Endospore production of Bacillus spp. for industrial use

IF 3.9 4区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Engineering in Life Sciences Pub Date : 2023-10-12 DOI:10.1002/elsc.202300013
Riekje Biermann, Sascha Beutel
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Abstract

The increased occurrence of antibiotic resistance and the harmful use of pesticides are a major problem of modern times. A ban on the use of antibiotics as growth promoters in animal breeding has put a focus on the probiotics market. Probiotic food supplements are versatile and show promising results in animal and human nutrition. Chemical pesticides can be substituted by biopesticides, which are very effective against various pests in plants due to increased research. What these fields have in common is the use of spore-forming bacteria. The endospore-forming Bacillus spp. belonging to this group offer an effective solution to the aforementioned problems. Therefore, the biotechnological production of sufficient qualities of such endospores has become an innovative and financially viable field of research. In this review, the production of different Bacillus spp. endospores will be reviewed. For this purpose, the media compositions, cultivation conditions and bioprocess optimization methods of the last 20 years are presented and reflected.

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工业用芽孢杆菌的孢子内生产
抗生素耐药性的增加和农药的有害使用是现代的一个主要问题。禁止在动物养殖中使用抗生素作为生长促进剂,这使得益生菌市场受到关注。益生菌食品补充剂是多功能的,在动物和人类营养方面显示出有希望的结果。生物农药可以取代化学农药,由于研究的增加,生物农药对植物中的各种害虫非常有效。这些领域的共同点是使用孢子形成细菌。芽孢杆菌属的内孢子形成芽孢杆菌为解决上述问题提供了有效的方法。因此,生物技术生产足够质量的内生孢子已经成为一个创新和经济上可行的研究领域。本文将对不同芽孢杆菌内生孢子的生产进行综述。为此,对近20年来的培养基组成、培养条件和生物工艺优化方法进行了介绍和反思。
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来源期刊
Engineering in Life Sciences
Engineering in Life Sciences 工程技术-生物工程与应用微生物
CiteScore
6.40
自引率
3.70%
发文量
81
审稿时长
3 months
期刊介绍: Engineering in Life Sciences (ELS) focuses on engineering principles and innovations in life sciences and biotechnology. Life sciences and biotechnology covered in ELS encompass the use of biomolecules (e.g. proteins/enzymes), cells (microbial, plant and mammalian origins) and biomaterials for biosynthesis, biotransformation, cell-based treatment and bio-based solutions in industrial and pharmaceutical biotechnologies as well as in biomedicine. ELS especially aims to promote interdisciplinary collaborations among biologists, biotechnologists and engineers for quantitative understanding and holistic engineering (design-built-test) of biological parts and processes in the different application areas.
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