4.4 Article

Conspecific plants are better 'nurses' than rocks: consistent results revealing intraspecific facilitation as a process that promotes establishment in a hyper-arid environment

期刊

AOB PLANTS
卷 9, 期 -, 页码 -

出版社

OXFORD UNIV PRESS
DOI: 10.1093/aobpla/plx056

关键词

Arid ecosystems; germination; intraspecific facilitation; nurse rocks; plant regeneration; seed predation; seedling establishment

资金

  1. Rufford Small Grant Foundation
  2. FONDECYT Post-Doctoral Research Grant [3120123]
  3. FONDECYT Initiation Grant [11140400]
  4. Institute of Ecology and Biodiversity (IEB) Chilean Millennium Initiative [P05-002]
  5. CONICYT [PFB-23]
  6. IEB [P05-002]
  7. CONICYT Doctoral fellowships [21140050, 21120854]

向作者/读者索取更多资源

Harsh environmental conditions in arid ecosystems limit seedling recruitment to microhabitats under nurse structures, such as shrubs or rocks. These structures, however, do not necessarily afford the same benefits to plants because nurse rocks provide only physical nurse effects, whereas nurse plants can provide both physical and biological nurse effects. Nevertheless, if the nurse plant is a conspecific, the benefits it provides may be outweighed by higher mortality due to negative density-dependent processes; consequently, negative density-dependence is expected to limit plants from acting as nurses to their own seedlings. The degree to which an abiotic nurse may be more beneficial than a conspecific one remains largely unexplored. Here, we examine the role and elucidate the mechanisms by which conspecific plants and rocks promote plant establishment in a hyper-arid desert. For 4 years, we examined establishment patterns of Myrcianthes coquimbensis (Myrtaceae), a threatened desert shrub that recruits solely in rock cavities and under conspecific shrubs. Specifically, we characterized these microhabitats, as well as open interspaces for comparison, and conducted germination, seed removal and seedling survival experiments. Our results revealed that conspecific shrubs and nurse rocks modified environmental conditions in similar ways; soil and air temperatures were lower, and water availability was higher than in open interspaces. We found no evidence on negative density-dependent recruitment: seed removal was lowest and seedling emergence highest under conspecific plants, moreover seedling survival probabilities were similar in rock cavities and under conspecific plants. We conclude that the probability of establishment was highest under conspecific plants than in other microhabitats, contrasting what is expected under the Janzen-Connell recruitment model. We suggest that for species living in stressful environments, population regulation may be a function of positive density-dependence and intraspecific facilitation may be a process that promotes the persistence of some plant species within a community.

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