Suppr超能文献

早期原生演替中丛枝菌根真菌群落沿土壤pH梯度的嵌套性:耐酸真菌是pH通才。

Nestedness in Arbuscular Mycorrhizal Fungal Communities along Soil pH Gradients in Early Primary Succession: Acid-Tolerant Fungi Are pH Generalists.

作者信息

Kawahara Ai, An Gi-Hong, Miyakawa Sachie, Sonoda Jun, Ezawa Tatsuhiro

机构信息

Graduate School of Agriculture, Hokkaido University, Sapporo, Japan.

出版信息

PLoS One. 2016 Oct 18;11(10):e0165035. doi: 10.1371/journal.pone.0165035. eCollection 2016.

Abstract

Soil acidity is a major constraint on plant productivity. Arbuscular mycorrhizal (AM) fungi support plant colonization in acidic soil, but soil acidity also constrains fungal growth and diversity. Fungi in extreme environments generally evolve towards specialists, suggesting that AM fungi in acidic soil are acidic-soil specialists. In our previous surveys, however, some AM fungi detected in strongly acidic soils could also be detected in a soil with moderate pH, which raised a hypothesis that the fungi in acidic soils are pH generalists. To test the hypothesis, we conducted a pH-manipulation experiment and also analyzed AM fungal distribution along a pH gradient in the field using a synthesized dataset of the previous and recent surveys. Rhizosphere soils of the generalist plant Miscanthus sinensis were collected both from a neutral soil and an acidic soil, and M. sinensis seedlings were grown at three different pH. For the analysis of field communities, rhizosphere soils of M. sinensis were collected from six field sites across Japan, which covered a soil pH range of 3.0-7.4, and subjected to soil trap culture. AM fungal community compositions were determined based on LSU rDNA sequences. In the pH-manipulation experiment the acidification of medium had a significant impact on the compositions of the community from the neutral soil, but the neutralization of the medium had no effect on those of the community from the acidic soil. Furthermore, the communities in lower -pH soils were subsets of (nested in) those in higher-pH soils. In the field communities a significant nestedness pattern was observed along the pH gradient. These observations suggest that the fungi in strongly acidic soils are pH generalists that occur not only in acidic soil but also in wide ranges of soil pH. Nestedness in AM fungal community along pH gradients may have important implications for plant community resilience and early primary succession after disturbance in acidic soils.

摘要

土壤酸度是限制植物生产力的主要因素。丛枝菌根(AM)真菌有助于植物在酸性土壤中定殖,但土壤酸度也会限制真菌的生长和多样性。极端环境中的真菌通常会向 specialists 方向进化,这表明酸性土壤中的 AM 真菌是酸性土壤 specialists。然而,在我们之前的调查中,在强酸性土壤中检测到的一些 AM 真菌在 pH 适中的土壤中也能被检测到,这就提出了一个假设,即酸性土壤中的真菌是 pH 通才。为了验证这一假设,我们进行了一项 pH 调控实验,并利用之前和最近调查的综合数据集分析了田间 AM 真菌沿 pH 梯度的分布情况。从中性土壤和酸性土壤中采集了通才植物芒草的根际土壤,并将芒草幼苗种植在三种不同的 pH 条件下。为了分析田间群落,从日本各地的六个田间地点采集了芒草的根际土壤,这些地点的土壤 pH 范围为 3.0 - 7.4,并进行了土壤诱捕培养。基于 LSU rDNA 序列确定了 AM 真菌群落组成。在 pH 调控实验中,培养基的酸化对来自中性土壤的群落组成有显著影响,但培养基的中和对来自酸性土壤的群落组成没有影响。此外,低 pH 土壤中的群落是高 pH 土壤中群落的子集(嵌套其中)。在田间群落中,沿 pH 梯度观察到了显著的嵌套模式。这些观察结果表明,强酸性土壤中的真菌是 pH 通才,它们不仅存在于酸性土壤中,也存在于广泛的土壤 pH 范围内。AM 真菌群落沿 pH 梯度的嵌套可能对酸性土壤中干扰后的植物群落恢复力和早期初级演替具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2f4/5068792/3c514f9ab2ec/pone.0165035.g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验