Effects of microplastics and salt single or combined stresses on growth and physiological responses of maize seedlings.

IF 5.4 2区 生物学 Q1 PLANT SCIENCES
Xiaodong Liu, Zongshuai Wang, Guiyang Shi, Yingbo Gao, Hui Zhang, Kaichang Liu
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Abstract

Plastic film (mulch film) is widely used in saline and alkaline soils because it can effectively reduce salt stress damage. However, it results in the accumulation of microplastics (MPs) in the soil, which pose a threat to crop growth and production. This study investigates the effects of 50 mg l-1 MPs and 100 mM sodium chloride (NaCl), individually or in combination, on the growth and physiological characteristics of maize (Zea mays) seedlings. The results demonstrated that compared to the control, MPs and NaCl single or combined stress reduced seedling biomass and water content, and the combined stress was more serious. Stress significantly reduced N and K contents in leaves, and Na content under combined stress was lower than under single NaCl stress. Compared to single stress, the combined stress further enhanced oxidative damage by increasing H2O2 and MDA content, a disrupted chloroplast structure, and reduced chlorophyll content, ultimately leading to a decline in chlorophyll fluorescence parameters and photosynthetic efficiency. Single MPs or NaCl stress led to the accumulation of proline, soluble proteins, and soluble sugars, while the combined stresses further increased the content of these osmotic substances in plants. Moreover, single or combined stress increased the activity of CAT, POD, SOD and the content of AsA and GsH. Collectively, NaCl and MPs single or combined stress exert notable toxic effects on maize seedling growth. Although the combined stress inhibited seedling growth more than the single stress, the combined stress of MPs and NaCl showed antagonistic effects. These findings underscore the importance of assessing the ecological risks posed by the combined effects of MPs and salt stresses on maize plants.

微塑料和盐单一或复合胁迫对玉米幼苗生长和生理反应的影响
地膜由于能有效地减少盐胁迫损害,在盐碱地中得到了广泛的应用。然而,它会导致土壤中微塑料(MPs)的积累,对作物生长和生产构成威胁。研究了50 mg l-1 MPs和100 mM氯化钠(NaCl)单独或联合施用对玉米幼苗生长和生理特性的影响。结果表明,与对照相比,MPs和NaCl单独或联合胁迫降低了幼苗生物量和含水量,且联合胁迫更为严重。胁迫显著降低了叶片中N、K含量,且复合胁迫下Na含量低于单一NaCl胁迫下。与单一胁迫相比,复合胁迫通过增加H2O2和MDA含量,破坏叶绿体结构,降低叶绿素含量进一步加重了氧化损伤,最终导致叶绿素荧光参数和光合效率下降。单独的MPs或NaCl胁迫导致脯氨酸、可溶性蛋白和可溶性糖的积累,而联合胁迫进一步增加了这些渗透物质的含量。此外,单胁迫和复合胁迫均显著提高了CAT、POD、SOD的活性以及AsA和GsH的含量。NaCl和MPs单独或联合胁迫对玉米幼苗生长均有显著的毒害作用。虽然复合胁迫对幼苗生长的抑制作用大于单一胁迫,但MPs和NaCl的复合胁迫表现出拮抗作用。这些发现强调了评估多磺酸盐和盐胁迫对玉米植物的综合影响所带来的生态风险的重要性。
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来源期刊
Physiologia plantarum
Physiologia plantarum 生物-植物科学
CiteScore
11.00
自引率
3.10%
发文量
224
审稿时长
3.9 months
期刊介绍: Physiologia Plantarum is an international journal committed to publishing the best full-length original research papers that advance our understanding of primary mechanisms of plant development, growth and productivity as well as plant interactions with the biotic and abiotic environment. All organisational levels of experimental plant biology – from molecular and cell biology, biochemistry and biophysics to ecophysiology and global change biology – fall within the scope of the journal. The content is distributed between 5 main subject areas supervised by Subject Editors specialised in the respective domain: (1) biochemistry and metabolism, (2) ecophysiology, stress and adaptation, (3) uptake, transport and assimilation, (4) development, growth and differentiation, (5) photobiology and photosynthesis.
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