<p>The search for simple principles that underlie the spatial structure and dynamics of plant communities is a long-standing challenge in ecology<sup><CitationRef AdditionalCitationIDS="CR2 CR3 CR4 CR5" CitationID="CR1">1</CitationRef>–<CitationRef CitationID="CR6">6</CitationRef></sup>. In particular, the relationship between species coexistence and the spatial distribution of plants is challenging to resolve in species-rich communities<sup><CitationRef AdditionalCitationIDS="CR8" CitationID="CR7">7</CitationRef>–<CitationRef CitationID="CR9">9</CitationRef></sup>. Here we present a comprehensive analysis of the spatial patterns of 720 tree species in 21 large forest plots and their consequences for species coexistence. We show that species with low abundance tend to be more spatially aggregated than more abundant species. Moreover, there is a latitudinal gradient in the strength of this negative aggregation–abundance relationship that increases from tropical to temperate forests. We suggest, in line with recent work<sup><CitationRef CitationID="CR10">10</CitationRef></sup>, that latitudinal gradients in animal seed dispersal<sup><CitationRef CitationID="CR11">11</CitationRef></sup> and mycorrhizal associations<sup><CitationRef AdditionalCitationIDS="CR13" CitationID="CR12">12</CitationRef>–<CitationRef CitationID="CR14">14</CitationRef></sup> may jointly generate this pattern. By integrating the observed spatial patterns into population models<sup><CitationRef CitationID="CR8">8</CitationRef></sup>, we derive the conditions under which species can invade from low abundance in terms of spatial patterns, demography, niche overlap and immigration. Evaluation of the spatial-invasion condition for the 720 tree species analysed suggests that temperate and tropical forests both meet the invasion criterion to a similar extent but through contrasting strategies conditioned by their spatial patterns. Our approach opens up new avenues for the integration of observed spatial patterns into ecological theory and underscores the need to understand the interaction among spatial patterns at the neighbourhood scale and multiple ecological processes in greater detail.</p>

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Latitudinal scaling of aggregation with abundance and coexistence in forests

  • Thorsten Wiegand,
  • Xugao Wang,
  • Samuel M. Fischer,
  • Nathan J. B. Kraft,
  • Norman A. Bourg,
  • Warren Y. Brockelman,
  • Guanghong Cao,
  • Min Cao,
  • Wirong Chanthorn,
  • Chengjin Chu,
  • Stuart Davies,
  • Sisira Ediriweera,
  • C. V. Savitri Gunatilleke,
  • I. A. U. Nimal Gunatilleke,
  • Zhanqing Hao,
  • Robert Howe,
  • Mingxi Jiang,
  • Guangze Jin,
  • W. John Kress,
  • Buhang Li,
  • Juyu Lian,
  • Luxiang Lin,
  • Feng Liu,
  • Keping Ma,
  • William McShea,
  • Xiangcheng Mi,
  • Jonathan A. Myers,
  • Anuttara Nathalang,
  • David A. Orwig,
  • Guochun Shen,
  • Sheng-Hsin Su,
  • I-Fang Sun,
  • Xihua Wang,
  • Amy Wolf,
  • Enrong Yan,
  • Wanhui Ye,
  • Yan Zhu,
  • Andreas Huth

摘要

The search for simple principles that underlie the spatial structure and dynamics of plant communities is a long-standing challenge in ecology16. In particular, the relationship between species coexistence and the spatial distribution of plants is challenging to resolve in species-rich communities79. Here we present a comprehensive analysis of the spatial patterns of 720 tree species in 21 large forest plots and their consequences for species coexistence. We show that species with low abundance tend to be more spatially aggregated than more abundant species. Moreover, there is a latitudinal gradient in the strength of this negative aggregation–abundance relationship that increases from tropical to temperate forests. We suggest, in line with recent work10, that latitudinal gradients in animal seed dispersal11 and mycorrhizal associations1214 may jointly generate this pattern. By integrating the observed spatial patterns into population models8, we derive the conditions under which species can invade from low abundance in terms of spatial patterns, demography, niche overlap and immigration. Evaluation of the spatial-invasion condition for the 720 tree species analysed suggests that temperate and tropical forests both meet the invasion criterion to a similar extent but through contrasting strategies conditioned by their spatial patterns. Our approach opens up new avenues for the integration of observed spatial patterns into ecological theory and underscores the need to understand the interaction among spatial patterns at the neighbourhood scale and multiple ecological processes in greater detail.