Fontana Angelo, d'Ippolito Giuliana, Cutignano Adele, Romano Giovanna, Lamari Nadia, Massa Gallucci Alexia, Cimino Guido, Miralto Antonio, Ianora Adrianna
CNR, Istituto di Chimica Biomolecolare, Via Campi Flegrei 34, 80078, Pozzuoli, Napoli, Italy.
Chembiochem. 2007 Oct 15;8(15):1810-8. doi: 10.1002/cbic.200700269.
Some marine diatoms negatively affect the reproduction of dominant zooplankton grazers such as copepods, thus compromising the transfer of energy through the marine food chains. In this paper, the metabolic mechanism that leads to diatom-induced toxicity is investigated in three bloom-forming microalgae. We show that copepod dysfunctions can be induced by highly reactive oxygen species (hROS) and a blended mixture of diatom products, including fatty acid hydroperoxides (FAHs); these compounds display teratogenic and proapoptotic properties. The process is triggered by the early onset of lipoxygenase activities that elicit the synthesis of species-specific products, the basic structures of which were established (1-20); these compounds boost oxidative stress by massive lipid peroxidation. Our study might explain past laboratory and field results showing how diatoms damage zooplankton grazers even in the absence of polyunsaturated aldehydes, a class of molecules that has been formerly implicated in mediating the toxic activity of diatoms on copepods.
一些海洋硅藻会对诸如桡足类等占主导地位的浮游动物食草动物的繁殖产生负面影响,从而损害海洋食物链中的能量传递。在本文中,我们研究了三种形成水华的微藻中导致硅藻诱导毒性的代谢机制。我们发现,高活性氧(hROS)以及包括脂肪酸氢过氧化物(FAHs)在内的硅藻产物混合体可诱导桡足类功能障碍;这些化合物具有致畸和促凋亡特性。该过程由脂氧合酶活性的早期启动引发,脂氧合酶活性引发物种特异性产物的合成,其基本结构已确定(1 - 20);这些化合物通过大量脂质过氧化增强氧化应激。我们的研究或许可以解释过去的实验室和野外研究结果,即即使在没有多不饱和醛的情况下,硅藻如何损害浮游动物食草动物,多不饱和醛是一类先前被认为介导硅藻对桡足类毒性活性的分子。