Investigating the ecological implications of nanomaterials: Unveiling plants' notable responses to nano-pollution

持续性 范围(计算机科学) 生态系统 环境污染 心理弹性 生态学 环境规划 环境资源管理 生物 环境科学 环境保护 计算机科学 心理学 心理治疗师 程序设计语言
作者
Ekambaram Gayathiri,Palanisamy Prakash,Saravanan Pandiaraj,Ramasamy Ramasubburayan,Arti Gaur,Malathy Sekar,Dhivya Viswanathan,Govindasamy Rajakumar
出处
期刊:Plant Physiology and Biochemistry [Elsevier BV]
卷期号:206: 108261-108261 被引量:15
标识
DOI:10.1016/j.plaphy.2023.108261
摘要

The rapid advancement of nanotechnology has led to unprecedented innovations; however, it is crucial to analyze its environmental impacts carefully. This review thoroughly examines the complex relationship between plants and nanomaterials, highlighting their significant impact on ecological sustainability and ecosystem well-being. This study investigated the response of plants to nano-pollution stress, revealing the complex regulation of defense-related genes and proteins, and highlighting the sophisticated defense mechanisms in nature. Phytohormones play a crucial role in the complex molecular communication network that regulates plant responses to exposure to nanomaterials. The interaction between plants and nano-pollution influences plants' complex defense strategies. This reveals the interconnectedness of systems of nature. Nevertheless, these findings have implications beyond the plant domain. The incorporation of hyperaccumulator plants into pollution mitigation strategies has the potential to create more environmentally sustainable urban landscapes and improve overall environmental resilience. By utilizing these exceptional plants, we can create a future in which cities serve as centers of both innovation and ecological balance. Further investigation is necessary to explore the long-term presence of nanoparticles in the environment, their ability to induce genetic changes in plants over multiple generations, and their overall impact on ecosystems. In conclusion, this review summarizes significant scientific discoveries with broad implications beyond the confines of laboratories. This highlights the importance of understanding the interactions between plants and nanomaterials within the wider scope of environmental health. By considering these insights, we initiated a path towards the responsible utilization of nanomaterials, environmentally friendly management of pollution, and interdisciplinary exploration. We have the responsibility to balance scientific advancement and environmental preservation to create a sustainable future that combines nature's wisdom with human innovation.
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