧化性能,对健康有益,使它们成为食品工业中有价值的营养添加剂。然而,从天然来源获得高数量和高纯度的这些化合物带来了挑战,通过生物技术途径生产时会减少其市场份额。本研究提出利用粘胶红酵母CCT-2186,利用营养和生理压力来促进类胡萝卜素的产生,特别是环豆黄素。实验设计方法确定麦芽提取物是最大限度地提高类胡萝卜素产量的最合适的氮源。此外,在培养基中加入表面活性剂Tween 80,并延长培养时间至96 h,在最佳条件下[(%w/v):葡萄糖(1),KH2PO4 (0.052), MgSO4.7H2O(0.052)和NH4NO3(0.4),麦芽提取物pH为5.0/ 96 h/30°C],托鲁辣素的产量显著增加,达到2.097 mg/mL(比初始条件增加377.68%)。最后,为了证明利用类胡萝卜素提取物作为食品着色剂的可行性,将其应用于食用明胶中。这些发现强调了营养、物理和机械应力在优化托鲁鲁霍素生产中的关键作用,特别是在托鲁鲁霍素转化为γ-胡萝卜素的过程中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improvement of torularhodin production by Rhodotorula glutinis through the stimulation of physicochemical stress and application of the bioproduct as an additive in the food industry.

Carotenoids are pigments responsible for the red-orange colorations in valuable food products, and they can be produced via biotechnological means through microorganisms. Beyond their role as natural colorants, some carotenoids offer significant health benefits due to their antioxidant properties, making them valuable nutritional additives in the food industry. However, obtaining these compounds from natural sources with high quantity and purity poses challenges which reduces its market share when produced through a biotechnological route. This study proposes utilizing nutritional and physical stress to enhance carotenoid production, specifically torularhodin, using the yeast Rhodotorula glutinis CCT-2186. A Design of Experiments approach identified malt extract as the most suitable nitrogen source for maximizing carotenoid production. Furthermore, introducing a surfactant (Tween 80) in the culture medium, and extending the cultivation time to 96 h, led to an increase in torularhodin production, reaching a notable 2.097 mg/mL (377,68% more when compared to the initial condition) under the best condition [(%w/v): dextrose (1), KH2PO4 (0.052), MgSO4.7H2O (0.052) and NH4NO3 (0.4), malt extract with a pH of 5.0/ 96 h/30 °C]. Lastly, to demonstrate the viability of utilizing the carotenoid extract as a food colorant, it was applied in edible gelatin. These findings highlight the critical role of nutritional, physical, and mechanical stresses in optimizing torularhodin production, particularly the conversion of γ-carotene to torularhodin by R. glutinis.

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来源期刊
Bioprocess and Biosystems Engineering
Bioprocess and Biosystems Engineering 工程技术-工程:化工
CiteScore
7.90
自引率
2.60%
发文量
147
审稿时长
2.6 months
期刊介绍: Bioprocess and Biosystems Engineering provides an international peer-reviewed forum to facilitate the discussion between engineering and biological science to find efficient solutions in the development and improvement of bioprocesses. The aim of the journal is to focus more attention on the multidisciplinary approaches for integrative bioprocess design. Of special interest are the rational manipulation of biosystems through metabolic engineering techniques to provide new biocatalysts as well as the model based design of bioprocesses (up-stream processing, bioreactor operation and downstream processing) that will lead to new and sustainable production processes. Contributions are targeted at new approaches for rational and evolutive design of cellular systems by taking into account the environment and constraints of technical production processes, integration of recombinant technology and process design, as well as new hybrid intersections such as bioinformatics and process systems engineering. Manuscripts concerning the design, simulation, experimental validation, control, and economic as well as ecological evaluation of novel processes using biosystems or parts thereof (e.g., enzymes, microorganisms, mammalian cells, plant cells, or tissue), their related products, or technical devices are also encouraged. The Editors will consider papers for publication based on novelty, their impact on biotechnological production and their contribution to the advancement of bioprocess and biosystems engineering science. Submission of papers dealing with routine aspects of bioprocess engineering (e.g., routine application of established methodologies, and description of established equipment) are discouraged.
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