Johnigk S-A, Ecke F, Poehling M, Ehlers R-U
Department for Biotechnology and Biological Control, Christian-Albrechts-University Kiel, 24223, Raisdorf, Germany.
Appl Microbiol Biotechnol. 2004 Jun;64(5):651-8. doi: 10.1007/s00253-003-1519-9. Epub 2004 Jan 16.
Heterorhabditis bacteriophora is used in biological control of soil-borne insect pests in horticulture and turf. Mass production is carried out in monoxenic liquid cultures pre-incubated with the symbiont of the nematodes, the bacterium Photorhabdus luminescens, before nematode dauer juveniles (DJ) are inoculated. As a response to bacterial food signals, the DJ recover from the developmentally arrested dauer stage, grow to adults and produce DJ offspring. Variable DJ recovery after inoculation into cultures of P. luminescens often causes process failure due to low numbers of adult nematodes in the medium. In order to enhance DJ recovery, improve nematode population management and increase yields, the optimal timing for DJ inoculation was sought. The process parameter pH and respiration quotient (RQ) were recorded in order to test whether changes can be used to identify the best moment for DJ inoculation. When DJ were inoculated during the lag and early logarithmic growth phases of P. luminescens cultures, DJ recovery was low and almost no nematode reproduction was obtained. High populations of P. luminescens phase variants were recorded. Recovery and yields increased when DJ were inoculated during the latter log phase during which the RQ dropped to values <0.8 and the pH reached a maximum. The highest DJ recovery and yields were observed in cultures that were inoculated during the late stationary growth phase. This period started with the increase of the pH after its distinct minimum at pH <8.0. Thus optimal timing for DJ inoculation can be defined through monitoring of the pH in the P. luminescens culture.
嗜菌异小杆线虫用于园艺和草坪中土壤传播害虫的生物防治。在接种线虫 dauer 幼虫(DJ)之前,在与线虫共生菌发光杆菌预先孵育的单菌液体培养物中进行大规模生产。作为对细菌食物信号的响应,DJ 从发育停滞的 dauer 阶段恢复,生长为成虫并产生 DJ 后代。接种到发光杆菌培养物中后,DJ 的恢复情况各不相同,由于培养基中成年线虫数量少,常常导致生产过程失败。为了提高 DJ 的恢复率、改善线虫种群管理并提高产量,研究人员寻找了 DJ 接种的最佳时机。记录了过程参数 pH 和呼吸商(RQ),以测试这些变化是否可用于确定 DJ 接种的最佳时刻。当在发光杆菌培养物的延迟期和早期对数生长期接种 DJ 时,DJ 的恢复率很低,几乎没有线虫繁殖。记录到大量的发光杆菌相变变体。当在对数生长期后期接种 DJ 时,恢复率和产量增加,此时 RQ 降至<0.8,pH 达到最大值。在稳定生长期后期接种的培养物中观察到最高的 DJ 恢复率和产量。这个时期始于 pH 在<8.0 达到明显最小值后开始升高。因此,可以通过监测发光杆菌培养物中的 pH 来确定 DJ 接种的最佳时机。