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细胞外DNA:作物保护中信号分子的见解

Extracellular DNA: Insight of a Signal Molecule in Crop Protection.

作者信息

Carbajal-Valenzuela Ireri Alejandra, Medina-Ramos Gabriela, Caicedo-Lopez Laura Helena, Jiménez-Hernández Alejandra, Ortega-Torres Adrian Esteban, Contreras-Medina Luis Miguel, Torres-Pacheco Irineo, Guevara-González Ramón Gerardo

机构信息

C. A. Biosystems Engineering, Campus Amazcala, Autonomous University of Queretaro, Carr. Chichimequillas-Amazcala Km 1 S/N, C.P., El Marques, Querétaro 76265, Mexico.

Molecular Plant Pathology Laboratory, Polytechnic University of Guanajuato, Cortazar 38496, Mexico.

出版信息

Biology (Basel). 2021 Oct 11;10(10):1022. doi: 10.3390/biology10101022.

Abstract

Agricultural systems face several challenges in terms of meeting everyday-growing quantities and qualities of food requirements. However, the ecological and social trade-offs for increasing agricultural production are high, therefore, more sustainable agricultural practices are desired. Researchers are currently working on diverse sustainable techniques based mostly on natural mechanisms that plants have developed along with their evolution. Here, we discuss the potential agricultural application of extracellular DNA (eDNA), its multiple functioning mechanisms in plant metabolism, the importance of hormetic curves establishment, and as a challenge: the technical limitations of the industrial scale for this technology. We highlight the more viable natural mechanisms in which eDNA affects plant metabolism, acting as a damage/microbe-associated molecular pattern (DAMP, MAMP) or as a general plant biostimulant. Finally, we suggest a whole sustainable system, where DNA is extracted from organic sources by a simple methodology to fulfill the molecular characteristics needed to be applied in crop production systems, allowing the reduction in, or perhaps the total removal of, chemical pesticides, fertilizers, and insecticides application.

摘要

农业系统在满足日益增长的粮食数量和质量需求方面面临诸多挑战。然而,增加农业产量所带来的生态和社会权衡代价高昂,因此,人们期望采用更具可持续性的农业实践方式。研究人员目前正在致力于多种可持续技术,这些技术大多基于植物在进化过程中所形成的自然机制。在此,我们讨论细胞外DNA(eDNA)在农业中的潜在应用、其在植物新陈代谢中的多种作用机制、建立剂量效应曲线的重要性,以及作为一项挑战:该技术在工业规模应用中的技术局限性。我们着重介绍了eDNA影响植物新陈代谢的更可行的自然机制,它可作为损伤/微生物相关分子模式(DAMP,MAMP)或作为一般的植物生物刺激剂。最后,我们提出了一个完整的可持续系统,即通过一种简单的方法从有机来源中提取DNA,以满足作物生产系统中应用所需的分子特性,从而减少或可能完全消除化学农药、化肥和杀虫剂的使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0cef/8533321/34437ad13d02/biology-10-01022-g001.jpg

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