Hepburn H R, Berman N J, Jacobson H J, Fatti L P
Department of Physiology, University of the Witwatersrand, Johannesburg, Republic of South Africa.
Department of Applied Mathematics, University of the Witwatersrand, Johannesburg, Republic of South Africa.
Oecologia. 1973 Dec;12(4):373-382. doi: 10.1007/BF00345049.
Twenty-five arthropod defensive chemicals were tested on a potential fish predator to assay basic repellency, interniche effectiveness and mimetic interactions among repellents, and predator tolerance to repellents.The defensive secretions of aquatic arthropods are more effective repellents than those of terrestrial or cryptozoic arthropods. Phenolic compounds are more effective than carbonylic or acidic compounds. Repellency is most effective in compounds of reduced water solubility. Repeated exposure to gradually increasing molar concentrations of benzoic acid resulted in a greater acceptability of this compound to fish predators. It is suggested that Mullerian mimicry systems based on large numbers of species may be susceptible to dilution effects in terms of effectiveness.
对25种节肢动物防御性化学物质进行了测试,以测定其对一种潜在鱼类捕食者的基本驱避性、生态位间有效性、驱避剂之间的模拟相互作用以及捕食者对驱避剂的耐受性。水生节肢动物的防御分泌物比陆生或隐生节肢动物的防御分泌物更有效的驱避剂。酚类化合物比羰基或酸性化合物更有效。驱避性在水溶性降低的化合物中最为有效。反复接触逐渐增加摩尔浓度的苯甲酸会使这种化合物对鱼类捕食者的可接受性更高。有人提出,基于大量物种的缪勒拟态系统在有效性方面可能易受稀释效应的影响。