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The Plant as Metaorganism and Research on Next-Generation Systemic Pesticides – Prospects and Challenges

机译:植物作为有机生物和下一代系统性农药的研究–前景与挑战

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摘要

Systemic pesticides (SPs) are usually recommended for soil treatments and as seed coating agents and are taken up from the soil by involving various plant-mediated processes, physiological, and morphological attributes of the root systems. Microscopic insights and next-generation sequencing combined with bioinformatics allow us now to identify new functions and interactions of plant-associated bacteria and perceive plants as meta-organisms. Host symbiotic, rhizo-epiphytic, endophytic microorganisms and their functions on plants have not been studied yet in accordance with uptake, tanslocation and action of pesticides. Root tips exudates mediated by rhizobacteria could modify the uptake of specific pesticides while bacterial ligands and enzymes can affect metabolism and fate of pesticide within plant. Over expression of specific proteins in cell membrane can also modify pesticide influx in roots. Moreover, proteins and other membrane compartments are usually involved in pesticide modes of action and resistance development. In this article it is discussed what is known of the physiological attributes including apoplastic, symplastic, and trans-membrane transport of SPs in accordance with the intercommunication dictated by plant–microbe, cell to cell and intracellular signaling. Prospects and challenges for uptake, translocation, storage, exudation, metabolism, and action of SPs are given through the prism of new insights of plant microbiome. Interactions of soil applied pesticides with physiological processes, plant root exudates and plant microbiome are summarized to scrutinize challenges for the next-generation pesticides.
机译:通常建议将内吸性农药(SPs)用于土壤处理和作为种子包衣剂,并通过涉及各种植物介导的过程,根系的生理和形态属性从土壤中吸收。微观洞察力和下一代测序技术与生物信息学相结合,使我们现在能够确定植物相关细菌的新功能和相互作用,并将植物视为元有机体。尚未根据农药的吸收,转移和农药作用研究宿主共生,根生表生,内生微生物及其在植物上的功能。根际细菌介导的根尖分泌物可以改变特定农药的吸收,而细菌配体和酶可以影响植物体内农药的代谢和命运。细胞膜中特定蛋白质的过度表达也可以改变农药从根部流入。此外,蛋白质和其他膜区室通常参与农药的作用方式和抗性发展。在本文中,根据植物-微生物,细胞间信号和细胞内信号传导的相互交流,讨论了已知的生理特性,包括SP的质外性,共生性和跨膜转运。通过植物微生物组的新见解,提出了SP的吸收,转运,储存,渗出,代谢和作用的前景和挑战。总结了土壤施用农药与生理过程,植物根系分泌物和植物微生物组之间的相互作用,以详细研究下一代农药的挑战。

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