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猎物扩散率会影响猎物物种组成和特征多样性,以应对复合生境中的多种捕食者。

Prey dispersal rate affects prey species composition and trait diversity in response to multiple predators in metacommunities.

机构信息

Section of Integrative Biology, University of Texas at Austin, 1 University Station C0930, Austin, TX 78712, USA.

出版信息

J Anim Ecol. 2010 Sep;79(5):1000-11. doi: 10.1111/j.1365-2656.2010.01715.x. Epub 2010 Jun 24.

Abstract
  1. Recent studies indicate that large-scale spatial processes can alter local community structuring mechanisms to determine local and regional assemblages of predators and their prey. In metacommunities, this may occur when the functional diversity represented in the regional predator species pool interacts with the rate of prey dispersal among local communities to affect prey species diversity and trait composition at multiple scales. 2. Here, we test for effects of prey dispersal rate and spatially and temporally heterogeneous predation from functionally dissimilar predators on prey structure in pond mesocosm metacommunities. An experimental metacommunity consisted of three pond mesocosm communities supporting two differentially size-selective invertebrate predators and their zooplankton prey. In each metacommunity, two communities maintained constant predation and supported either Gyrinus sp. (Coleoptera) or Notonecta ungulata (Hemiptera) predators generating a spatial prey refuge while the third community supported alternating predation from Gyrinus sp. and N. ungulata generating a temporal prey refuge. Mesocosm metacommunities were connected at either low (0.7% day(-1)) or high (10% day(-1)) planktonic prey dispersal. The diversity, composition and body size of zooplankton prey were measured at local and regional (metacommunity) scales. 3. Metacommunities experiencing the low prey dispersal rate supported the greatest regional prey species diversity (H') and evenness (J'). Neither dispersal rate nor predation regime affected local prey diversity or evenness. The spatial prey refuge at low dispersal maintained the largest difference in species composition and body size diversity between communities under Gyrinus and Notonecta predation, suggesting that species sorting was operating at the low dispersal rate. There was no effect of dispersal rate on species diversity or body size distribution in the temporal prey refuge. 4. The frequency distribution, but not the range, of prey body sizes within communities depended upon prey dispersal rate and predator identity. Taken together, these results demonstrate that prey dispersal rate can moderate the strength of predation to influence prey species diversity and the local frequency distribution of prey traits in metacommunities supporting ecologically different predators.
摘要
  1. 最近的研究表明,大规模的空间过程可以改变局部群落结构机制,从而决定局部和区域的捕食者及其猎物的集合。在集合群落中,当区域捕食物种库中代表的功能多样性与猎物在局部群落之间的扩散率相互作用,影响多个尺度的猎物物种多样性和特征组成时,可能会发生这种情况。

  2. 在这里,我们测试了猎物扩散率和空间和时间异质捕食对池塘中型生境集合群落中猎物结构的影响。一个实验性的集合群落由三个池塘中型生境群落组成,支持两种不同大小选择性的无脊椎动物捕食者及其浮游动物猎物。在每个集合群落中,两个群落维持恒定的捕食,并支持 Gyrinus sp.(鞘翅目)或 Notonecta ungulata(半翅目)捕食者,从而产生空间猎物避难所,而第三个群落则支持 Gyrinus sp. 和 N. ungulata 之间的交替捕食,从而产生时间猎物避难所。中型生境集合群落通过低(0.7%天(-1))或高(10%天(-1))浮游动物扩散连接。在局部和区域(集合群落)尺度上测量了浮游动物猎物的多样性、组成和身体大小。

  3. 经历低猎物扩散率的集合群落支持最大的区域猎物物种多样性(H')和均匀度(J')。扩散率或捕食制度都没有影响局部猎物多样性或均匀度。低扩散率下的空间猎物避难所保持了 Gyrinus 和 Notonecta 捕食下群落之间物种组成和身体大小多样性的最大差异,表明物种分类在低扩散率下起作用。在时间猎物避难所中,扩散率对物种多样性或身体大小分布没有影响。

  4. 群落内猎物身体大小的频率分布,但不是范围,取决于猎物扩散率和捕食者身份。总之,这些结果表明,猎物扩散率可以调节捕食的强度,从而影响集合群落中猎物物种多样性和支持生态不同捕食者的猎物特征的局部频率分布。

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