Comparative ecology of a lowland and a subalpine species of Mnium in the northern Rocky Mountains

被引:0
作者
Natalie Cleavitt
机构
[1] Cornell University,Department of Natural Resources
来源
Plant Ecology | 2004年 / 174卷
关键词
Altitudinal limit; Establishment; Transplant;
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学科分类号
摘要
Factors that set the altitudinal limits of plants have been relatively well explored for many land plant groups, but not for bryophytes. Bryophytes typically represent a significant portion of alpine floras with many species specific to highland systems. Differences between highland and lowland bryophytes have been underinvestigated. In the present study spanning three growing seasons, a subalpine and a lowland moss were both reciprocally planted as apical fragments and transplanted as adults between sites at 1400 m and 2000 m in the Front Ranges of the Rocky Mountains, Alberta. The lowland species, Mnium spinulosum, was less tolerant of conditions at 2000 m than the subalpine species, M. arizonicum, was to conditions at 1400 m. In particular, M. spinulosum had lower establishment from both apical fragments and spores at higher elevation sites. Both species had significantly lower establishment during the abnormally cold growing season of 1999, but fragments of M. arizonicum were better able to adjust their investment in establishment. The effect of a dominant feather moss, Hylocomium splendens, on establishment and transplant health was tested for M. arizonicum. Establishment of M. arizonicum was lower in Hylocomium mats than on bare humus regardless of site elevation suggesting allelopathy; however, stem survival in adult transplants was higher in Hylocomium mats than in Mnium dominated microsites at the higher elevation suggesting facilitation. Competition, rather than a lack of physiological plasticity, probably determines the lower elevation limit of the subalpine moss, while poor establishment ability at low temperatures accounts for the upper elevation limit of the montane moss.
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页码:205 / 216
页数:11
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  • [1] Adams W.W.(1990)The ratio of variable to maximal chlorophyll fluorescence from photosystem II, measured in leaves at ambient temperature and at 77K, as an indicator of the photon yield of photosynthesis Planta 180 166-174
  • [2] Demmig-Adams B.(1990)List of mosses of North America north of Mexico The Bryologist 93 448-499
  • [3] Winter K.(1980)Photosynthetic response and adaptation to temperature in higher plants Annual Review of Plant Physiology 31 491-543
  • [4] Schreiber U.(2001)Experimental tests for determining the causes of altitudinal distribution of Flora 196 227-241
  • [5] Anderson L.E.(1998) Jacq. in the Harz Mountains Oikos 82 561-573
  • [6] Crum H.A.(2002)Competition and facilitation on elevation gradients in subalpine forests of the northern Rocky Mountains, USA Nature 417 844-848
  • [7] Buck W.R.(2001)Positive interactions among alpine plants increase with stress The Bryologist 104 59-68
  • [8] Berry J.(2002)Disentangling moss species limitations: the role of substrate specificity for six moss species occurring on substrates with varying pH and percent organic matter Journal of Ecology 90 785-795
  • [9] Björkman O.(1999)Stress tolerance of rare and common moss species in relation to their occupied environments and asexual dispersal potential Sm. Annals of Botany 84 235-244
  • [10] Bruelheide H(1975)Chlorophyll fluorescence during drying and rehydration in the mosses Journal of Bryology 8 317-336