Agricultural College, Shihezi University, Shihezi 832000, China.
Institute of Crop Research, Xinjiang Academy of Agricultural Reclamation Sciences, Shihezi 832000, China.
Int J Mol Sci. 2024 Feb 21;25(5):2521. doi: 10.3390/ijms25052521.
Drip irrigation with brackish water increases the risk of soil salinization while alleviating water shortage in arid areas. In order to alleviate soil salinity stress on crops, polymer soil amendments are increasingly used. But the regulation mechanism of a polymer soil amendment composed of polyacrylamide polyvinyl alcohol, and manganese sulfate (PPM) on rapeseed photosynthesis under drip irrigation with different types of brackish water is still unclear. In this field study, PPM was applied to study the responses of the rapeseed ( L.) phenotype, photosynthetic physiology, transcriptomics, and metabolomics at the peak flowering stage under drip irrigation with water containing 6 g·L NaCl (S) and NaCO (A). The results showed that the inhibitory effect of the A treatment on rapeseed photosynthesis was greater than that of the S treatment, which was reflected in the higher Na content (73.30%) and lower photosynthetic-fluorescence parameters (6.30-61.54%) and antioxidant enzyme activity (53.13-77.10%) of the A-treated plants. The application of PPM increased the biomass (63.03-75.91%), photosynthetic parameters (10.55-34.06%), chlorophyll fluorescence parameters (33.83-62.52%), leaf pigment content (10.30-187.73%), and antioxidant enzyme activity (28.37-198.57%) under S and A treatments. However, the difference is that under the S treatment, PPM regulated the sulfur metabolism, carbon fixation and carbon metabolism pathways in rapeseed leaves. And it also regulated the photosynthesis-, oxidative phosphorylation-, and TCA cycle-related metabolic pathways in rapeseed leaves under A treatment. This study will provide new insights for the application of polymer materials to tackle the salinity stress on crops caused by drip irrigation with brackish water, and solve the difficulty in brackish water utilization.
滴灌咸水会增加土壤盐渍化的风险,同时缓解干旱地区的水资源短缺。为了缓解作物的土壤盐胁迫,越来越多地使用聚合物土壤改良剂。但是,由聚丙烯酰胺、聚乙烯醇和硫酸锰(PPM)组成的聚合物土壤改良剂在不同类型咸水滴灌下对油菜光合作用的调节机制仍不清楚。在这项田间研究中,应用 PPM 研究了在含有 6 g·L NaCl(S)和 NaCO(A)的咸水滴灌下,油菜( L.)表型、光合作用生理、转录组和代谢组在盛花期的响应。结果表明,A 处理对油菜光合作用的抑制作用大于 S 处理,这反映在较高的 Na 含量(73.30%)和较低的光合荧光参数(6.30-61.54%)和抗氧化酶活性(53.13-77.10%)。PPM 的应用提高了生物量(63.03-75.91%)、光合作用参数(10.55-34.06%)、叶绿素荧光参数(33.83-62.52%)、叶片色素含量(10.30-187.73%)和抗氧化酶活性(28.37-198.57%)在 S 和 A 处理下。然而,不同的是,在 S 处理下,PPM 调节了油菜叶片中的硫代谢、碳固定和碳代谢途径。它还调节了 A 处理下油菜叶片中的光合作用、氧化磷酸化和 TCA 循环相关代谢途径。本研究将为聚合物材料在解决咸水滴灌引起的作物盐胁迫方面的应用提供新的思路,并解决咸水利用的难题。