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广盐性纤毛原生动物红海伪角毛虫中赤藓内酯的化学防御作用

Chemical Defense by Erythrolactones in the Euryhaline Ciliated Protist, Pseudokeronopsis erythrina.

作者信息

Buonanno Federico, Anesi Andrea, Giuseppe Graziano Di, Guella Graziano, Ortenzi Claudio

机构信息

1 Laboratory of Protistology and Biology Education, Department of ECHT, University of Macerata, Piazzale Bertelli, 1, 62100 Macerata, Italy.

2 Bioorganic Chemistry Laboratory, Department of Physics, University of Trento, Via Sommarive 14, 38123 Povo (Trento), Italy.

出版信息

Zoolog Sci. 2017 Feb;34(1):42-51. doi: 10.2108/zs160123.

Abstract

Pseudokeronopsis erythrina produces three new secondary metabolites, erythrolactones A2, B2 and C2, and their respective sulfate esters (A1, B1, C1), the structures of which have been recently elucidated on the basis of NMR spectroscopic data coupled to high resolution mass measurements (HR-MALDI-TOF). An analysis of the discharge of the protozoan pigment granules revealed that the non-sulfonated erythrolactones are exclusively stored in these cortical organelles, which are commonly used by a number of ciliates as chemical weapons in offense/defense interactions with prey and predators. We evaluated the toxic activity of pigment granule discharge on a panel of free-living ciliates and micro-invertebrates, and the activity of each single purified erythrolactone on three ciliate species. We also observed predator-prey interactions of P. erythrina with unicellular and multicellular predators. Experimental results confirm that only P. erythrina cells with discharged pigment granules were preferentially or exclusively hunted and eaten by at least some of its predators, whereas almost all intact (fully pigmented) cells remained alive. Our results indicate that erythrolactones are very effective as a chemical defense in P. erythrina.

摘要

刺桐伪角毛虫产生了三种新的次生代谢产物,刺桐内酯A2、B2和C2,以及它们各自的硫酸酯(A1、B1、C1),其结构最近已根据核磁共振光谱数据结合高分辨率质谱测量(HR-MALDI-TOF)得以阐明。对原生动物色素颗粒释放情况的分析表明,未磺化的刺桐内酯仅储存在这些皮层细胞器中,许多纤毛虫在与猎物和捕食者的攻防相互作用中通常将其用作化学武器。我们评估了色素颗粒释放在一组自由生活的纤毛虫和微型无脊椎动物上的毒性活性,以及每种单一纯化的刺桐内酯对三种纤毛虫物种的活性。我们还观察了刺桐伪角毛虫与单细胞和多细胞捕食者之间的捕食者 - 猎物相互作用。实验结果证实,只有色素颗粒已释放的刺桐伪角毛虫细胞会被至少一些捕食者优先或专门捕食和吃掉,而几乎所有完整(色素充足)的细胞都存活了下来。我们的结果表明,刺桐内酯在刺桐伪角毛虫中作为一种化学防御非常有效。

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