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首页> 外文期刊>Journal of Tropical Ecology >Quantity and spatial distribution of seeds dispersed by a western lowland gorilla population in south-east Cameroon
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Quantity and spatial distribution of seeds dispersed by a western lowland gorilla population in south-east Cameroon

机译:喀麦隆东南部西部低地大猩猩种群分散的种子的数量和空间分布

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Understanding the ecological function of large frugivores in tropical forests is important considering their central position in seed-dispersal networks. This study illustrates the seed-dispersal effectiveness of a western lowland gorilla (Gorilla gorilla gorilla) population in Cameroon by looking at the interaction of seed quantity, species regeneration traits and the environmental characteristics of the deposition sites (sleeping sites vs. feeding trails) in order to discuss the role of gorillas within the ecosystem. The analysis of 1030 faecal samples collected over a 3-y period (September 2009-August 2012) showed that gorillas dispersed a diverse array of species (58 spp. identified), with an average of 289 intact seeds (>5 mm) d(-1) per individual. Seed damage during mouth and gut processing occurred for 12 spp., generally accounting for 5% of specific seed load. Germination trials suggested that germination success of passed seeds remained unchanged (N = 6 spp.) or improved (N = 5 spp.) after gut passage compared with hand-cleaned seeds, with one exception. Indicator species identification (IndVal method) and General Discriminant Analysis suggested that sleeping sites (N = 36), as a main type of seed deposition site, correspond to regenerating microhabitats and correspondingly degree of canopy openness is one variable discriminating significantly this type of deposition site with random locations in the forest (N = 36) used as a proxy for non-directed seed deposition on feeding trails. With a mean canopy openness of 19-27%, sleeping sites offer optimal light conditions for the seedling recruitment of non-pioneer light-demanding species, the seeds of which encompass 47.4% of the total seed load dispersed over the 3-y period. From this study, it is hypothesized that the gorilla performed directed-dispersal of some light-demanding plant species at sleeping sites, and hence, by being actively implicated in gap-phase dynamics, fulfils a valuable ecological function within its ecosystem.
机译:考虑到大型节食动物在种子传播网络中的中心地位,了解热带森林中的大型节食动物具有重要的生态功能。这项研究通过观察喀麦隆的种子数量,物种再生性状和沉积位点(睡眠位点与觅食道)的环境特征的相互作用,说明了喀麦隆西部低地大猩猩(Gorilla gorilla gorilla)种群的种子传播效果。为了讨论大猩猩在生态系统中的作用。对在3年内(2009年9月至2012年8月)收集的1030份粪便样品进行的分析表明,大猩猩散布了各种各样的物种(已鉴定出58个物种),平均d达289个完整种子(> 5 mm)( -1)每个人。口和肠加工过程中种子损坏发生了12 spp。,通常占种子载量的<5%。发芽试验表明,与手工清洗的种子相比,通过肠道后传代种子的发芽成功率保持不变(N = 6 spp。)或有所改善(N = 5 spp。)。指示剂物种鉴定(IndVal方法)和一般判别分析表明,睡眠位点(N = 36)是种子沉积位点的主要类型,对应于再生微生境,相应的冠层开放度是可以明显区分这种沉积位点的一个变量在森林中的随机位置(N = 36)用作喂食径上非定向种子沉积的代理。休眠位点的平均冠层开放度为19-27%,为非先驱性需光物种的幼苗募集提供了最佳的光照条件,其种子占3年期间分散的总种子负荷的47.4%。根据这项研究,可以推测,大猩猩在睡眠点对某些对光有需求的植物进行了定向分散,因此,通过积极参与间隙相动力学,在其生态系统中发挥了重要的生态功能。

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