Department of Microbiology, La Trobe University, Melbourne Campus, Victoria, 3086, Australia.
Center for AgriBiosciences, La Trobe University, Melbourne Campus, Victoria, 3086, Australia.
Sci Rep. 2016 Nov 2;6:36067. doi: 10.1038/srep36067.
Phytoextraction is influenced by the indigenous soil microbial communities during the remediation of heavy metal contaminated soils. Soil microbial communities can affect plant growth, metal availability and the performance of phytoextraction-assisting inocula. Understanding the basic ecology of indigenous soil communities associated with the phytoextraction process, including the interplay between selective pressures upon the communities, is an important step towards phytoextraction optimization. This study investigated the impact of cadmium (Cd), and the presence of a Cd-accumulating plant, Carpobrotus rossii (Haw.) Schwantes, on the structure of soil-bacterial and fungal communities using automated ribosomal intergenic spacer analysis (ARISA) and quantitative PCR (qPCR). Whilst Cd had no detectable influence upon fungal communities, bacterial communities underwent significant structural changes with no reduction in 16S rRNA copy number. The presence of C. rossii influenced the structure of all communities and increased ITS copy number. Suites of operational taxonomic units (OTUs) changed in abundance in response to either Cd or C. rossii, however we found little evidence to suggest that the two selective pressures were acting synergistically. The Cd-induced turnover in bacterial OTUs suggests that Cd alters competition dynamics within the community. Further work to understand how competition is altered could provide a deeper understanding of the microbiome-plant-environment and aid phytoextraction optimization.
植物提取受修复重金属污染土壤过程中土著土壤微生物群落的影响。土壤微生物群落可以影响植物生长、金属的可用性以及植物提取辅助接种体的性能。了解与植物提取过程相关的土著土壤群落的基本生态学,包括群落中选择压力的相互作用,是优化植物提取的重要步骤。本研究使用自动核糖体基因间间隔区分析(ARISA)和定量 PCR(qPCR),调查了镉(Cd)以及 Cd 积累植物 Carpobrotus rossii(Haw.)Schwantes 的存在对土壤细菌和真菌群落结构的影响。虽然 Cd 对真菌群落没有明显影响,但细菌群落的结构发生了显著变化,16S rRNA 拷贝数没有减少。C. rossii 的存在影响了所有群落的结构并增加了 ITS 拷贝数。对 OTU 的操作分类单元的 suites 数量因 Cd 或 C. rossii 而发生变化,但我们几乎没有证据表明这两种选择压力协同作用。细菌 OTU 中 Cd 诱导的周转率表明 Cd 改变了群落内的竞争动态。进一步研究如何改变竞争可以更深入地了解微生物组-植物-环境,并有助于优化植物提取。