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小球藻释放的脂肪酸及其对假鱼腥藻干扰的作用:实验与模拟。

Fatty acids released by Chlorella vulgaris and their role in interference with Pseudokirchneriella subcapitata: experiments and modelling.

机构信息

Dipartimento di Chimica Organica e Biochimica, Università degli Studi di Napoli Federico II, Via Cinthia 4, 80126 Naples, Italy.

出版信息

J Chem Ecol. 2010 Mar;36(3):339-49. doi: 10.1007/s10886-010-9753-y. Epub 2010 Feb 26.

Abstract

The role of extracellular fatty acids in the interference between two algae, Chlorella vulgaris Beijerink and Pseudokirchneriella subcapitata (Korshikov) Hindak, was assessed by the co-cultivation of the two selected strains, as well as by the chemical analysis of exudates from the culture media of single strain cultures. The effect of culture age and phosphate limitation was evaluated. The experiments showed that the composition and amount of fatty acids, released by C. vulgaris and by P. subcapitata, both in a batch and in a continuous monoculture, depend on the culture age and on the phosphate concentration in the culture medium. We also found that the amount of chlorellin generated in the two algae co-culture increased and was almost exclusively constituted by a mixture of C18 fatty acids. By using the evaluated concentrations of these fatty acids, an artificial chlorellin was prepared. The toxicity of this mixture to P. subcapitata appears to be similar to that of the natural chlorellin. For both algae, a stimulation of growth was observed at low concentrations of the natural chlorellin, whereas higher concentrations produced inhibitory effects on both species. However, P. subcapitata was much more sensitive than C. vulgaris. By using some of these new experimental results, two new mathematical models have been used to describe the toxicity of chlorellin to C. vulgaris and to the interference between C. vulgaris and P. subcapitata, respectively.

摘要

研究了两种藻类(普通小球藻和隐甲藻)之间相互作用中外源脂肪酸的作用,通过共培养这两种选定的藻株以及对单一藻株培养物培养基渗出物进行化学分析来评估。评估了培养年龄和磷酸盐限制的影响。实验表明,普通小球藻和隐甲藻在分批和连续单培养中释放的脂肪酸的组成和数量取决于培养年龄和培养基中的磷酸盐浓度。我们还发现,在两种藻类共培养中产生的叶绿素的量增加,并且几乎完全由 C18 脂肪酸的混合物组成。通过使用评估的这些脂肪酸的浓度,制备了一种人工叶绿素。该混合物对隐甲藻的毒性似乎与天然叶绿素的毒性相似。对于两种藻类,在低浓度的天然叶绿素存在下,观察到生长刺激,而较高浓度则对两种藻类都产生抑制作用。然而,隐甲藻比普通小球藻敏感得多。利用其中一些新的实验结果,分别使用两个新的数学模型来描述叶绿素对普通小球藻的毒性以及普通小球藻和隐甲藻之间的相互作用。

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