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种植在其当前地理范围之外的树种具有高生产力,这表明存在大片未被利用的生态位空间。

High productivity of tree species planted outside their current geographic range indicates large regions of unrealized niche space.

作者信息

Griesbauer Hardy, O'Neill Gregory A, MacKenzie William H

机构信息

British Columbia Ministry of Forests, Omineca Region, Prince George, BC, Canada.

British Columbia Ministry of Forests, Kalamalka Forestry Centre, Vernon, BC, Canada.

出版信息

Front Plant Sci. 2025 Aug 28;16:1650428. doi: 10.3389/fpls.2025.1650428. eCollection 2025.

DOI:10.3389/fpls.2025.1650428
PMID:40949574
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC12424236/
Abstract

INTRODUCTION

Reforestation efforts that utilize assisted range expansion in response to climate change require an enhanced understanding of tree species' fundamental niches as well as potential interactions with local species when planted in novel environments.

METHODS

Using height-age modeling and dendrochronological approaches, we analyzed height and radial growth data from 25 disparate experimental plantings of three temperate zone conifer species (Douglas-fir, western larch and ponderosa pine) in environments north of, and colder than, their current geographic range in British Columbia, Canada, to explore how these types of trials can provide important insights into tree species' fundamental niches in regions that lack comprehensive, replicated experiments.

RESULTS AND DISCUSSION

Height growth of the three species exceeded or equaled that of populations growing within their realized niche, suggesting that from a growth perspective, the fundamental niches of these species have historically included environments colder and further north than their current ranges. The productivity of Douglas-fir and western larch also exceeded that of a local tree species, lodgepole pine, across a range of sites and climates within the study region, indicating that these species may be successful competitors with other species outside their range. Across all species and locations, environmental constraints on tree productivity appear to be more consistently related to available soil moisture than temperature. This study suggests that temperate conifers may have unrealized niche space far outside their current geographic range, and their potential for range expansion may be larger than suggested by species distribution models.

摘要

引言

为应对气候变化而利用辅助范围扩展的重新造林努力,需要更深入地了解树种的基本生态位,以及在新环境中种植时与当地物种的潜在相互作用。

方法

我们使用树高-年龄建模和树木年代学方法,分析了加拿大不列颠哥伦比亚省三个温带针叶树种(花旗松、西部落叶松和黄松)在其当前地理范围以北且更寒冷环境中的25个不同实验种植点的树高和径向生长数据,以探讨这类试验如何能为缺乏全面、重复实验的地区的树种基本生态位提供重要见解。

结果与讨论

这三个物种的树高生长超过或等同于在其实际生态位内生长的种群,这表明从生长角度来看,这些物种的基本生态位在历史上包括比其当前范围更寒冷和更靠北的环境。在研究区域内的一系列地点和气候条件下,花旗松和西部落叶松的生产力也超过了当地树种黑云杉,这表明这些物种在其范围之外可能是与其他物种成功的竞争者。在所有物种和地点,对树木生产力的环境限制似乎与可用土壤湿度的关系比与温度的关系更一致。这项研究表明,温带针叶树在其当前地理范围之外可能有未被开发的生态位空间,并且它们的范围扩展潜力可能比物种分布模型所显示的更大。

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本文引用的文献

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Trees have overlapping potential niches that extend beyond their realized niches.树木具有重叠的潜在生态位,这些潜在生态位超出了它们已实现的生态位。
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