Microplastic stress in plants: effects on plant growth and their remediations
Стресс, вызванный микропластиком, у растений: влияние на рост растений и стратегии ремедиации
2023-08-11
SCID: 54.1/27dm9bss
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microplastic stressphytoremediationplant growthplant ionomereactive oxygen species
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Abstract (AI)
Microplastic (MP) pollution is becoming a global problem due to the resilience, long-term persistence, and robustness of MPs in different ecosystems. In terrestrial ecosystems, plants are exposed to MP stress, thereby affecting overall plant growth and development. This review article has critically analyzed the effects of MP stress in plants. We found that MP stress-induced reduction in plant physical growth is accompanied by two complementary effects: (i) blockage of pores in seed coat or roots to alter water and nutrient uptake, and (ii) induction of drought due to increased soil cracking effects of MPs. Nonetheless, the reduction in physiological growth under MP stress is accompanied by four complementary effects: (i) excessive production of ROS, (ii) alteration in leaf and root ionome, (iii) impaired hormonal regulation, and (iv) decline in chlorophyll and photosynthesis. Considering that, we suggested that targeting the redox regulatory mechanisms could be beneficial in improving tolerance to MPs in plants; however, antioxidant activities are highly dependent on plant species, plant tissue, MP type, and MP dose. MP stress also indirectly reduces plant growth by altering soil productivity. However, MP-induced negative effects vary due to the presence of different surface functional groups and particle sizes. In the end, we suggested the utilization of agronomic approaches, including the application of growth regulators, biochar, and replacing plastic mulch with crop residues, crop diversification, and biological degradation, to ameliorate the effects of MP stress in plants. The efficiency of these methods is also MP-type-specific and dose-dependent.
Key Findings
1
Agronomic remediation strategies—including growth regulators, biochar, crop-residue mulching, crop diversification, and biological degradation—may mitigate microplastic effects, with efficiency depending on microplastic type and dose.
2
Microplastic stress indirectly suppresses plant growth by reducing soil productivity, while its severity varies with particle surface functional groups, size, type, and dose.
3
Microplastic stress reduces plant physical growth by blocking seed-coat or root pores, disrupting water and nutrient uptake, and increasing soil cracking-induced drought.
4
Microplastics impair physiological growth through excessive reactive oxygen species production, altered leaf and root ionomes, disrupted hormonal regulation, and decreased chlorophyll and photosynthesis.
5
Targeting redox regulation may improve plant tolerance to microplastics, but antioxidant responses depend strongly on plant species, tissue, microplastic type, and dose.
Research Object
Plants exposed to microplastic (MP) stress in terrestrial ecosystems
Research Subject
The effects of MP stress on plant physical and physiological growth, nutrient and water uptake, redox and hormonal regulation, ionome, chlorophyll and photosynthesis, and remediation strategies
Publication Details
Publication Date
2023-08-11
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