College of Life Sciences, Dezhou University, De'zhou, 253023, China.
Institute of Tobacco Research of CAAS, Qingdao, 266101, China.
Plant Physiol Biochem. 2023 Oct;203:108065. doi: 10.1016/j.plaphy.2023.108065. Epub 2023 Sep 29.
Microplastics (MPs) and cadmium (Cd) has attracted increasing attention due to their combined toxicity to terrestrial vegetation. Photosynthesis which utilizes light energy to synthesize organic substances is crucial for crop production. However, the plant photosynthetic response to the joint toxicity of MPs and Cd is still unknown. Here, we studied the effects of polyethylene (PE) MPs on the photosynthetic performance of two maize cultivars Xianyu 335 (XY) and Zhengdan 958 (ZD) grown in a Cd contaminated soil. Results showed that the leaf Cd concentration in XY and ZD reached 26.1 and 31.9 μg g, respectively. PE-MPs did not influence the leaf Cd content, but posed direct and negative effects on photosynthesis by increasing the malondialdehyde content, reducing the chlorophyll content, inhibiting photosynthetic capacity, disrupting the PSII donor side, blocking electron transfer in different photosystems, and suppressing the oxidation and reduction states of PSI. Transcriptomic analysis revealed that the inhibitory effect of combined PE-MPs and Cd on maize photosynthesis was attributed to suppressed expression of the genes encoding PSII, PSI, F-type ATPase, cytochrome b6/f complex, and electron transport between PSII and PSI. Using WGCNA, we identified a MEturquoise module highly correlated with photosynthetic traits. Hub genes bridging carbohydrate metabolism, amino acid metabolism, lipid metabolism, and translation provided the molecular mechanisms of PE-MPs and Cd tolerance in maize plants. The comprehensive information on the phytotoxicity mechanisms of Cd stress in the presence or absence of PE-MPs on the photosynthesis of maize is helpful for cloning Cd and PE-MP resistance genes in the future.
微塑料(MPs)和镉(Cd)由于其对陆地植被的联合毒性而受到越来越多的关注。光合作用利用光能合成有机物质,对作物生产至关重要。然而,植物对 MPs 和 Cd 联合毒性的光合响应尚不清楚。在这里,我们研究了聚乙烯(PE) MPs 对在 Cd 污染土壤中生长的两个玉米品种先玉 335(XY)和郑单 958(ZD)光合作用性能的影响。结果表明,XY 和 ZD 的叶片 Cd 浓度分别达到 26.1 和 31.9μg g。PE-MPs 不影响叶片 Cd 含量,但通过增加丙二醛含量、降低叶绿素含量、抑制光合作用能力、破坏 PSII 供体侧、阻断不同光系统中的电子传递以及抑制 PSI 的氧化还原状态,对光合作用产生直接和负面影响。转录组分析表明,PE-MPs 和 Cd 联合对玉米光合作用的抑制作用归因于编码 PSII、PSI、F 型 ATP 酶、细胞色素 b6/f 复合物和 PSII 与 PSI 之间电子传递的基因表达受到抑制。使用 WGCNA,我们鉴定了一个与光合性状高度相关的 MEturquoise 模块。连接碳水化合物代谢、氨基酸代谢、脂质代谢和翻译的枢纽基因为玉米植物对 PE-MPs 和 Cd 的耐受性提供了分子机制。在存在或不存在 PE-MPs 的情况下,Cd 胁迫对玉米光合作用的毒性机制的综合信息有助于未来克隆 Cd 和 PE-MP 抗性基因。