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Viability of 'Candidatus Liberibacter asiaticus' prolonged by addition of citrus juice to culture medium.

机译:通过向培养基中添加柑桔汁,可以延长“亚洲自由假丝酵母”的生存能力。

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摘要

Huanglongbing, or citrus greening disease, is associated with infection by the phloem-limited bacterium 'Candidatus Liberibacter asiaticus'. Infection with 'Ca. L. asiaticus' is incurable; therefore, knowledge regarding 'Ca. L. asiaticus' biology and pathogenesis is essential to develop a treatment. However, 'Ca. L. asiaticus' cannot currently be successfully cultured, limiting its study. To gain insight into the conditions conducive for growth of 'Ca. L. asiaticus' in vitro, 'Ca. L. asiaticus' inoculum obtained from seed of fruit from infected pomelo trees (Citrus maxima 'Mato Buntan') was added to different media, and cell viability was monitored for up to 2 months using quantitative polymerase chain reaction in conjunction with ethidium monoazide. Media tested included one-third King's B (K), K with 50% juice from the infected fruit, K with 50% commercially available grapefruit juice, and 100% commercially available grapefruit juice. Results show that juice-containing media dramatically prolong viability compared with K in experiments reproduced during 2 years using different juice sources. Furthermore, biofilm formed at the air-liquid interface of juice cultures contained 'Ca. L. asiaticus' cells, though next-generation sequencing indicated that other bacterial genera were predominant. Chemical characterization of the media was conducted to discuss possible factors sustaining 'Ca. L. asiaticus' viability in vitro, which will contribute to future development of a culture medium for 'Ca. L. asiaticus'.
机译:黄龙病或柑橘类绿化病与韧皮部限制细菌“亚洲假丝酵母”感染有关。感染'Ca。 L. asiaticus'是无法治愈的;因此,有关“Ca。 L.asiaticus的生物学和发病机制对开发治疗至关重要。但是,“ L. asiaticus目前无法成功培养,从而限制了其研究。为了深入了解有利于'Ca的生长的条件。 L. asiaticus'体外,'Ca。从感染的柚树(Citrus maxima'Mato Buntan')的果实种子中获得的L.asiaticus接种物添加到不同的培养基中,并使用定量聚合酶链反应与单叠氮化乙锭一起对细胞活力进行长达2个月的监测。测试的介质包括三分之一的King's B(K),含有受感染水果的50%果汁的K,含有50%市售葡萄柚汁的K和100%市售葡萄柚汁。结果表明,在2年中使用不同果汁来源进行的实验中,与K相比,含果汁的培养基显着延长了活力。此外,在汁液​​培养物的气液界面处形成的生物膜含有“ Ca”。积雪草的细胞,尽管下一代测序表明其他细菌属占主导地位。进行了介质的化学表征以讨论维持'Ca的可能因素。 L. asiaticus的体外存活力,将有助于'Ca.的培养基的未来发展。 L. asiaticus'。

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