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首页> 外文期刊>Global change biology >Pyrodiversity begets plant-pollinator community diversity
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Pyrodiversity begets plant-pollinator community diversity

机译:火成多样性导致植物传粉者群落多样性

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Fire has a major impact on the structure and function of many ecosystems globally. Pyrodiversity, the diversity of fires within a region (where diversity is based on fire characteristics such as extent, severity, and frequency), has been hypothesized to promote biodiversity, but changing climate and land management practices have eroded pyrodiversity. To assess whether changes in pyrodiversity will have impacts on ecological communities, we must first understand the mechanisms that might enable pyrodiversity to sustain biodiversity, and how such changes might interact with other disturbances such as drought. Focusing on plant-pollinator communities in mixed-conifer forest with frequent fire in Yosemite National Park, California, we examine how pyrodiversity, combined with drought intensity, influences those communities. We find that pyrodiversity is positively related to the richness of the pollinators, flowering plants, and plant-pollinator interactions. On average, a 5% increase in pyrodiversity led to the gain of approximately one pollinator and one flowering plant species and nearly two interactions. We also find that a diversity of fire characteristics contributes to the spatial heterogeneity (-diversity) of plant and pollinator communities. Lastly, we find evidence that fire diversity buffers pollinator communities against the effects of drought-induced floral resource scarcity. Fire diversity is thus important for the maintenance of flowering plant and pollinator diversity and predicted shifts in fire regimes to include less pyrodiversity compounded with increasing drought occurrence will negatively influence the richness of these communities in this and other forested ecosystems. In addition, lower heterogeneity of fire severity may act to reduce spatial turnover of plant-pollinator communities. The heterogeneity of community composition is a primary determinant of the total species diversity present in a landscape, and thus, lower pyrodiversity may negatively affect the richness of plant-pollinator communities across large spatial scales.
机译:火灾对全球许多生态系统的结构和功能产生重大影响。有人说,热多样性是一个区域内火灾的多样性(多样性是基于火灾特征,例如范围,严重性和频率),以促进生物多样性,但是不断变化的气候和土地管理做法已经侵蚀了生物多样性。为了评估生物多样性的变化是否会对生态社区产生影响,我们必须首先了解可能使生物多样性维持生物多样性的机制,以及这些变化如何与干旱等其他干扰相互作用。针对加利福尼亚优胜美地国家公园中频繁发生火灾的针叶树混交林中的植物授粉媒介群落,我们研究了放热度和干旱强度如何影响这些群落。我们发现,放热性与传粉媒介,开花植物和植物与传粉媒介之间的相互作用呈正相关。平均而言,发火性增加5%导致大约一种传粉媒介和一种开花植物物种的获得以及近两种相互作用。我们还发现,火灾特征的多样性导致植物和授粉媒介群落的空间异质性(-多样性)。最后,我们发现证据表明,火的多样性使传粉媒介群落免受干旱引起的花卉资源稀缺的影响。因此,火的多样性对于维持开花植物和传粉媒介的多样性很重要,并且预测的火势变化将包括较少的生物多样性,再加上干旱的增加,将对这些和其他森林生态系统的这些群落的丰富度产生负面影响。另外,较低的火灾严重程度异质性可能会减少植物授粉媒介群落的空间更新。群落组成的异质性是景观中总物种多样性的主要决定因素,因此,较低的生物多样性可能会对大空间尺度上的植物授粉群落的丰富性产生负面影响。

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