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首页> 外文期刊>Applied Soil Ecology >Differences in bacterial community structure and potential functions among Eucalyptus plantations with different ages and species of trees
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Differences in bacterial community structure and potential functions among Eucalyptus plantations with different ages and species of trees

机译:细菌群落结构的差异和桉树种植园中不同年龄和物种的潜在功能

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Bacteria are the most abundant microbes in soil and play an important role in the carbon and nitrogen cycles. Currently, China has become the country with the second largest Eucalyptus planting area. However, the dynamic changes in the soil bacterial community in different Eucalyptus plantations has been poorly studied. In the present study, the bacterial community structure and potential function associated with Eucalyptus plantations of different ages (1- and 5(+)-year) and species (E. urophylla x E. grandis, E. camaldulens and E. pellita) in Zhanjiang, Guangdong Province, China were characterized using Illumina MiSeq. technology coupled with Functional Annotation of Prokaryotic Taxa (FAPROTAX) analysis. The results showed that the bacterial diversity increased with increasing plantation age, with different ages and species of trees forming distinct bacterial community and functional structures, respectively (P < 0.05 in all possible pairs). The most abundant phyla across all samples were Actinobacteria (35.9% of total sequences), Proteobacteria (20.5%), Chloroflexi (10.3%) and Acidobacteria (9.2%). With increasing plantation age, the bacterial community shifted from the phylum WPS-2 and order Sphingomonadales as dominant taxa to the order GP6. The community function also changed from carbon utilization to more nitrogen and sulfur cycling processes. The soil pH, organic carbon, water content and total nitrogen were identified as the key factors affecting both community structure and function. The results indicate that Eucalyptus plantation age has a greater effect on the bacterial community diversity and structure than Eucalyptus species. This study provides useful information on the importance of microbes for the sustainable management of Eucalyptus plantations in the future.
机译:细菌是土壤中最丰富的微生物,在碳和氮循环中发挥重要作用。目前,中国已成为第二大桉树种植区的国家。然而,在不同桉树种植园中的土壤细菌群落的动态变化已经研究得很差。在本研究中,细菌群落结构和与不同年龄的桉树种植园相关的细菌群落结构和潜在功能(1-和5(+)岁)和物种(E.Frophylla x E. Grandis,E.Camaldulens和E.Pellita)广东省湛江,中国的特点是使用illumina miseq。技术与原核分类群(FAPROTAX)分析的功能注释相结合。结果表明,细菌多样性随着种植症年龄的增加而增加,分别具有不同年龄和树木的不同年龄和物种,分别形成明显的细菌群落和功能结构(所有可能对中的P <0.05)。所有样品中最丰富的Phyla是抗菌菌(占总序列的35.9%),植物体外菌(20.5%),氯昔克(10.3%)和抗酸杆菌(9.2%)。随着种植园年龄的增加,细菌群体从WPS-2的Phylum转变,并将鞘氨醛大同排列为秩序GP6。社区功能也从碳利用率转变为更多的氮和硫循环过程。将土壤pH,有机碳,含水量和总氮总体鉴定为影响群落结构和功能的关键因素。结果表明,桉树种植园年龄对细菌群落多样性和结构具有比桉树物种的结构更大。本研究提供了关于未来桉树种植园可持续管理的微生物的重要性的有用信息。

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