Plant metabolomics:applications and challenges in the era of multi-omics big dataOA
Plant metabolites are crucial for the growth,development,environmental adaptation,and nutritional quality of plants.Plant metabolomics,a key branch of systems biology,involves the comprehensive analysis and interpretation of the composition,variation,and functions of these metabolites.Advances in technology have transformed plant metabolomics into a sophisticated process involving sample collection,metabolite extraction,high-throughput analysis,data processing,and multidimensional statistical analysis.In today’s era of big data,the field is witnessing an explosion in data acquisition,offering insight into the complexity and dynamics of plant metabolism.Moreover,multiple omics strategies can be integrated to reveal interactions and regulatory networks across different molecular levels,deepening our understanding of plant biological processes.In this review,we highlight recent advances and challenges in plant metabolomics,emphasizing the roles for this technique in improving crop varieties,enhancing nutritional value,and increasing stress resistance.We also explore the scientific foundations of plant metabolomics and its applications in medicine,and ecological conservation.
Yingchen Hao;Zhonghui Zhang;Enxi Luo;Jun Yang;Shouchuang Wang
National Key Laboratory for Tropical Crop Breeding,School of Breeding and Multiplication(Sanya Institute of Breeding and Multiplication),Hainan University,Sanya 572025,China National Key Laboratory for Tropical Crop Breeding,College of Tropical Agriculture and Forestry,Hainan University,Sanya 572025,ChinaNational Key Laboratory for Tropical Crop Breeding,School of Breeding and Multiplication(Sanya Institute of Breeding and Multiplication),Hainan University,Sanya 572025,China National Key Laboratory for Tropical Crop Breeding,College of Tropical Agriculture and Forestry,Hainan University,Sanya 572025,ChinaNational Key Laboratory for Tropical Crop Breeding,School of Breeding and Multiplication(Sanya Institute of Breeding and Multiplication),Hainan University,Sanya 572025,China National Key Laboratory for Tropical Crop Breeding,College of Tropical Agriculture and Forestry,Hainan University,Sanya 572025,ChinaNational Key Laboratory for Tropical Crop Breeding,School of Breeding and Multiplication(Sanya Institute of Breeding and Multiplication),Hainan University,Sanya 572025,China National Key Laboratory for Tropical Crop Breeding,College of Tropical Agriculture and Forestry,Hainan University,Sanya 572025,ChinaNational Key Laboratory for Tropical Crop Breeding,School of Breeding and Multiplication(Sanya Institute of Breeding and Multiplication),Hainan University,Sanya 572025,China National Key Laboratory for Tropical Crop Breeding,College of Tropical Agriculture and Forestry,Hainan University,Sanya 572025,China Yazhouwan National Laboratory,Sanya 572025,China
农业科技
MetabolomicsMass spectrometryMulti-omicsMetabolic pathwaysMetabolic regulation
《aBIOTECH》 2025 (1)
P.116-132,17
financially supported by grants from the National Natural Science Foundation of China(No.32101662)Natural Science Foundation of Hainan Province(No.323RC421)Hainan Province Science and Technology Special Fund(No.ZDYF2022XDNY144)Hainan Provincial Academician Innovation Platform Project(No.HD-YSZX-202004)Hainan University Startup Fund(No.KYQD(ZR)21025)Collaborative Innovation Center of Nanfan and High-Efficiency Tropical Agriculture,Hainan University(No.XTCX2022NYB06).
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