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基于营养品质、化学防御和物理防御的热带海草适口性对铵胁迫的响应及其对食草作用的后续影响。

Response of tropical seagrass palatability based on nutritional quality, chemical deterrents and physical defence to ammonium stress and its subsequent effect on herbivory.

作者信息

Fang Yang, Jiang Zhijian, Li Linglan, Li Jinlong, He Jialu, Liu Songlin, Wu Yunchao, Cui Lijun, Huang Xiaoping

机构信息

Key Laboratory of Tropical Marine Bio-resources and Ecology, South China Sea Institute of Oceanology, Chinese Academy of Sciences, Guangzhou, 510301, PR China; University of Chinese Academy of Sciences, Beijing, 100049, PR China.

Key Laboratory of Tropical Marine Bio-resources and Ecology, South China Sea Institute of Oceanology, Chinese Academy of Sciences, Guangzhou, 510301, PR China; Southern Marine Science and Engineering Guangdong Laboratory (Guangzhou), 511458, PR China; Innovation Academy of South China Sea Ecology and Environmental Engineering, Chinese Academy of Sciences, Guangzhou, 510301, PR China; University of Chinese Academy of Sciences, Beijing, 100049, PR China; Sanya National Marine Ecosystem Research Station, South China Sea Institute of Oceanology, Chinese Academy of Sciences, Sanya, 572000, PR China; Key Laboratory of Tropical Marine Biotechnology of Hainan Province, Sanya Institute of Oceanology, South China Sea Institute of Oceanology, Chinese Academy of Sciences, Sanya, 572000, PR China.

出版信息

Mar Environ Res. 2022 Dec;182:105785. doi: 10.1016/j.marenvres.2022.105785. Epub 2022 Oct 23.

Abstract

Seagrass-herbivore interactions play a principal role in regulating the structure and function of coastal food webs, which were affected by nutrient enrichment. Seawater nutrient enrichment might change seagrass palatability by altering seagrass physical and chemical traits, consequently modulating herbivory patterns, but this remains elusive. In this study, the dominant tropical seagrass Thalassia hemprichii was cultured in different ammonium concentrations to examine the response of seagrass nutritional quality, deterrent secondary metabolites, and leaf toughness, as well as the subsequent effect of the changed physical (e.g., leaf toughness) and chemical traits (e.g., nitrogen content; total phenol) on the grazing activity of the herbivorous snail Cerithidea rhizophorarum. Ammonium enrichment enhanced seagrass nutritional quality and decreased physical defence. Low ammonium enrichment increased total phenol content, while high ammonium enrichment reduced it. Both low and high ammonium enrichment enhanced the grazing intensity of C. rhizophorarum on seagrass. Interestingly, nutritional quality mostly determined the herbivory preference of C. rhizophorarum on the intact seagrass having physical structure, with a chemical deterrent (total phenol) playing a secondary role. In contrast, chemical deterrent mainly determined the grazing intensity on agar seagrass food which was made artificially to exclude physical structure. This indicated that seagrass leaf physical structure might hinder phenol compounds from deterring herbivores. Overall, the results presented here demonstrate that ammonium enrichment remarkably increased seagrass palatability and subsequently induced higher susceptibility to herbivory, which might induce seagrass loss.

摘要

海草与食草动物的相互作用在调节受营养物质富集影响的沿海食物网的结构和功能方面起着主要作用。海水营养物质富集可能通过改变海草的物理和化学特性来改变海草的适口性,从而调节食草模式,但这一点仍不明确。在本研究中,将热带优势海草亨氏泰来草在不同铵浓度下培养,以研究海草营养质量、驱避性次生代谢产物和叶片韧性的响应,以及物理(如叶片韧性)和化学特性(如氮含量、总酚)变化对食草性蜗牛红树拟蟹守螺摄食活动的后续影响。铵富集提高了海草的营养质量并降低了物理防御能力。低铵富集增加了总酚含量,而高铵富集则降低了总酚含量。低铵和高铵富集均增强了红树拟蟹守螺对海草的摄食强度。有趣的是,营养质量在很大程度上决定了红树拟蟹守螺对具有物理结构的完整海草的食草偏好,化学驱避剂(总酚)起次要作用。相比之下,化学驱避剂主要决定了对人工制作的排除物理结构的琼脂海草食物的摄食强度。这表明海草叶片的物理结构可能会阻碍酚类化合物对食草动物的驱避作用。总体而言,此处呈现的结果表明,铵富集显著提高了海草的适口性,随后导致对食草作用的更高易感性,这可能会导致海草损失。

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