Department of Biology, North Hennepin Community College, Brooklyn Park, Minnesota, United States of America.
Department of Biology, Bemidji State University, Bemidji, Minnesota, United States of America.
PLoS One. 2024 Jul 12;19(7):e0306602. doi: 10.1371/journal.pone.0306602. eCollection 2024.
The insectivorous Northern Pitcher Plant, Sarracenia purpurea, recruits a dynamic biotic community in the rainwater collected by its pitcher-shaped leaves. Insect capture and degradation within the pitcher fluid (phytotelma) has been well documented as a mechanism for supplementing the plant's nitrogen, phosphorous, and micronutrient requirements. Metagenomic studies have shown a diverse microbiome in this phytotelm environment, including taxa that contribute metabolically to prey digestion. In this investigation, we used high-throughput 16S rDNA sequencing and bioinformatics to analyze the S. purpurea phytotelm bacteriome as it changes through the growing season (May-September) in plants from the north-central region of the species' native range. Additionally, we used molecular techniques to detect and quantify bacterial nitrogenase genes (nifH) in all phytotelm samples to explore the hypothesis that diazotrophy is an additional mechanism of supplying biologically available nitrogen to S. purpurea. The results of this study indicate that while prokaryote diversity remains relatively stable in plants at different locations within our region, diversity changes significantly as the growing season progresses. Furthermore, nifH genes were detected at biologically significant concentrations in one hundred percent of samples, suggesting that nitrogen fixation may be an important contributor to the S. purpurea nutrient budget.
食虫的北猪笼草,Sarracenia purpurea,通过其瓶状叶子收集的雨水来招募一个动态的生物群落。昆虫在瓶状液体(phytotelma)中的捕获和降解已被很好地记录为补充植物氮、磷和微量元素需求的机制。宏基因组研究表明,在这种植物内生微生物环境中存在多样化的微生物群,包括对猎物消化有代谢贡献的分类群。在这项研究中,我们使用高通量 16S rDNA 测序和生物信息学分析了北猪笼草植物内生微生物组,随着生长季节(5 月至 9 月)的变化,这些植物来自于其原生范围的中北部地区。此外,我们使用分子技术检测和量化了所有植物内生微生物样本中的细菌固氮酶基因(nifH),以探索固氮作用是为北猪笼草提供生物可利用氮的另一种机制的假说。这项研究的结果表明,虽然在我们研究区域内不同位置的植物中,原核生物多样性仍然相对稳定,但随着生长季节的推进,多样性会发生显著变化。此外,在百分之百的样本中都检测到了具有生物学意义浓度的 nifH 基因,这表明固氮可能是北猪笼草营养预算的一个重要贡献者。