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不对称共存:藤壶与贻贝之间的双向非生物和生物效应

Asymmetric coexistence: bidirectional abiotic and biotic effects between goose barnacles and mussels.

作者信息

Kawai Takashi, Tokeshi Mutsunori

机构信息

Amakusa Marine Biological Laboratory, Kyushu University, Tomioka 2231, Reihoku-Amakusa, Kumamoto 863-2507, Japan.

出版信息

J Anim Ecol. 2006 Jul;75(4):928-41. doi: 10.1111/j.1365-2656.2006.01111.x.

DOI:10.1111/j.1365-2656.2006.01111.x
PMID:17009756
Abstract
  1. Species coexistence depends on the net effect of interacting species, representing the sum of multiple interaction components that may act simultaneously and vary independently depending on ambient environmental conditions. Consequently, for a comprehensive understanding of the compound nature of species interactions and coexistence, a mechanistic approach that allows a separate evaluation of each interaction component is required. 2. Two sessile filter-feeders, the goose barnacle Capitulum mitella and the mussel Septifer virgatus, coexist on moderately wave-exposed rocky shores in south-western Japan. In the upper intertidal, Capitulum positively influenced Septifer survivorship and growth through amelioration of thermal stress and of physical disturbance. On the other hand, these species are potential competitors as they have similar body sizes and modes of resource utilization. These opposite processes, facilitation and competition, are based on abiotic characteristics and biotic functions of the two species, respectively. 3. In order to quantify the bidirectional abiotic, biotic and net effects, a series of experimental manipulations was conducted involving the use of living neighbours with both abiotic and biotic effects, and artificial mimics to simulate abiotic effects without biotic effects. 4. Capitulum had strong positive abiotic effects on the mussel survivorship in most experimental periods, while the biotic effect was negligible or weakly negative, suggesting that the net effect of Capitulum on mussel survival was largely attributable to the abiotic effect. In contrast, a significantly negative biotic effect on the mussel growth rate was always present, though this was cancelled out by the larger, positive abiotic effect. In the case of Septifer, its abiotic and biotic effects on the survivorship of goose barnacles were negligible, while those on the growth rate showed temporal variation. 5. With respect to the relationship between species interaction and environmental conditions, the strength of abiotic facilitative effect of Capitulum on mussel survival increased with increasing abiotic stress, while the strength of biotic effect was negligible or weakly negative. As regards the effects of mussels on goose barnacles, our study indicated no obvious relationship. These results point to the importance of decomposing interaction for an accurate, mechanistic understanding of species relations and coexistence.
摘要
  1. 物种共存取决于相互作用物种的净效应,它代表了多个相互作用组分的总和,这些组分可能同时起作用,并根据周围环境条件独立变化。因此,为了全面理解物种相互作用和共存的复合性质,需要一种能够分别评估每个相互作用组分的机制方法。2. 两种固着滤食动物,茗荷儿Capitulum mitella和贻贝Septifer virgatus,共存于日本西南部中等海浪冲击的岩石海岸。在潮间带上部,茗荷儿通过缓解热应激和物理干扰,对贻贝的存活和生长产生积极影响。另一方面,由于它们体型相似且资源利用方式相同,这些物种是潜在的竞争者。这些相反的过程,即促进作用和竞争作用,分别基于这两个物种的非生物特征和生物功能。3. 为了量化双向的非生物、生物和净效应,进行了一系列实验操作,包括使用具有非生物和生物效应的活邻居,以及模拟无生物效应的人工模型。4. 在大多数实验阶段,茗荷儿对贻贝存活具有强烈的正向非生物效应,而生物效应可忽略不计或呈微弱负向,这表明茗荷儿对贻贝存活的净效应在很大程度上归因于非生物效应。相比之下,对贻贝生长速率始终存在显著的负向生物效应,尽管这被更大的正向非生物效应抵消。就贻贝而言,其对茗荷儿存活的非生物和生物效应可忽略不计,而对生长速率的效应则呈现出时间变化。5. 关于物种相互作用与环境条件之间的关系,茗荷儿对贻贝存活的非生物促进作用强度随着非生物胁迫的增加而增强,而生物效应的强度可忽略不计或呈微弱负向。至于贻贝对茗荷儿的影响,我们的研究未表明明显关系。这些结果表明,分解相互作用对于准确、机制性地理解物种关系和共存至关重要。

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引用本文的文献

1
Testing the facilitation-competition paradigm under the stress-gradient hypothesis: decoupling multiple stress factors.在应激梯度假说下检验促进-竞争范式:分离多种应激因素
Proc Biol Sci. 2007 Oct 7;274(1624):2503-8. doi: 10.1098/rspb.2007.0871.