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人工合成反硝化群落揭示了实验进化过程中生物多样性-生态系统功能关系的积极和动态变化。

Synthetic Denitrifying Communities Reveal a Positive and Dynamic Biodiversity-Ecosystem Functioning Relationship during Experimental Evolution.

机构信息

Environmental Microbiomics Research Center, School of Environmental Science and Engineering, Southern Marine Science and Engineering Guangdong Laboratory (Zhuhai), Sun Yat-sen University, Guangzhou, China.

College of Agronomy, Hunan Agricultural University, Changsha, China.

出版信息

Microbiol Spectr. 2023 Jun 15;11(3):e0452822. doi: 10.1128/spectrum.04528-22. Epub 2023 May 8.

Abstract

Biodiversity is vital for ecosystem functions and services, and many studies have reported positive, negative, or neutral biodiversity-ecosystem functioning (BEF) relationships in plant and animal systems. However, if the BEF relationship exists and how it evolves remains elusive in microbial systems. Here, we selected 12 denitrifiers to construct synthetic denitrifying communities (SDCs) with a richness gradient spanning 1 to 12 species, which were subjected to approximately 180 days (with 60 transfers) of experimental evolution with generational changes in community functions continuously tracked. A significant positive correlation was observed between community richness and functions, represented by productivity (biomass) and denitrification rate, however, such a positive correlation was transient, only significant in earlier days (0 to 60) during the evolution experiment (180 days). Also, we found that community functions generally increased throughout the evolution experiment. Furthermore, microbial community functions with lower richness exhibited greater increases than those with higher richness. Biodiversity effect analysis revealed positive BEF relationships largely attributable to complementary effects, which were more pronounced in communities with lower richness than those with higher richness. This study is one of the first studies that advances our understanding of BEF relationships and their evolutionary mechanisms in microbial systems, highlighting the crucial role of evolution in predicting the BEF relationship in microbial systems. Despite the consensus that biodiversity supports ecosystem functioning, not all experimental models of macro-organisms support this notion with positive, negative, or neutral biodiversity-ecosystem functioning (BEF) relationships reported. The fast-growing, metabolically versatile, and easy manipulation nature of microbial communities allows us to explore well the BEF relationship and further interrogate if the BEF relationship remains constant during long-term community evolution. Here, we constructed multiple synthetic denitrifying communities (SDCs) by randomly selecting species from a candidate pool of 12 denitrifiers. These SDCs differ in species richness, spanning 1 to 12 species, and were monitored continuously for community functional shifts during approximately 180-day parallel cultivation. We demonstrated that the BEF relationship was dynamic with initially (day 0 to 60) greater productivity and denitrification among SDCs of higher richness. However, such pattern was reversed thereafter with greater productivity and denitrification increments in lower-richness SDCs, likely due to a greater accumulation of beneficial mutations during the experimental evolution.

摘要

生物多样性对生态系统功能和服务至关重要,许多研究报告了植物和动物系统中生物多样性与生态系统功能(BEF)关系的正、负或中性关系。然而,如果 BEF 关系存在,以及它如何演变,在微生物系统中仍然难以捉摸。在这里,我们选择了 12 种反硝化菌,构建了具有从 1 到 12 个物种丰富度梯度的合成反硝化群落(SDC),这些群落经历了大约 180 天(60 代)的实验进化,社区功能的代际变化连续跟踪。群落丰富度与生产力(生物量)和反硝化速率等功能之间存在显著的正相关关系,但这种正相关关系是短暂的,仅在进化实验的早期(0 至 60 天)显著(180 天)。此外,我们发现社区功能在整个进化实验中普遍增加。此外,具有较低丰富度的微生物群落功能的增加幅度大于具有较高丰富度的群落功能。生物多样性效应分析表明,正的 BEF 关系主要归因于互补效应,在较低丰富度的群落中比在较高丰富度的群落中更为明显。这项研究是率先深入了解 BEF 关系及其在微生物系统中的进化机制的研究之一,强调了进化在预测微生物系统中 BEF 关系中的关键作用。尽管人们普遍认为生物多样性支持生态系统功能,但并非所有宏观生物的实验模型都支持这一观点,因为报告的生物多样性与生态系统功能(BEF)关系有正、负或中性关系。微生物群落具有快速生长、代谢多样和易于操作的特点,使我们能够很好地探索 BEF 关系,并进一步探讨在长期社区进化过程中 BEF 关系是否保持不变。在这里,我们通过从 12 种反硝化菌的候选池中随机选择物种,构建了多个合成反硝化群落(SDC)。这些 SDC 在物种丰富度上存在差异,从 1 到 12 种,在大约 180 天的平行培养过程中,我们连续监测群落功能的变化。我们证明 BEF 关系是动态的,在较高丰富度的 SDC 中,最初(第 0 天至第 60 天)生产力和反硝化作用更大。然而,此后,较低丰富度的 SDC 中的生产力和反硝化作用增加幅度更大,这可能是由于在实验进化过程中积累了更多的有益突变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf66/10269844/3f3059abe3d3/spectrum.04528-22-f001.jpg

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