Fire Reduces Fungal Species Richness and In Situ Mycorrhizal Colonization: A Meta-Analysis

被引:0
|
作者
Nicholas C. Dove
Stephen C. Hart
机构
[1] University of California,Environmental Systems Graduate Group
[2] University of California,Life and Environmental Sciences and the Sierra Nevada Research Institute
来源
Fire Ecology | 2017年 / 13卷
关键词
biodiversity; fungi; mycorrhizae; soil ecology;
D O I
暂无
中图分类号
学科分类号
摘要
Soil fungal communities perform many functions that help plants meet their nutritional demands. However, overall trends for fungal response to fire, which can be especially critical in a post-fire context, have been difficult to elucidate. We used meta-analytical techniques to investigate fungal response to fire across studies, ecosystems, and fire types. Change in fungal species richness and mycorrhizal colonization were used as the effect size metrics in random effects models. When different types of methods for assessing fungal species richness and mycorrhizal colonization were considered together, there was an average reduction of 28 % in fungal species richness post fire, but no significant response in mycorrhizal colonization. In contrast, there was a 41 % reduction in fungal species richness post fire when assessed by sporocarp surveys, but fungal species richness was not significantly affected when assessed by molecular methods. Measured in situ, fire reduced mycorrhizal colonization by 21 %, yet no significant response occurred when assessed by ex situ bioassays. These findings suggest that the putative magnitude of fire effects on soil fungal communities may be dependent on the approach and assessment method used. Furthermore, biome, but not fire type (i.e., wildfire versus prescribed fire) was a significant moderator of our categorical models, suggesting that biome might be a more useful predictor of fungal species richness response to fire than fire type. Reductions in fungal species richness and in situ mycorrhizal colonization post fire declined logarithmically and approached zero (i.e., no effect) at 22 and 11 years, respectively. We concluded that fire reduces fungal species richness and in situ mycorrhizal colonization, but if conditions allow communities to recover (e.g., without subsequent disturbance, favorable growing conditions), soil fungi are resilient on decadal time scales; the resiliency of soil fungi likely contributes to the overall rapid ecosystem recovery following fire.
引用
收藏
页码:37 / 65
页数:28
相关论文
共 50 条
  • [11] Evidence of dispersal limitation in soil microorganisms: Isolation reduces species richness on mycorrhizal tree islands
    Peay, Kabir G.
    Garbelotto, Matteo
    Bruns, Thomas D.
    ECOLOGY, 2010, 91 (12) : 3631 - 3640
  • [12] Estimating global species richness using symbolic data meta-analysis
    Lin, Huan
    Caley, Michael Julian
    Sisson, Scott A.
    ECOGRAPHY, 2022, 2022 (03)
  • [13] Plant Species Richness and Developmental Morphology Stage Influence Mycorrhizal Patagonia Plants Root Colonization
    Cardillo, D. S.
    Busso, Carlos
    Ambrosino, Mariela
    Ithurrart, Leticia
    Torres, Yanina
    Palomo, Rosana
    RUSSIAN JOURNAL OF ECOLOGY, 2018, 49 (05) : 413 - 421
  • [14] The Impact of Land Abandonment on Species Richness and Abundance in the Mediterranean Basin: A Meta-Analysis
    Plieninger, Tobias
    Hui, Cang
    Gaertner, Mirijam
    Huntsinger, Lynn
    PLOS ONE, 2014, 9 (05):
  • [15] A meta-analysis of fauna and flora species richness and abundance in plantations and pasture lands
    Felton, Adam
    Knight, Emma
    Wood, Jeff
    Zammit, Charlie
    Lindenmayer, David
    BIOLOGICAL CONSERVATION, 2010, 143 (03) : 545 - 554
  • [16] Impacts of nitrogen addition on plant species richness and abundance: A global meta-analysis
    Midolo, Gabriele
    Alkemade, Rob
    Schipper, Aafke M.
    Benitez-Lopez, Ana
    Perring, Michael P.
    De Vries, Wim
    GLOBAL ECOLOGY AND BIOGEOGRAPHY, 2019, 28 (03): : 398 - 413
  • [17] Livestock grazing constrains bird abundance and species richness: A global meta-analysis
    Barzan, Flavia R.
    Bellis, Laura M.
    Dardanelli, Sebastian
    BASIC AND APPLIED ECOLOGY, 2021, 56 : 289 - 298
  • [18] Native forests but not agroforestry systems preserve arbuscular mycorrhizal fungal species richness in southern Ethiopia
    Belay, Zerihun
    Negash, Mesele
    Kaseva, Janne
    Vestberg, Mauritz
    Kahiluoto, Helena
    MYCORRHIZA, 2020, 30 (06) : 749 - 759
  • [19] The relationship between species richness and evenness: a meta-analysis of studies across aquatic ecosystems
    Soininen, Janne
    Passy, Sophia
    Hillebrand, Helmut
    OECOLOGIA, 2012, 169 (03) : 803 - 809
  • [20] The relationship between species richness and evenness: a meta-analysis of studies across aquatic ecosystems
    Janne Soininen
    Sophia Passy
    Helmut Hillebrand
    Oecologia, 2012, 169 : 803 - 809