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叶内生真菌与热带裸子植物宿主代谢组表达的关系。

Leaf Endophytes Relationship with Host Metabolome Expression in Tropical Gymnosperms.

机构信息

Département de Biologie, Université Laval, Québec, (QC), G1V 0A6, Canada.

Institut de Biologie Intégrative et des Systèmes (IBIS), Université Laval, Québec, (QC), G1V 0A6, Canada.

出版信息

J Chem Ecol. 2024 Nov;50(11):815-829. doi: 10.1007/s10886-024-01511-z. Epub 2024 May 29.

Abstract

Plant-microbe interactions play a pivotal role in shaping host fitness, especially concerning chemical defense mechanisms. In cycads, establishing direct correlations between specific endophytic microbes and the synthesis of highly toxic defensive phytochemicals has been challenging. Our research delves into the intricate relationship between plant-microbe associations and the variation of secondary metabolite production in two closely related Zamia species that grow in distinct habitats; terrestrial and epiphytic. Employing an integrated approach, we combined microbial metabarcoding, which characterize the leaf endophytic bacterial and fungal communities, with untargeted metabolomics to test if the relative abundances of specific microbial taxa in these two Zamia species were associated with different metabolome profiles. The two species studied shared approximately 90% of the metabolites spanning diverse biosynthetic pathways: alkaloids, amino acids, carbohydrates, fatty acids, polyketides, shikimates, phenylpropanoids, and terpenoids. Co-occurrence networks revealed positive associations among metabolites from different pathways, underscoring the complexity of their interactions. Our integrated analysis demonstrated to some degree that the intraspecific variation in metabolome profiles of the two host species was associated with the abundance of bacterial orders Acidobacteriales and Frankiales, as well as the fungal endophytes belonging to the orders Chaetothyriales, Glomerellales, Heliotiales, Hypocreales, and Sordariales. We further associate individual metabolic similarity with four specific fungal endophyte members of the core microbiota, but no specific bacterial taxa associations were identified. This study represents a pioneering investigation to characterize leaf endophytes and their association with metabolomes in tropical gymnosperms, laying the groundwork for deeper inquiries into this complex domain.

摘要

植物-微生物相互作用在塑造宿主适应性方面起着关键作用,尤其是在化学防御机制方面。在苏铁类植物中,确定特定内生微生物与高毒性防御性植物化学物质合成之间的直接相关性一直具有挑战性。我们的研究深入探讨了植物-微生物关联与两种生长在不同生境(陆生和附生)的亲缘关系密切的泽米属植物次生代谢产物产生变化之间的复杂关系。我们采用综合方法,将微生物代谢组学(用于描述叶片内生细菌和真菌群落)与非靶向代谢组学相结合,以检验这两种泽米属植物中特定微生物类群的相对丰度是否与不同的代谢组图谱相关。所研究的两个物种共享了约 90%的代谢物,这些代谢物涵盖了广泛的生物合成途径:生物碱、氨基酸、碳水化合物、脂肪酸、聚酮、莽草酸、苯丙素和萜类化合物。共生网络揭示了不同途径的代谢物之间存在正相关,突出了它们相互作用的复杂性。我们的综合分析在一定程度上表明,两种宿主物种的代谢组图谱的种内变异与细菌目 Acidobacteriales 和 Frankiales 的丰度以及属于目 Chaetothyriales、Glomerellales、Heliotiales、Hypocreales 和 Sordariales 的内生真菌有关。我们进一步将个体代谢相似性与核心微生物群中四个特定的真菌内生成员相关联,但没有鉴定出特定的细菌类群关联。本研究代表了对热带裸子植物叶片内生菌及其与代谢组学关联的开创性研究,为更深入地研究这一复杂领域奠定了基础。

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