Literature DB >> 18705371

On the relative contributions of wind vs. animals to seed dispersal of four Sierra Nevada pines.

Stephen B Vander Wall1.   

Abstract

Selective pressures that influence the form of seed dispersal syndromes are poorly understood. Morphology of plant propagules is often used to infer the means of dispersal, but morphology can be misleading. Several species of pines, for example, have winged seeds adapted for wind dispersal but owe much of their establishment to scatter-hoarding animals. Here the relative importance of wind vs. animal dispersal is assessed for four species of pines of the eastern Sierra Nevada that have winged seeds but differed in seed size: lodgepole pine (Pinus contorta murrayana, 8 mg); ponderosa pine (Pinus ponderosa ponderosa, 56 mg); Jeffrey pine (Pinus jeffreyi, 160 mg); and sugar pine (Pinus lambertiana, 231 mg). Pre-dispersal seed mortality eliminated much of the ponderosa pine seed crop (66%), but had much less effect on Jeffrey pine (32% of seeds destroyed), lodgepole pine (29%), and sugar pine (7%). When cones opened most filled seeds were dispersed by wind. Animals removed > 99% of wind-dispersed Jeffrey and sugar pine seeds from the ground within 60 days, but animals gathered only 93% of lodgepole pine seeds and 38% of ponderosa pine seeds during the same period. Animals gathered and scatter hoarded radioactively labeled ponderosa, Jeffrey, and sugar pine seeds, making a total of 2103 caches over three years of study. Only three lodgepole pine caches were found. Caches typically contained 1-4 seeds buried 5-20 mm deep, depths suitable for seedling emergence. Although Jeffrey and sugar pine seeds are initially wind dispersed, nearly all seedlings arise from animal caches. Lodgepole pine is almost exclusively wind dispersed, with animals acting as seed predators. Animals treated ponderosa pine in an intermediate fashion. Two-phased dispersal of large, winged pine seeds appears adaptive; initial wind dispersal helps to minimize pre-dispersal seed mortality whereas scatter hoarding by animals places seeds in sites with a higher probability of seedling establishment.

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Year:  2008        PMID: 18705371     DOI: 10.1890/07-0409.1

Source DB:  PubMed          Journal:  Ecology        ISSN: 0012-9658            Impact factor:   5.499


  7 in total

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Authors:  Stephen B Vander Wall
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4.  Factors influencing repeated seed movements by scatter-hoarding rodents in an alpine forest.

Authors:  Bo Wang; Jin Chen; Richard T Corlett
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5.  Conditions favouring hard seededness as a dispersal and predator escape strategy.

Authors:  Torbjørn R Paulsen; Göran Högstedt; Ken Thompson; Vigdis Vandvik; Sigrunn Eliassen; Michelle Leishman
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6.  Spatial assortment of mixed propagules explains the acceleration of range expansion.

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7.  Still standing: Recent patterns of post-fire conifer refugia in ponderosa pine-dominated forests of the Colorado Front Range.

Authors:  Teresa B Chapman; Tania Schoennagel; Thomas T Veblen; Kyle C Rodman
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  7 in total

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