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首页> 外文期刊>Applied Soil Ecology >Are microbial activity and arbuscular mycorrhizal fungal community influenced by regeneration stages? A case study in Southern Brazil coastal Atlantic Rain Forest
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Are microbial activity and arbuscular mycorrhizal fungal community influenced by regeneration stages? A case study in Southern Brazil coastal Atlantic Rain Forest

机译:是受再生阶段影响的微生物活性和丛枝菌根真菌群落吗? 巴西南部大西洋雨林案例研究

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摘要

Aiming to describe coastal Atlantic Rain Forest (ARF) regeneration dynamics, we evaluated attributes linked to soil biota and mycorrhizal symbiosis in two coastal ARF sites in Florianopolis, Southern Brazil. In each site, we selected forest transects in early regeneration (ER) and advanced regeneration (AR) stages, i.e., about 20 and 50 years without agricultural use, respectively. Soil total organic carbon (TOC) was higher in AR than in ER stage. Soil microbial biomass carbon (MBC) varied between sites and was higher in the AR than in the ER stage. Basal respiration and qCO(2) rates differed between sites and were, respectively, higher and lower in advanced regeneration stage areas. Arbuscular mycorrhizal (AM) root colonization and AM fungal spore density were higher in the ER stage, with no difference between sites. Principal Component Analysis (PCA) for correlation between soil microbiological and chemical attributes showed that the variables with the most influence on sample separation for the first component were total spore number, soil MBC, root mycorrhizal colonization, and soil TOC. Soil pH, available P, and qCO(2) had the highest influence on the second component. This analysis separated samples by regeneration stage, and sites differed only in AR stage. PCR-DGGE analysis on DNA extracted from soil samples showed that AMF community structure differed more between sites than between regeneration stages.
机译:旨在描述沿海大西洋雨林(ARF)再生动态,我们评估了与巴西南部Florianopolis的两个沿海ARF站点相关的土壤生物群和菌根菌和菌根共生的属性。在每个网站中,我们选择森林在早期再生(ER)和高级再生(AR)阶段,即大约20和50年,分别没有农业使用。在AR中,土壤总有机碳(TOC)比ER阶段更高。土壤微生物生物量碳(MBC)在位点之间变化,并且在AR中比ER阶段更高。位点之间的基础呼吸和QCO(2)率不同,高级再生阶段区域分别较高,更高,较低。 Arbuscular菌根(AM)根殖民化和AM真菌孢子密度在ER阶段较高,位点之间没有差异。用于土壤微生物和化学属性之间相关性的主成分分析(PCA)表明,对第一组分的样品分离影响最大的变量是总孢子数,土壤MBC,根菌根殖民化和土壤TOC。土壤pH,可用的P和QCO(2)对第二个组分影响最高。该分析通过再生阶段分离样品,并且位点仅在AR阶段不同。从土壤样品中提取的DNA的PCR-DGGE分析显示,AMF群落结构与再生阶段之间的位点之间不同。

著录项

  • 来源
    《Applied Soil Ecology》 |2019年第2019期|共5页
  • 作者单位

    Univ Fed Santa Catarina Soil Ecol Lab Ctr Ciencias Agr Florianopolis SC Brazil;

    Univ Fed Santa Catarina Soil Ecol Lab Ctr Ciencias Agr Florianopolis SC Brazil;

    Univ Fed Santa Catarina Soil Ecol Lab Ctr Ciencias Agr Florianopolis SC Brazil;

    Univ Fed Santa Catarina Ctr Ciencias Biol Soil Microbiol Lab Florianopolis SC Brazil;

    Univ Fed Santa Catarina Soil Ecol Lab Ctr Ciencias Agr Florianopolis SC Brazil;

    Univ Fed Santa Catarina Ctr Ciencias Biol Soil Microbiol Lab Florianopolis SC Brazil;

    Univ Fed Santa Catarina Ctr Ciencias Agr Trop Forest Res Team Florianopolis SC Brazil;

    Univ Fed Santa Catarina Ctr Ciencias Biol Soil Microbiol Lab Florianopolis SC Brazil;

    Univ Fed Santa Catarina Soil Ecol Lab Ctr Ciencias Agr Florianopolis SC Brazil;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 土壤生态学;
  • 关键词

    Ecological succession; Microbial biomass; DGGE;

    机译:生态继承;微生物生物量;DGGE;

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