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Decoding Heavy Metal Stress Signalling in Plants: Towards Improved Food Security and Safety

机译:解码植物中的重金属应力信号:促进粮食安全和安全性

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摘要

The mining of heavy metals from the environment leads to an increase in soil pollution, leading to the uptake of heavy metals into plant tissue. The build-up of toxic metals in plant cells often leads to cellular damage and senescence. Therefore, it is of utmost importance to produce plants with improved tolerance to heavy metals for food security, as well as to limit heavy metal uptake for improved food safety purposes. To achieve this goal, our understanding of the signaling mechanisms which regulate toxic heavy metal uptake and tolerance in plants requires extensive improvement. In this review, we summarize recent literature and data on heavy metal toxicity (oral reference doses) and the impact of the metals on food safety and food security. Furthermore, we discuss some of the key events (reception, transduction, and response) in the heavy metal signaling cascades in the cell wall, plasma membrane, and cytoplasm. Our future perspectives provide an outlook of the exciting advances that will shape the plant heavy metal signaling field in the near future.
机译:来自环境的重金属的挖掘导致土壤污染的增加,导致将重金属的吸收到植物组织中。植物细胞中有毒金属的积聚通常导致细胞损伤和衰老。因此,为生产粮食安全的重金属提供改善的耐受性的生产植物至关重要,以及限制重金属摄取以改善食品安全目的。为实现这一目标,我们对调节有毒重金属摄取和植物耐受的信号传导机制的理解需要广泛的改善。在本综述中,我们总结了最近的文献和关于重金属毒性(口版参考剂量)的数据和金属对食品安全和粮食安全的影响。此外,我们讨论细胞壁,质膜和细胞质中的重金属信号级联中的一些关键事件(接收,转导和响应)。我们未来的观点提供了令人兴奋的进展,这将在不久的将来塑造植物重金属信令领域的令人兴奋的进展。

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