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首页> 外文期刊>Biodiversity and Conservation >Influence of macroclimate and local conservation measures on taxonomic, functional, and phylogenetic diversities of saproxylic beetles and wood-inhabiting fungi
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Influence of macroclimate and local conservation measures on taxonomic, functional, and phylogenetic diversities of saproxylic beetles and wood-inhabiting fungi

机译:宏观和局部保护措施对分类,功能和系统发育多样性的羊肉甲虫和木质植物真菌的影响

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摘要

Wood-inhabiting fungi and saproxylic beetles are threatened by habitat degradation. Our understanding of the importance of macroclimate and local factors determining their taxonomic diversity has increased, but determinants of functional and phylogenetic diversity are poorly understood. We investigated assemblages of wood-inhabiting fungi and saproxylic beetles along a 1000 m elevational gradient of a temperate low mountain range. We (i) tested the relative importance of macroclimate (i.e. elevation) and local variables (microclimate, i.e. canopy closure, amount and diversity of dead wood) in determining observed and rarefied diversities and (ii) explored whether determinants of observed functional and phylogenetic diversities match those of taxonomic diversity. For both taxa, the determinants of observed phylogenetic and functional diversities largely matched those of taxonomic diversity. The diversity of wood-inhabiting fungi was predominantly determined by local variables, whereas that of saproxylic beetles was determined by both local variables and elevation. Taxonomic and phylogenetic diversities of saproxylic beetles decreased with increasing elevation, but standardized functional richness and entropy of both groups increased with increasing elevation. Diversities of wood-inhabiting fungi increased with canopy closure, while diversities of saproxylic beetles decreased with increasing canopy closure. Microclimate and dead-wood amount and diversity affected the observed and rarefied diversity of both saproxylic taxa, which justifies conservation actions that focus on attributes of dead wood and canopy cover. The contrasting responses of fungi and beetles highlight the need for amounts of diverse dead wood in the various microclimates to preserve functional and phylogenetic diversities of saproxylic organisms.
机译:居住的栖息地降解植物居住的真菌和皂甲虫。我们对确定其分类学多样性的宏观调度和地方因素的重要性有所增加,但功能性和系统发育多样性的决定因素都很糟糕。我们调查了沿着温带低山范围的1000米的高度梯度沿着木材居住的真菌和皂甲虫的组装。我们(i)测试了宏观(即高程)和局部变量的相对重要性(即抬高)(微气候,即死木的单体闭合,数量和多样性)在确定观察到的和稀薄的多样性和(ii)探讨了观察到的功能和系统发育多样性的决定因素匹配分类学多样性。对于两个分类群,观察到的系统发育和功能多样性的决定因素在很大程度上与分类学多样性相匹配。木居住的真菌的多样性主要由局部变量决定,而苏酸甲虫的含量由局部变量和升高确定。分类和系统发育和系统发育多样性随着升高的增加而降低,但两组的标准功能丰富性和熵随着高度的增加而增加。木居住的真菌的多样性随冠层闭合而增加,而皂甲虫的多样性随着冠层闭合而增加。微气候和死木数量和多样性影响了Saproylyxy纳克萨克的观察到和稀薄的多样性,这证明了专注于死木和遮盖盖的属性的保护行动。真菌和甲虫的对比应答突出了各种微亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚偶像的多样性死木的需求,以保持皂苷生物的功能和系统发育多样性。

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