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Spatial and temporal patterns in herbivory on a Caribbean fringing reef: the effects on plant distribution.加勒比边缘珊瑚礁上食草作用的时空模式:对植物分布的影响。
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2
Effect of marine protected areas (MPAs) on consumer diet: MPA fish feed higher in the food chain.海洋保护区(MPA)对消费者饮食的影响:MPA中的鱼类处于更高的食物链位置。
Mar Ecol Prog Ser. 2015 Nov 26;540:227-234. doi: 10.3354/meps11487.
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Positive Feedbacks Enhance Macroalgal Resilience on Degraded Coral Reefs.正反馈增强了大型藻类在退化珊瑚礁上的恢复力。
PLoS One. 2016 May 17;11(5):e0155049. doi: 10.1371/journal.pone.0155049. eCollection 2016.
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Consumer diversity interacts with prey defenses to drive ecosystem function.消费者多样性与猎物防御相互作用,从而推动生态系统功能。
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Nutrient supply from fishes facilitates macroalgae and suppresses corals in a Caribbean coral reef ecosystem.鱼类提供的营养物质有利于大型藻类的生长,而抑制了加勒比珊瑚礁生态系统中的珊瑚生长。
Sci Rep. 2013;3:1493. doi: 10.1038/srep01493.
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Effects of herbivory, nutrients, and reef protection on algal proliferation and coral growth on a tropical reef.草食作用、营养物质和珊瑚礁保护对热带珊瑚礁上藻类增殖和珊瑚生长的影响。
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7
Spatial patterns in herbivory on a coral reef are influenced by structural complexity but not by algal traits.珊瑚礁上食草动物的空间分布模式受结构复杂性影响,但不受藻类特征影响。
PLoS One. 2011 Feb 11;6(2):e17115. doi: 10.1371/journal.pone.0017115.
8
Fish schools: an asset to corals.鱼群:珊瑚的福音
Science. 1983 Jun 3;220(4601):1047-9. doi: 10.1126/science.220.4601.1047.
9
Chemical cues induce consumer-specific defenses in a bloom-forming marine phytoplankton.化学信号在一种形成水华的海洋浮游植物中诱导特定消费者防御反应。
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10
Mesoherbivores reduce net growth and induce chemical resistance in natural seaweed populations.中型草食动物会降低天然海藻种群的净生长率并诱导其产生化学抗性。
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脊椎动物食草动物对放牧的诱导防御:不常见还是研究不足?

Induced defence to grazing by vertebrate herbivores: uncommon or under-investigated?

作者信息

Dell Claire, Hay Mark E

机构信息

School of Biological Sciences and Aquatic Chemical Ecology Center, Georgia Institute of Technology, 950 Atlantic Drive, Atlanta, GA 30332, USA.

出版信息

Mar Ecol Prog Ser. 2016;561:137-145. doi: 10.3354/meps11928. Epub 2016 Dec 15.

DOI:10.3354/meps11928
PMID:29123328
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5673266/
Abstract

There are many examples of macroalgae inducing defence in response to small invertebrate herbivores like amphipods, isopods, and gastropods but few cases of induction in response to vertebrate macrograzers like herbivorous fishes. This may be because larger grazers rapidly consume large quantities of seaweed before induction can occur, thus selecting for constitutive rather than induced defences. Alternatively, the pattern could occur because induction due to feeding by macrograzers is less commonly investigated. In Fiji, field assays with the brown macroalga demonstrated that thalli growing in marine protected areas (MPAs) with abundant herbivorous fishes were significantly less palatable than those growing in adjacent fished areas (non-MPAs) with few herbivorous fishes. This significant preference occurred in 11 of 13 trials over 5 time periods and across 3 pairs of MPAs and spatially associated non-MPAs. This preference was not positively associated with algal nitrogen content or with the toughness of algal fronds. When ramets were taken from the non-MPA and half were partially grazed by fishes while the other half were protected from grazing, new growth from the controls was strongly preferred to new growth from the previously grazed ramets although these fronds originated from the same holdfast. This suggests that upregulates defences (probably chemical) in response to grazing by herbivorous fishes. This is one of the few published examples of induction of macroalgal defence in response to feeding by large, mobile grazers. It is unclear whether induced defences against fishes are rare or just under-investigated.

摘要

有许多大型藻类针对小型无脊椎食草动物(如片脚类动物、等足类动物和腹足类动物)诱导防御的例子,但针对草食性鱼类等脊椎动物大型食草动物诱导防御的情况却很少。这可能是因为较大的食草动物在诱导发生之前就迅速消耗大量海藻,从而选择了组成型防御而非诱导型防御。或者,这种模式的出现可能是因为大型食草动物取食引起的诱导较少被研究。在斐济,对棕色大型藻类进行的野外试验表明,生长在有大量草食性鱼类的海洋保护区(MPA)中的藻体,其适口性明显低于生长在相邻草食性鱼类较少的捕捞区(非MPA)中的藻体。在5个时间段内的13次试验中的11次,以及在3对MPA和空间相关的非MPA中,都出现了这种明显的偏好。这种偏好与藻类的氮含量或藻叶的韧性没有正相关。当从非MPA采集分株,一半被鱼类部分啃食,另一半免受啃食时,尽管这些藻叶来自同一个固着器,但对照分株的新生长部分比先前被啃食的分株的新生长部分更受青睐。这表明, 会对草食性鱼类的啃食做出反应上调防御(可能是化学防御)。这是已发表的少数几个大型藻类针对大型移动食草动物的取食诱导防御的例子之一。尚不清楚针对鱼类的诱导防御是罕见还是只是研究不足。