» Articles » PMID: 38331396

The "Microplastome" - A Holistic Perspective to Capture the Real-World Ecology of Microplastics

Abstract

Microplastic pollution, an emerging pollution issue, has become a significant environmental concern globally due to its ubiquitous, persistent, complex, toxic, and ever-increasing nature. As a multifaceted and diverse suite of small plastic particles with different physicochemical properties and associated matters such as absorbed chemicals and microbes, future research on microplastics will need to comprehensively consider their multidimensional attributes. Here, we introduce a novel, conceptual framework of the "microplastome", defined as the entirety of various plastic particles (<5 mm), and their associated matters such as chemicals and microbes, found within a sample and its overall environmental and toxicological impacts. As a novel concept, this paper aims to emphasize and call for a collective quantification and characterization of microplastics and for a more holistic understanding regarding the differences, connections, and effects of microplastics in different biotic and abiotic ecosystem compartments. Deriving from this lens, we present our insights and prospective trajectories for characterization, risk assessment, and source apportionment of microplastics. We hope this new paradigm can guide and propel microplastic research toward a more holistic era and contribute to an informed strategy for combating this globally important environmental pollution issue.

Citing Articles

Microplastics Generate Less Mineral Protection of Soil Carbon and More CO Emissions.

Shi J, Tanentzap A, Sun Y, Wang J, Xing B, Rillig M Adv Sci (Weinh). 2024; 12(7):e2409585.

PMID: 39739674 PMC: 11831443. DOI: 10.1002/advs.202409585.


MicroMetaSense: Coupling Plasmonic Metasurfaces with Fluorescence for Enhanced Detection of Microplastics in Real Samples.

Ece E, Aslan Y, Haciosmanoglu N, Inci F ACS Sens. 2024; 10(2):725-740.

PMID: 39729532 PMC: 11877509. DOI: 10.1021/acssensors.4c02070.


Soil viral-host interactions regulate microplastic-dependent carbon storage.

Wang L, Lin D, Xiao K, Ma L, Fu Y, Huo Y Proc Natl Acad Sci U S A. 2024; 121(45):e2413245121.

PMID: 39467127 PMC: 11551317. DOI: 10.1073/pnas.2413245121.


Microplastome visualizations: From spatiotemporal distribution to risk assessment.

Zhao C, Zhao B, Wang F, Qu G, Luo Q, Guo L Innovation (Camb). 2024; 5(5):100684.

PMID: 39285904 PMC: 11404130. DOI: 10.1016/j.xinn.2024.100684.


Microplastic-Mediated Transfer of Tetracycline Resistance: Unveiling the Role of Mussels in Marine Ecosystems.

Milani G, Cortimiglia C, Belloso Daza M, Greco E, Bassi D, Cocconcelli P Antibiotics (Basel). 2024; 13(8).

PMID: 39200027 PMC: 11350897. DOI: 10.3390/antibiotics13080727.

References
1.
Vrijheid M . The exposome: a new paradigm to study the impact of environment on health. Thorax. 2014; 69(9):876-8. DOI: 10.1136/thoraxjnl-2013-204949. View

2.
Bank M, Ok Y, Swarzenski P . Microplastic's role in antibiotic resistance. Science. 2020; 369(6509):1315. DOI: 10.1126/science.abd9937. View

3.
Guo Z, Boeing W, Xu Y, Borgomeo E, Mason S, Zhu Y . Global meta-analysis of microplastic contamination in reservoirs with a novel framework. Water Res. 2021; 207:117828. DOI: 10.1016/j.watres.2021.117828. View

4.
Whiting Q, OConnor K, M Potter P, Al-Abed S . A high-throughput, automated technique for microplastics detection, quantification, and characterization in surface waters using laser direct infrared spectroscopy. Anal Bioanal Chem. 2022; 414(29-30):8353-8364. PMC: 9805365. DOI: 10.1007/s00216-022-04371-2. View

5.
Amaral-Zettler L, Zettler E, Mincer T . Ecology of the plastisphere. Nat Rev Microbiol. 2020; 18(3):139-151. DOI: 10.1038/s41579-019-0308-0. View