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分析镉单独以及与聚丙烯微塑料共存时对小麦生长的影响。

Analyzing the impacts of cadmium alone and in co-existence with polypropylene microplastics on wheat growth.

作者信息

Han Zhiwei, Osman Raheel, Liu Yi, Wei Zhangdong, Wang Lin, Xu Ming

机构信息

Miami College, Henan University, Kaifeng, China.

College of Geography and Environmental Science, Henan University, Kaifeng, China.

出版信息

Front Plant Sci. 2023 Aug 10;14:1240472. doi: 10.3389/fpls.2023.1240472. eCollection 2023.

Abstract

Heavy metals typically coexist with microplastics (MPs) in terrestrial ecosystems. Yet, little is known about how the co-existence of heavy metals and MPs affect crops. Therefore, this study aimed to evaluate the impact of cadmium (Cd; 40 mg/L) alone and its co-existence with polypropylene (PP)-MPs (50 and 100 µm) on seed germination, root and shoot growth, seedling dry weight (DW), and antioxidant enzyme activities of wheat. The study demonstrated that the germination rate of wheat did not vary significantly across treatment groups. Yet, the inhibitory impact on wheat seed germination was strengthened under the co-existence of Cd and PP-MPs, as the effect of a single treatment on seed germination was non-significant. The germination index and mean germination time of wheat seeds were not affected by single or combined toxicity of Cd and PP-MPs. In contrast, Cd and PP-MPs showed synergistic effects on germination energy. Wheat root and shoot length were impeded by Cd alone and in combination with PP-MPs treatments. The DW of wheat seedlings showed significant change across treatment groups until the third day, but on the seventh day, marginal differences were observed. For example, on third day, the DW of the Cd treatment group increased by 6.9% compared to CK, whereas the DW of the 100 µm PP-MPs+Cd treatment group decreased by 8.4% compared to CK. The co-occurrence of Cd and PP-MPs indicated that 50 μm PP-MPs+Cd had an antagonistic impact on wheat seedling growth, whereas 100 μm PP-MPs+Cd had a synergistic impact due to the larger size of PP-MPs. The antioxidant enzyme system of wheat seeds and seedlings increased under single Cd pollution, while the activities of superoxide dismutase, catalase, and peroxidase were decreased under combined pollution. Our study found that Cd adversely affects wheat germination and growth, while the co-existence of Cd and PP-MPs have antagonistic and synergistic effects depending on the size of the PP-MPs.

摘要

重金属通常与微塑料(MPs)共存于陆地生态系统中。然而,关于重金属和微塑料的共存如何影响作物,人们所知甚少。因此,本研究旨在评估单独的镉(Cd;40毫克/升)及其与聚丙烯(PP)-微塑料(50和100微米)共存对小麦种子萌发、根和芽生长、幼苗干重(DW)以及抗氧化酶活性的影响。研究表明,各处理组小麦的发芽率没有显著差异。然而,在镉和PP-微塑料共存的情况下,对小麦种子萌发的抑制作用增强,因为单一处理对种子萌发的影响不显著。小麦种子的发芽指数和平均发芽时间不受镉和PP-微塑料单一或联合毒性的影响。相比之下,镉和PP-微塑料对发芽能量表现出协同作用。单独的镉以及与PP-微塑料联合处理均会阻碍小麦根和芽的长度。直到第三天,各处理组小麦幼苗的干重有显著变化,但在第七天,观察到的差异很小。例如,在第三天,镉处理组的干重相比对照增加了6.9%,而100微米PP-微塑料+镉处理组的干重相比对照减少了8.4%。镉和PP-微塑料的共存表明,50微米PP-微塑料+镉对小麦幼苗生长有拮抗作用,而100微米PP-微塑料+镉由于PP-微塑料尺寸较大而具有协同作用。在单一镉污染下,小麦种子和幼苗的抗氧化酶系统增强,而在联合污染下,超氧化物歧化酶、过氧化氢酶和过氧化物酶的活性降低。我们的研究发现,镉对小麦的萌发和生长有不利影响,而镉和PP-微塑料的共存根据PP-微塑料的尺寸具有拮抗和协同作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8093/10449543/62eea2bbc59c/fpls-14-1240472-g001.jpg

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