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柑橘疫霉菌游动孢子的图案游动:微生物生物对流的一个例子。

Pattern swimming of Phytophthora citricola zoospores: an example of microbial bioconvection.

机构信息

Department of Crop and Soil Science, Oregon State University, Corvallis, OR 97331, USA.

出版信息

Fungal Biol. 2011 Mar;115(3):228-35. doi: 10.1016/j.funbio.2010.12.006. Epub 2010 Dec 21.

Abstract

The genus Phytophthora, belonging to the class Oomycota, comprises a group of over fifty fungus-like plant pathogens in both managed and unmanaged ecosystems. A unique feature of the oomycete lifecycle is a zoosporic stage in which motile, unicellular propagules, serving as the primary agents of dispersal, are produced and released in the presence of water. In Petri dish suspensions, zoospores frequently exhibit 'pattern swimming', whereby they spontaneously form concentrated swimming masses, visible to the naked eye, even in the absence of a chemical or electrical gradient. The nature of this behaviour is unclear, but is of interest because of the potential for auto-attraction and implications for cohort recruitment during infection. Similar behaviour observed in a variety of motile bacteria, algae, and protists is attributed to 'bioconvection' that results from instability in fluid density due to the organisms' upward-swimming tendency and greater-than-water density. In this investigation, we determined that Phytophthora citricola zoospore 'pattern swimming' is unrelated to phototaxis, surface tension-driven (Marangoni) convection, or auto-attraction and that the observed convective pattern, directional swimming, and depth- and concentration dependence are consistent with bioconvection.

摘要

疫霉属(Phytophthora),属于卵菌纲(Oomycota),包括一组五十多种在管理和非管理生态系统中真菌样的植物病原体。卵菌生活史的一个独特特征是游动孢子阶段,在此阶段,在有水存在的情况下,产生和释放游动的、单细胞的繁殖体,作为主要的传播媒介。在培养皿悬浮液中,游动孢子经常表现出“模式游动”,即它们自发地形成肉眼可见的密集游动群体,即使在没有化学或电梯度的情况下也是如此。这种行为的性质尚不清楚,但由于其在感染过程中可能存在自动吸引和对群体招募的影响,因此引起了人们的兴趣。在各种运动细菌、藻类和原生动物中观察到的类似行为归因于“生物对流”,这是由于生物体向上游动的趋势和大于水的密度导致流体密度不稳定所致。在这项研究中,我们确定,疫霉游动孢子的“模式游动”与趋光性、表面张力驱动的(Marangoni)对流或自动吸引无关,并且观察到的对流模式、定向游动以及深度和浓度依赖性与生物对流一致。

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