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植物多样性和凋落物积累会影响养分添加后叶内真菌丰富度的丧失。

Plant diversity and litter accumulation mediate the loss of foliar endophyte fungal richness following nutrient addition.

机构信息

Department of Ecology, Evolution, and Behavior, University of Minnesota, St Paul, Minnesota, 55108, USA.

Department of Biology, University of South Alabama, 5871 USA Drive N., Room 124, Mobile, Alabama, 36688, USA.

出版信息

Ecology. 2021 Jan;102(1):e03210. doi: 10.1002/ecy.3210. Epub 2020 Dec 1.

Abstract

Foliar fungal endophytes are ubiquitous plant symbionts that can affect plant growth and reproduction via their roles in pathogen and stress tolerance, as well as plant hormonal signaling. Despite their importance, we have a limited understanding of how foliar fungal endophytes respond to varying environmental conditions such as nutrient inputs. The responses of foliar fungal endophyte communities to increased nutrient deposition may be mediated by the simultaneous effects on within-host competition as well as the indirect impacts of altered host population size, plant productivity, and plant community diversity and composition. Here, we leveraged a 7-yr experiment manipulating nitrogen, phosphorus, potassium, and micronutrients to investigate how nutrient-induced changes to plant diversity, plant productivity, and plant community composition relate to changes in foliar fungal endophyte diversity and richness in a focal native grass host, Andropogon gerardii. We found limited evidence of direct effects of nutrients on endophyte diversity. Instead, the effects of nutrients on endophyte diversity appeared to be mediated by accumulation of plant litter and plant diversity loss. Specifically, nitrogen addition is associated with a 40% decrease in plant diversity and an 11% decrease in endophyte richness. Although nitrogen, phosphorus, and potassium addition increased aboveground live biomass and decreased relative Andropogon cover, endophyte diversity did not covary with live plant biomass or Andropogon cover. Our results suggest that fungal endophyte diversity within this focal host is determined in part by the diversity of the surrounding plant community and its potential impact on immigrant propagules and dispersal dynamics. Our results suggest that elemental nutrients reduce endophyte diversity indirectly via impacts on the local plant community, not direct response to nutrient addition. Thus, the effects of global change drivers, such as nutrient deposition, on characteristics of host populations and the diversity of their local communities are important for predicting the response of symbiont communities in a changing global environment.

摘要

叶部真菌内生菌是普遍存在的植物共生体,它们通过在病原体和胁迫耐受以及植物激素信号转导中的作用,影响植物的生长和繁殖。尽管它们很重要,但我们对叶部真菌内生菌如何响应不同的环境条件(如养分输入)的了解有限。叶部真菌内生菌群落对增加养分沉积的反应可能受到宿主内竞争的同时作用以及宿主种群大小、植物生产力以及植物群落多样性和组成的间接影响的调节。在这里,我们利用一个 7 年的实验操纵氮、磷、钾和微量元素,来研究养分引起的植物多样性、植物生产力和植物群落组成的变化如何与焦点本地草宿主 Andropogon gerardii 叶部真菌内生菌多样性和丰富度的变化相关。我们发现养分对内生菌多样性的直接影响有限。相反,养分对内生菌多样性的影响似乎是由植物凋落物的积累和植物多样性的丧失介导的。具体而言,氮的添加与植物多样性降低 40%和内生菌丰富度降低 11%相关。尽管氮、磷和钾的添加增加了地上活体生物量并降低了相对 Andropogon 的覆盖率,但内生菌多样性与活体植物生物量或 Andropogon 覆盖率没有相关性。我们的结果表明,该焦点宿主内的真菌内生菌多样性部分取决于周围植物群落的多样性及其对移民繁殖体和扩散动态的潜在影响。我们的结果表明,元素养分通过对当地植物群落的影响间接降低内生菌多样性,而不是直接响应养分添加。因此,全球变化驱动因素(如养分沉积)对宿主种群特征及其当地群落多样性的影响对于预测共生体群落在不断变化的全球环境中的反应很重要。

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