Fatmah O. Sefrji, Aala A. Abulfaraj, Fatimah M. Alshehrei, Abeer Al-Andal, Alaa A. Alnahari, Manal Tashkandi, Lina Baz, Aminah A. Barqawi, Abeer M. Almutrafy, Sahar A. Alshareef, Shaza N. Alkhatib, Haneen W. Abuauf, Rewaa S. Jalal, Abeer S. Aloufi
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The analysis revealed a role for the rhizospheric microbiome in energy production, storage, and regulation, with glucose serving as a crucial precursor for NADH synthesis and subsequent ATP production via oxidative phosphorylation. Key orthologous genes (OGs) implicated in this process include <i>NuoD</i>, <i>NuoH</i>, <i>NuoM</i>, <i>NuoN</i>, <i>NuoL</i>, <i>atpA</i>, <i>QcrB</i>/<i>PetB</i>, and <i>AccC</i>. Additionally, OGs involved in ATP hydrolysis, such as <i>ClpP</i>, <i>EntF</i>, <i>YopO</i>, and <i>AtoC</i>, were identified. Taxonomic analysis highlighted Actinobacteria and Proteobacteria as the predominant phyla, with enriched genera including <i>Blastococcus</i>, <i>Nocardioides</i>, <i>Streptomyces</i>, <i>Microvirga</i>, <i>Sphingomonas</i>, and <i>Massilia</i>, correlating with specific OGs involved in ATP hydrolysis. 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引用次数: 0
摘要
油茶(Moringa oleifera)因其营养和治疗特性而闻名,它与其根瘤土壤微生物组之间存在着复杂的关系。本研究旨在通过将同源基因簇(COG)分析与之前通过 KEG、CAZy 和 CARD 数据库确定的酶功能相结合,阐明微生物组的结构组成、分子功能及其在植物生长中的作用。对从沙特阿拉伯麦加地区采集的油橄榄根瘤土壤微生物组进行了元基因组测序和生物信息学分析。分析结果表明,根瘤微生物组在能量生产、储存和调节方面发挥作用,其中葡萄糖是合成 NADH 的重要前体,随后通过氧化磷酸化产生 ATP。参与这一过程的关键同源基因(OGs)包括 NuoD、NuoH、NuoM、NuoN、NuoL、atpA、QcrB/PetB 和 AccC。此外,还发现了参与 ATP 水解的 OGs,如 ClpP、EntF、YopO 和 AtoC。分类学分析显示,放线菌和蛋白菌是主要的门类,富集属包括 Blastococcus、Nocardioides、Streptomyces、Microvirga、Sphingomonas 和 Massilia,与参与 ATP 水解的特定 OGs 相关。这项研究深入揭示了植物与微生物相互作用的分子机制,并强调了 ATP 依赖过程在根瘤层中的多方面作用。建议进一步开展研究,探索这些发现在可持续农业和生态系统管理中的潜在应用。
Comprehensive analysis of orthologous genes reveals functional dynamics and energy metabolism in the rhizospheric microbiome of Moringa oleifera
Moringa oleifera, known for its nutritional and therapeutic properties, exhibits a complex relationship with its rhizospheric soil microbiome. This study aimed to elucidate the microbiome's structural composition, molecular functions, and its role in plant growth by integrating Clusters of Orthologous Genes (COG) analysis with enzymatic functions previously identified through KEGG, CAZy, and CARD databases. Metagenomic sequencing and bioinformatics analysis were performed from the rhizospheric soil microbiome of M. oleifera collected from the Mecca district in Saudi Arabia. The analysis revealed a role for the rhizospheric microbiome in energy production, storage, and regulation, with glucose serving as a crucial precursor for NADH synthesis and subsequent ATP production via oxidative phosphorylation. Key orthologous genes (OGs) implicated in this process include NuoD, NuoH, NuoM, NuoN, NuoL, atpA, QcrB/PetB, and AccC. Additionally, OGs involved in ATP hydrolysis, such as ClpP, EntF, YopO, and AtoC, were identified. Taxonomic analysis highlighted Actinobacteria and Proteobacteria as the predominant phyla, with enriched genera including Blastococcus, Nocardioides, Streptomyces, Microvirga, Sphingomonas, and Massilia, correlating with specific OGs involved in ATP hydrolysis. This study provides insights into the molecular mechanisms underpinning plant–microbe interactions and highlights the multifaceted roles of ATP-dependent processes in the rhizosphere. Further research is recommended to explore the potential applications of these findings in sustainable agriculture and ecosystem management.
期刊介绍:
Functional & Integrative Genomics is devoted to large-scale studies of genomes and their functions, including systems analyses of biological processes. The journal will provide the research community an integrated platform where researchers can share, review and discuss their findings on important biological questions that will ultimately enable us to answer the fundamental question: How do genomes work?