Synthetic communities derived from the core endophytic microbiome of hyperaccumulators and their role in cadmium phytoremediation.

IF 13.8 1区 生物学 Q1 MICROBIOLOGY Microbiome Pub Date : 2024-11-14 DOI:10.1186/s40168-024-01959-x
Lukuan Huang, Ziyan Fan, Zhipeng Hu, Zhesi Li, Yingyi Fu, Qiong Wang, Xianyong Lin, Ying Feng
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Abstract

Background: Although numerous endophytic bacteria have been isolated and characterized from cadmium (Cd) hyperaccumulators, the contribution and potential application of the core endophytic microbiomes on facilitating phytoremediation were still lack of intensive recognition. Therefore, a 2-year field sampling in different location were firstly conducted to identify the unique core microbiome in Cd hyperaccumulators, among which the representative cultivable bacteria of different genera were then selected to construct synthetic communities (SynComs). Finally, the effects and mechanisms of the optimized SynCom in regulating Cd accumulation in different ecotypes of Sedum alfredii were studied to declare the potential application of the bacterial agents based on core microbiome.

Results: Through an innovative network analysis workflow, 97 core bacterial taxa unique to hyperaccumulator Sedum was identified based on a 2-year field 16S rRNA sequencing data. A SynCom comprising 13 selected strains belonging to 6 different genera was then constructed. Under the combined selection pressure of the plant and Cd contamination, Alcaligenes sp. exhibited antagonistic relationships with other genera and plant Cd concentration. Five representative strains of the other five genera were further conducted genome resequencing and developed six SynComs, whose effects on Cd phytoremediation were compared with single strains by hydroponic experiments. The results showed that SynCom-NS comprising four strains (including Leifsonia shinshuensis, Novosphingobium lindaniclasticum, Ochrobactrum anthropi, and Pseudomonas izuensis) had the greatest potential to enhance Cd phytoremediation. After inoculation with SynCom-NS, genes related to Cd transport, antioxidative defense, and phytohormone signaling pathways were significantly upregulated in both ecotypes of S. alfredii, so as to promote plant growth, Cd uptake, and translocation.

Conclusion: In this study, we designed an innovative network analysis workflow to identify the core endophytic microbiome in hyperaccumulator. Based on the cultivable core bacteria, an optimized SynCom-NS was constructed and verified to have great potential in enhancing phytoremediation. This work not only provided a framework for identifying core microbiomes associated with specific features but also paved the way for the construction of functional synthetic communities derived from core microbiomes to develop high efficient agricultural agents. Video Abstract.

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源自高积累植物核心内生微生物群的合成群落及其在镉植物修复中的作用。
背景:虽然从镉(Cd)高积累植物中分离并鉴定了大量内生细菌,但核心内生微生物群对植物修复的贡献和潜在应用仍缺乏深入认识。因此,首先在不同地点进行了为期两年的田间采样,以确定镉高积累植物中独特的核心微生物组,然后从中选择不同属的代表性可培养细菌构建合成群落(SynComs)。最后,研究了优化后的合成群落在调控不同生态型景天科植物镉积累中的作用和机制,以宣布基于核心微生物组的细菌制剂的潜在应用:结果:通过创新的网络分析工作流程,基于两年的田间 16S rRNA 测序数据,确定了 97 个高积累性景天科植物特有的核心细菌类群。然后构建了一个由属于 6 个不同菌属的 13 个精选菌株组成的 SynCom。在植物和镉污染的双重选择压力下,藻华藻属与其他藻属和植物镉浓度表现出拮抗关系。进一步对其他五个属的五个代表性菌株进行了基因组重测序,并建立了六个 SynComs,通过水培实验比较了这些菌株与单一菌株对镉的植物修复效果。结果表明,由四株菌株(包括新沭雷夫索尼娅、新鞘氨醇、赭曲霉和伊豆假单胞菌)组成的 SynCom-NS 增强镉植物修复的潜力最大。接种 SynCom-NS 后,两种生态型的 S. alfredii 中与镉转运、抗氧化防御和植物激素信号通路相关的基因均显著上调,从而促进植物生长、镉吸收和转运:在这项研究中,我们设计了一种创新的网络分析工作流程来识别高积累植物的核心内生微生物组。基于可培养的核心细菌,构建了优化的 SynCom-NS 并验证了其在增强植物修复方面的巨大潜力。这项工作不仅为识别与特定特征相关的核心微生物组提供了框架,还为构建源自核心微生物组的功能合成群落以开发高效农业制剂铺平了道路。视频摘要。
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来源期刊
Microbiome
Microbiome MICROBIOLOGY-
CiteScore
21.90
自引率
2.60%
发文量
198
审稿时长
4 weeks
期刊介绍: Microbiome is a journal that focuses on studies of microbiomes in humans, animals, plants, and the environment. It covers both natural and manipulated microbiomes, such as those in agriculture. The journal is interested in research that uses meta-omics approaches or novel bioinformatics tools and emphasizes the community/host interaction and structure-function relationship within the microbiome. Studies that go beyond descriptive omics surveys and include experimental or theoretical approaches will be considered for publication. The journal also encourages research that establishes cause and effect relationships and supports proposed microbiome functions. However, studies of individual microbial isolates/species without exploring their impact on the host or the complex microbiome structures and functions will not be considered for publication. Microbiome is indexed in BIOSIS, Current Contents, DOAJ, Embase, MEDLINE, PubMed, PubMed Central, and Science Citations Index Expanded.
期刊最新文献
Effect of plant-derived microbial soil legacy in a grafting system-a turn for the better. F. prausnitzii potentially modulates the association between citrus intake and depression. Synthetic communities derived from the core endophytic microbiome of hyperaccumulators and their role in cadmium phytoremediation. Unveiling bat-borne viruses: a comprehensive classification and analysis of virome evolution. Various microbial taxa couple arsenic transformation to nitrogen and carbon cycling in paddy soils.
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