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Decision-making of the benthic diatom Seminavis robusta searching for inorganic nutrients and pheromones

机译:底栖硅藻Seminavisrobusta的决策寻找无机养分和信息素

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摘要

Microorganisms encounter a diversity of chemical stimuli that trigger individual responses and influence population dynamics. However, microbial behavior under the influence of different incentives and microbial decision-making is poorly understood. Benthic marine diatoms that react to sexual attractants as well as to nutrient gradients face such multiple constraints. Here, we document and model behavioral complexity and context-sensitive responses of these motile unicellular algae to sex pheromones and the nutrient silicate. Throughout the life cycle of the model diatom Seminavis robusta nutrient-starved cells localize sources of silicate by combined chemokinetic and chemotactic motility. However, with an increasing need for sex to restore the initial cell size, a change in behavior favoring the attraction-pheromone-guided search for a mating partner takes place. When sex becomes inevitable to prevent cell death, safeguard mechanisms are abandoned, and cells prioritize the search for mating partners. Such selection processes help to explain biofilm organization and to understand species interactions in complex communities.
机译:微生物会遇到多种化学刺激,这些化学刺激会触发个体反应并影响种群动态。然而,人们对微生物在不同的动机和微生物决策的影响下的行为知之甚少。对性引诱剂以及养分梯度起反应的底栖海藻硅藻面临着多种限制。在这里,我们记录和建模这些运动的单细胞藻类对性信息素和营养性硅酸盐的行为复杂性和上下文相关的响应。在模型硅藻的整个生命周期中,营养不足的硅藻通过化学动力学和趋化运动相结合来定位硅酸盐的来源。然而,随着对性的需求增加以恢复初始细胞大小,行为发生改变,有利于吸引-信息素引导的寻找交配伴侣。当不可避免地发生性行为以防止细胞死亡时,安全保护机制就会被放弃,细胞会优先考虑寻找交配伴侣。这样的选择过程有助于解释生物膜的组织并了解复杂社区中物种的相互作用。

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