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Macroalgal Defense against Competitors and Herbivores

机译:对竞争对手和食草动物的宏观政局

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摘要

Macroalgae are the source of many harmful allelopathic compounds, which are synthesized as a defense strategy against competitors and herbivores. Therefore, it can be predicted that certain species reduce aquaculture performance. Herein, the allelopathic ability of 123 different taxa of green, red, and brown algae have been summarized based on literature reports. Research on macroalgae and their allelopathic effects on other animal organisms was conducted primarily in Australia, Mexico, and the United States. Nevertheless, there are also several scientific reports in this field from South America and Asia; the study areas in the latter continents coincide with areas where aquaculture is highly developed and widely practiced. Therefore, the allelopathic activity of macroalgae on coexisting animals is an issue that is worth careful investigation. In this work, we characterize the distribution of allelopathic macroalgae and compare them with aquaculture locations, describe the methods for the study of macroalgal allelopathy, present the taxonomic position of allelopathic macroalgae and their impact on coexisting aquatic competitors (Cnidaria) and herbivores (Annelida, Echinodermata, Arthropoda, Mollusca, and Chordata), and compile information on allelopathic compounds produced by different macroalgae species. This work gathers the current knowledge on the phenomenon of macroalgal allelopathy and their allelochemicals affecting aquatic animal (competitors and predators) worldwide and it provides future research directions for this topic.
机译:大理石是许多有害化化合物的来源,其作为针对竞争对手和食草动物的防御策略合成。因此,可以预测某些物种可以减少水产养殖性能。在此,基于文献报告,总结了123种不同的绿色,红色和棕褐色藻类类别的化感能力。澳大利亚,墨西哥和美国的澳大利亚,墨西哥的大型物体及其化感受作用及其异常效果。尽管如此,南美洲和亚洲的这一领域还有几份科学报告;后者大陆的研究领域与水产养殖高度发达和广泛实践的地区一致。因此,宏观格子对共存动物的化感移活性是值得仔细调查的问题。在这项工作中,我们表征了化厚的大甲酸盐的分布,并将它们与水产养殖位置进行比较,描述了大类化感染的研究方法,介绍了异常群的分类立场及其对共存水生竞争力(CNIDaria)和食草动物的影响(Annelida, echInodermata,节肢动物,软体动物和Chordata),以及编制关于不同的大甲藻种类产生的化感化合物的信息。这项工作收集了目前关于宏观生物化感发的现象及其影响全世界水生动物(竞争对手和捕食者和捕食者)的发电机的知识,并为这一主题提供了未来的研究方向。

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