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Physiological Effects on Coexisting Microalgae of the Allelochemicals Produced by the Bloom-Forming Cyanobacteria Synechococcus sp. and Nodularia Spumigena

机译:形成绽放的蓝细菌Syechococcus sp。产生的化感物质对共存微藻的生理影响。和海绵结节

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摘要

Only a few studies have documented the physiological effects of allelopathy from cyanobacteria against coexisting microalgae. We investigated the allelopathic ability of the bloom-forming cyanobacteria sp. and filtrates on several aspects related to the physiology of the target species: population growth, cell morphology, and several indexes of photosynthesis rate and respiration. The target species were the following: two species of green algae ( , ) and two species of diatoms ( , ). These four species coexist in the natural environment with the employed strains of sp. and employed. The tests were performed with single and repeated addition of cyanobacterial cell-free filtrate. We also tested the importance of the growth phase in the strength of the allelopathic effect. The negative effects of both cyanobacteria were the strongest with repeated exudates addition, and generally, sp. and were allelopathic only in the exponential growth phase. was not negatively affected by filtrates in any of the parameters studied, while , , and were affected in several ways. was characterized by a stronger allelopathic activity than sp., showing a negative effect on all target species. The highest decline in growth, as well as the most apparent cell physical damage, was observed for the diatom . Our findings suggest that cyanobacterial allelochemicals are associated with the cell physical damage, as well as a reduced performance in respiration and photosynthesis system in the studied microalgae which cause the inhibition of the population growth. Moreover, our study has shown that some biotic factors that increase the intensity of allelopathic effects may also alter the ratio between bloom-forming cyanobacteria and some phytoplankton species that occur in the same aquatic ecosystem.
机译:只有少数研究记录了蓝细菌化感作用对共存微藻的生理作用。我们调查了绽放形成蓝藻sp的化感能力。并在与目标物种的生理相关的几个方面进行过滤:种群增长,细胞形态以及光合作用率和呼吸作用的多个指标。目标物种如下:两种绿藻()和两种硅藻()。这四个物种与所用的sp菌株共存于自然环境中。并受雇。通过单次和重复添加无蓝细菌无细胞滤液进行测试。我们还测试了生长期在化感作用强度中的重要性。反复添加渗出液时,两种蓝细菌的负面影响最明显,通常为sp.。并且仅在指数生长期具有化感作用。在任何所研究的参数中均不受滤液的负面影响,而,和则以多种方式受到影响。其特点是化感活性比sp。强,对所有目标物种均具有负面影响。对于硅藻,观察到生长的最大下降以及最明显的细胞物理损伤。我们的研究结果表明,在研究的微藻中,蓝细菌化感物质与细胞物理损伤以及呼吸和光合作用系统的性能下降有关,这会导致种群增长受到抑制。此外,我们的研究表明,某些增加化感作用强度的生物因子也可能会改变在同一水生生态系统中形成水华的蓝细菌与浮游植物之间的比率。

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