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在琼脂平板上大规模生产产酸根霉 NBRC 5384 的孢子。

Mass production of spores of lactic acid-producing Rhizopus oryzae NBRC 5384 on agar plate.

机构信息

Department of Environmental Bioscience, College of Bioscience and Biotechnology, Chubu University, Kasugai City, Aichi Prefecture, Japan.

出版信息

Biotechnol Prog. 2013 Jul-Aug;29(4):876-81. doi: 10.1002/btpr.1744. Epub 2013 May 9.

DOI:10.1002/btpr.1744
PMID:23658025
Abstract

Mass production of sporangiospores (spores) of Rhizopus oryzae NBRC 5384 (identical to NRRL 395 and ATCC 9363) on potato-dextrose-agar medium was studied aiming at starting its L(+)-lactic acid fermentation directly from spore inoculation. Various parameters including harvest time, sowed spore density, size of agar plate, height of air space, and incubation mode of plate (agar-on-bottom or agar-on-top) were studied. Ordinarily used shallow Petri dishes were found out to be unsuitable for the full growth of R. oryzae sporangiophores. In a very wide range of the sowed spore density, the smaller it was, the greater the number of the harvested spores was. It was also interesting to find out that R. oryzae grown downward vertically with a deep air space in an agar-on-top mode gave larger amount of spores than in an agar-on-bottom mode at 30°C for 7-day cultivation. Scale-up of the agar plate culture from 26.4 to 292 cm(2) was studied, resulting in the proportional relationship between the number of the harvested spores/plate and the plate area in the deep Petri dishes. The number of plates of 50 cm in diameter needed for 100 m(3) industrial submerged fermentation started directly from 2 × 10(5) spores/mL inoculum size was estimated as about 6, from which it was inferred that such a fermentation would be feasible. Designing a 50 cm plate and a method of spreading and collecting the spores were suggested. Bioprocess technological significance of the "full-scale industrial submerged fermentation started directly from spore inoculation omitting pre-culture" has been discussed.

摘要

米根霉 NBRC 5384(与 NRRL 395 和 ATCC 9363 相同)的游动孢子(孢子)在土豆-葡萄糖-琼脂培养基上的大量生产,旨在直接从孢子接种开始其 L(+)-乳酸发酵。研究了各种参数,包括收获时间、播种孢子密度、琼脂板大小、空气空间高度以及平板的培养模式(琼脂在下或琼脂在上)。通常使用的浅皮氏培养皿被发现不适合米根霉游动孢子的完全生长。在播种孢子密度的很宽范围内,密度越小,收获的孢子数量就越多。有趣的是,还发现米根霉在琼脂在上模式下,以深空气空间垂直向下生长,在 30°C 下培养 7 天,比琼脂在下模式下产生更多的孢子。研究了从 26.4 到 292 cm(2) 的琼脂板培养放大,结果表明,在深皮氏培养皿中,收获的孢子/板数量与板面积之间存在比例关系。从 2 × 10(5)个/mL 接种量的孢子开始,直接进行 100 m(3)工业浸没发酵所需的 50 cm 直径的平板数量估计约为 6 个,由此推断该发酵是可行的。设计了一个 50 cm 的平板和一种孢子的分散和收集方法。讨论了“直接从孢子接种省略预培养的全规模工业浸没发酵”的生物工艺技术意义。

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