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探索黑麦草(L.)在耐镉和有机改良剂协同施用下的植物稳定潜力。

Exploring the phytostabilization potential of ryegrass ( L.) upon synergistic application of Cd-tolerant and organic amendments.

作者信息

Khan Muhammad Babar, Sulaman Saira, Shabaan Muhammad, Fatima Arooj, Hameed Ashir, Zulfiqar Usman, Kabir Rehmat, Mohammed Alarjani Khaloud, Aljeidi Reem A

机构信息

Institute of Soil and Environmental Sciences, University of Agriculture, Faisalabad, Pakistan.

Department of Environmental Science, Government College University Faisalabad, Pakistan.

出版信息

Int J Phytoremediation. 2025;27(9):1314-1328. doi: 10.1080/15226514.2025.2494700. Epub 2025 Apr 29.

Abstract

Soil Cd contamination limits plant productivity by affecting their key functions and reducing yields. In-situ immobilization of heavy metals (HMs) can achieve 'green' and 'sustainable' ways of HM remediation owing to its lower life cycle environmental footprints. This study explored the effects of Cd-resistant and OAs such as rice straw, wheat straw and cow dung (1% w/w) on the Cd tolerance of ryegrass under Cd contamination (2.2 mg kg). In our findings, Cd exposure reduced plant height (22%), root length (38%), chlorophyll 'a' and 'b' (36 and 38%), and relative water content (32%) in uninoculated plants. However, combined use of and OAs mitigated these effects by immobilizing Cd in soil, with a 56% increase in residual Cd and higher Cd retention in roots and shoots (77 and 87%). Co-application enhanced plant height (96%), root length (158%), chlorophyll content (90 and 98%), relative water content (168%), flavonoids and phenols (151 and 68%) and NPK uptake (104, 73 and 71%) as compared to uninoculated control. Integration of and OAs not only reduced Cd uptake but also improved growth and yield. Thus, this approach mitigates Cd stress in ryegrass, improving growth and physiology by reducing Cd uptake.

摘要

土壤镉污染通过影响植物关键功能和降低产量来限制植物生产力。由于重金属原位固定化的生命周期环境足迹较小,因此可以实现重金属修复的“绿色”和“可持续”方式。本研究探讨了抗镉菌以及稻草、麦秸和牛粪(1% w/w)等有机物料对镉污染(2.2 mg/kg)条件下黑麦草镉耐受性的影响。在我们的研究结果中,镉暴露降低了未接种植物的株高(22%)、根长(38%)、叶绿素a和b(36%和38%)以及相对含水量(32%)。然而,抗镉菌和有机物料联合使用通过固定土壤中的镉减轻了这些影响,残余镉增加了56%,并且根和地上部对镉的保留量更高(77%和87%)。与未接种对照相比,联合施用提高了株高(96%)、根长(158%)、叶绿素含量(90%和98%)、相对含水量(168%)、类黄酮和酚类(151%和68%)以及氮磷钾吸收量(104%、73%和71%)。抗镉菌和有机物料的整合不仅减少了镉的吸收,还改善了生长和产量。因此,这种方法减轻了黑麦草的镉胁迫,通过减少镉吸收改善了生长和生理状况。

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