2003Journal of PhycologyRequires access

NOVEL STEROLS OF THE TOXIC DINOFLAGELLATE KARENIA BREVIS (DINOPHYCEAE): A DEFENSIVE FUNCTION FOR UNUSUAL MARINE STEROLS? 1

José‐Luis Giner, Juan A. Faraldos, Gregory L. Boyer

Open publisher page 63 citations

Abstract

The “red tide” organism Karenia brevis (Davis) Hansen & Moestrup (= Gymnodinium breve Davis) produces a mixture of brevetoxins, potent neurotoxins responsible for neurotoxic shellfish poisoning in humans and massive fish kills in the Gulf of Mexico and the southern Atlantic coast of the United States. The sterol composition of K. brevis was found to be a mixture of six novel and rare Δ 8(14) sterols. The two predominant sterols, (24 R )‐4α‐methylergosta‐8(14), 22‐dienol and (24 R )‐4α‐methyl‐27‐norergosta‐8(14), 22‐dienol, were named gymnodinosterol and brevesterol and represent potentially useful biomarkers for K. brevis. A possible function for such unusual marine sterols is proposed whereby structural modifications render the sterols non‐nutritious to marine invertebrates, reducing predation and thereby enhancing the ability of the dinoflagellates to form massive blooms.

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What this paper is about

The “red tide” organism Karenia brevis (Davis) Hansen & Moestrup (= Gymnodinium breve Davis) produces a mixture of brevetoxins, potent neurotoxins responsible for neurotoxic shellfish poisoning in humans and massive fish kills in the Gulf of Mexico and the southern Atlantic coast of the United States. The sterol composition of K. brevis was found to be a mixture of six novel and rare Δ 8(14) sterols. The two predominant sterols, (24 R )‐4α‐methylergosta‐8(14), 22‐dienol and (24 R )‐4α‐methyl‐27‐norergosta‐8(14), 22‐dienol, were named gymnodinosterol and brevesterol and represent potentially useful biomarkers for K. brevis. A possible function for such unusual marine sterols is proposed whereby structural modifications render the sterols non‐nutritious to marine invertebrates, reducing predation and thereby enhancing the ability of the dinoflagellates to form massive blooms.

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Available abstract

The “red tide” organism Karenia brevis (Davis) Hansen & Moestrup (= Gymnodinium breve Davis) produces a mixture of brevetoxins, potent neurotoxins responsible for neurotoxic shellfish poisoning in humans and massive fish kills in the Gulf of Mexico and the southern Atlantic coast of the United States. The sterol composition of K. brevis was found to be a mixture of six novel and rare Δ 8(14) sterols. The two predominant sterols, (24 R )‐4α‐methylergosta‐8(14), 22‐dienol and (24 R )‐4α‐methyl‐27‐norergosta‐8(14), 22‐dienol, were named gymnodinosterol and brevesterol and represent potentially useful biomarkers for K. brevis. A possible function for such unusual marine sterols is proposed whereby structural modifications render the sterols non‐nutritious to marine invertebrates, reducing predation and thereby enhancing the ability of the dinoflagellates to form massive blooms.

Key concepts: Dinoflagellate, Biology, Gymnodinium, Dinophyceae, Red tide, Marine invertebrates, Sterol, Fish kill

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