Institute of Quality Standard and Testing Technology for Agro-Products, Chinese Academy of Agricultural Sciences, and Key Laboratory of Agro-Food Safety and Quality, Ministry of Agriculture and Rural Affairs, Beijing 100081, China.
J Agric Food Chem. 2021 Jun 9;69(22):6100-6118. doi: 10.1021/acs.jafc.1c00275. Epub 2021 May 28.
Agrometallomics, as an independent interdiscipline, is first defined and described in this review. Metallic elements widely exist in agricultural plants, animals and edible fungi, seed, fertilizer, pesticide, feedstuff, as well as the agricultural environment and ecology, and even functional and pathogenic microorganisms. So, the agrometallome plays a vital role in molecular and organismic mechanisms like environmetallomics, metabolomics, proteomics, lipidomics, glycomics, immunomics, genomics, etc. To further reveal the inner and mutual mechanism of the agrometallome, comprehensive and systematic methodologies for the analysis of beneficial and toxic metals are indispensable to investigate elemental existence, concentration, distribution, speciation, and forms in agricultural lives and media. Based on agrometallomics, this review summarizes and discusses the advanced technical progress and future perspectives of metallic analytical approaches, which are categorized into ultrasensitive and high-throughput analysis, elemental speciation and state analysis, and spatial- and microanalysis. Furthermore, the progress of agrometallomic innovativeness greatly depends on the innovative development of modern metallic analysis approaches including, but not limited to, high sensitivity, elemental coverage, and anti-interference; high-resolution isotopic analysis; solid sampling and nondestructive analysis; metal chemical species and metal forms, associated molecular clusters, and macromolecular complexes analysis; and metal-related particles or metal within the microsize and even single cell or subcellular analysis.
农业金属组学作为一个独立的交叉学科,在本篇综述中首次被定义和描述。金属元素广泛存在于农业植物、动物和可食用真菌、种子、肥料、农药、饲料以及农业环境和生态系统中,甚至功能性和致病性微生物中。因此,农业金属组在分子和机体机制中发挥着重要作用,如环境金属组学、代谢组学、蛋白质组学、脂质组学、糖组学、免疫组学、基因组学等。为了进一步揭示农业金属组的内在和相互作用机制,需要综合和系统的方法来分析有益和有毒金属,以研究农业生物和介质中元素的存在、浓度、分布、形态和形式。基于农业金属组学,本文综述了金属分析方法的先进技术进展和未来展望,这些方法分为超灵敏和高通量分析、元素形态和状态分析以及空间和微观分析。此外,农业金属组学的创新进展在很大程度上取决于现代金属分析方法的创新发展,包括但不限于高灵敏度、元素覆盖范围和抗干扰性;高分辨率同位素分析;固体采样和非破坏性分析;金属化学物种和金属形态、相关分子簇和高分子配合物分析;以及与金属相关的颗粒或金属在微尺度内,甚至单个细胞或亚细胞分析。