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首页> 外文期刊>Marine ecology progress series >Allelopathic compounds of a red tide dinoflagellate have species-specific and context-dependent impacts on phytoplankton
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Allelopathic compounds of a red tide dinoflagellate have species-specific and context-dependent impacts on phytoplankton

机译:赤潮鞭毛藻的化感物质对浮游植物具有物种特异性和背景相关的影响

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摘要

ABSTRACT: The use of chemical compounds to suppress the growth of competitors is a competitive strategy known as allelopathy that can be readily observed with many phytoplankton species in laboratory studies. However, it is unclear how these allelopathic interactions are altered when the complexity of the system is increased to more closely mimic natural conditions. In the present study, we conducted laboratory experiments to decipher how the identity, abundance, and growth stage of competitors affect the outcome of allelopathic interactions with the red tide dinoflagellate Karenia brevis. Multiple chemical compounds produced by K. brevis were found to inhibit the growth of 4 phytoplankton competitors, although these competitors were susceptible to different combinations of compounds. We found that physiological state and cell concentration of competitors were important determinants of allelopathy, with early-stage (lag phase) cells more vulnerable to allelopathic effects than later growth stages for the diatom Skeletonema grethae. Despite being allelopathic to multiple competitors in the laboratory, in a microcosm experiment using plankton field assemblages, extracellular extracts of 2 strains of K. brevis had no effects on some taxa although they stimulated the growth of some diatoms. This suggests that in a species-rich ecological community under oligotrophic conditions, the relative importance of K. brevis allelopathy may not be as high as most laboratory studies predict.
机译:摘要:使用化合物抑制竞争者的生长是一种被称为化感作用的竞争策略,在实验室研究中很容易在许多浮游植物物种中观察到。但是,尚不清楚当系统的复杂性增加到更接近自然条件时,这些化感作用如何改变。在本研究中,我们进行了实验室实验,以了解竞争者的身份,丰度和成长阶段如何影响与赤潮小鞭藻(Karenia brevis)的化感相互作用的结果。 K生产的多种化合物。 brevis 被发现可以抑制4种浮游植物竞争者的生长,尽管这些竞争者容易受到化合物不同组合的影响。我们发现竞争者的生理状态和细胞浓度是化感病的重要决定因素,硅藻格列酮的早期(迟滞)细胞比后期的生长阶段更容易受到化感作用。尽管对实验室中的多个竞争者具有化感作用,但在使用浮游生物场组合的缩影实验中,有2种K菌株的细胞外提取物。灯盏花虽然刺激了一些硅藻的生长,但对某些分类没有影响。这表明在贫营养条件下物种丰富的生态群落中,钾的相对重要性。短暂的化感作用可能不如大多数实验室研究预测的那么高。

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