Steinernema yirgalemense inoculum size and timing impact on the population dynamics of in vitro liquid culture shake flask production

IF 1.2 4区 生物学 Q2 ZOOLOGY Nematology Pub Date : 2023-10-30 DOI:10.1163/15685411-bja10278
Murray D. Dunn, Antoinette P. Malan
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Abstract

Summary Optimising the in vitro liquid mass production process for entomopathogenic nematodes (EPN) is a critical step in the development of a cost-effective EPN biopesticide product. Recording the nematode population and growth dynamics in an Erlenmeyer shake flask environment is essential to gaining a better understanding of which factors may influence the final yield. Although infective juvenile (IJ) inoculum concentration has previously been studied, no consensus yet exists as to whether it influences the final yield. This study sought to determine the impact of IJ inoculum concentration and timing on the recovery, growth and yield of the South African EPN isolate of Steinernema yirgalemense in shake flasks. The results indicated that the IJ inoculum concentration positively affects the final IJ yield of 2.88 × 15 5 IJ ml −1 . Moreover, at higher IJ inoculum concentrations, a higher number of reproductive females and males are produced, when recovery percentages were similar. The lowest IJ inoculum concentration treatment was also the only treatment to show signs of an unwanted second generation in the final yield. The IJ inoculation timing trials confirmed that once the bacterium, Xenorhabdus indica , has ended the exponential growth phase and entered the stationary phase, it is ideal to then inoculate the IJ. However, it was found that the S. yirgalemense can be inoculated into the X. indica bacteria solution after 36 h of growth, instead of after 44-48 h. These trials demonstrated the need for further optimisation to produce consistent yields of the highly pathogenic South African EPN isolate of S. yirgalemense .
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接种量和接种时间对体外液体培养摇瓶生产菌群动态的影响
优化昆虫病原线虫(EPN)体外液体批量生产工艺是开发高性价比的EPN生物农药产品的关键一步。在Erlenmeyer摇瓶环境中记录线虫种群和生长动态对于更好地了解哪些因素可能影响最终产量至关重要。虽然以前研究过感染幼鱼(IJ)的接种浓度,但它是否影响最终产量尚未达成共识。本研究旨在确定IJ接种浓度和时间对摇瓶中南非斯坦纳马yirgalemense EPN分离株的恢复、生长和产量的影响。结果表明,IJ接种量对最终IJ产量的影响为2.88 × 15 5 IJ ml−1。此外,在较高的IJ接种浓度下,在恢复百分比相似的情况下,产生的繁殖雌虫和雄虫数量较多。最低IJ接种浓度处理也是唯一在最终产量中显示不需要的第二代的处理。IJ接种时机试验证实,一旦Xenorhabdus indica细菌的指数生长期结束,进入稳常期,则是理想的接种IJ。然而,研究发现,在生长36小时后,而不是44-48小时后,金黄色葡萄球菌可以接种到印度X.细菌溶液中。这些试验表明,需要进一步优化,以产生高致病性南非金黄色葡萄球菌EPN分离物的一致产量。
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来源期刊
Nematology
Nematology 生物-动物学
CiteScore
2.60
自引率
33.30%
发文量
67
审稿时长
3 months
期刊介绍: Nematology is an international journal for the publication of all aspects of nematological research (with the exception of vertebrate parasitology), from molecular biology to field studies. Papers on nematode parasites of arthropods, and on soil free-living nematodes, and on interactions of these and other organisms, are particularly welcome. Research on fresh water and marine nematodes is also considered when the observations are of more general interest. Nematology publishes full research papers, short communications, Forum articles (which permit an author to express a view on current or fundamental subjects), perspectives on nematology, and reviews of books and other media.
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