生物
生物逆境
基因组学
代谢组学
蛋白质组学
计算生物学
抗性(生态学)
功能基因组学
转录组
生物技术
系统生物学
生物成分
基因
遗传学
非生物胁迫
非生物成分
生态学
生物信息学
基因表达
基因组
作者
Ashita Bisht,Dinesh Kumar Saini,Baljeet Kaur,Ritu Batra,Sandeep Kaur,Ishveen Kaur,Suruchi Jindal,Palvi Malik,Pawanjit Kaur Sandhu,Amandeep Kaur,B. S. Gill,Shabir Hussain Wani,Balwinder Kaur,Reyazul Rouf Mir,Karansher Singh Sandhu,Kadambot H. M. Siddique
标识
DOI:10.1007/s11033-023-08260-4
摘要
Biotic stress is a critical factor limiting soybean growth and development. Soybean responses to biotic stresses such as insects, nematodes, fungal, bacterial, and viral pathogens are governed by complex regulatory and defense mechanisms. Next-generation sequencing has availed research techniques and strategies in genomics and post-genomics. This review summarizes the available information on marker resources, quantitative trait loci, and marker-trait associations involved in regulating biotic stress responses in soybean. We discuss the differential expression of related genes and proteins reported in different transcriptomics and proteomics studies and the role of signaling pathways and metabolites reported in metabolomic studies. Recent advances in omics technologies offer opportunities to reshape and improve biotic stress resistance in soybean by altering gene regulation and/or other regulatory networks. We suggest using 'integrated omics' to precisely understand how soybean responds to different biotic stresses. We also discuss the potential challenges of integrating multi-omics for the functional analysis of genes and their regulatory networks and the development of biotic stress-resistant cultivars. This review will help direct soybean breeding programs to develop resistance against different biotic stresses.
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