西南林业大学学报2026,Vol.46Issue(5):106-115,10.DOI:10.11929/j.swfu.202504037
基于生理变化与转录组学的薄壳山核桃耐低温响应研究
Analysis of the Low-temperature Response of Carya illinoinensis Based on Physiological Changes and Transcriptomics
摘要
Abstract
Taking the cold-tolerant Carya illinoinensis from Xinjiang Provenance(XJ)and cold-sensitive"Shaoxing No.1"C.illinoinensis(SX)half-sib families of C.illinoinensis as research subjects,this study com-pared the physiological and biochemical changes in leaves under low-temperature treatment,including superox-ide dismutase(SOD)activity,proline(Pro)content,and malondialdehyde(MDA)content.Through transcriptome sequencing,the changes in gene expression in leaves before and after low-temperature treatment were analyzed.The findings indicated that after low-temperature treatment,compared with the control,the physiological indicat-ors in response to low-temperature,SOD,proline,and MDA,increased by 58.11%,39.30%,and 3.42%respect-ively in XJ,while in SX,they increased by 152.53%,94.52%,and 7.97%respectively.Under low-temperature treatment,genes related to oligosaccharide biosynthesis and metabolism were upregulated in the XJ family of C.illinoinensis,whereas genes involved in low-temperature-related cell surface receptor and membrane receptor sig-nal transduction pathways,as well as those associated with meristem and growth and development,were sup-pressed.Under low-temperature stress,genes involved in brassinosteroid biosynthesis and signal transduction pathways were significantly enriched among the upregulated genes in the XJ family compared with the SX family.Therefore,the XJ family of C.illinoinensis may possess a genetically enhanced capacity for oligosaccharide syn-thesis.Under low-temperature stress,XJ also participates in the low-temperature stress response by enhancing the biosynthesis and signaling of brassinosteroids and increasing gene expression in the CBF pathway,thereby im-proving its cold resistance.关键词
薄壳山核桃/低温/生理生化/转录组/基因表达Key words
Carya illinoinensis/low-temperature/physiological and biochemical/transcriptome/gene expres-sion分类
农业科技引用本文复制引用
吴晓羚,庄晨晨,吴小双,姜年春,余拥军..基于生理变化与转录组学的薄壳山核桃耐低温响应研究[J].西南林业大学学报,2026,46(5):106-115,10.基金项目
浙江省院合作林业科技项目(2023SY07)资助. (2023SY07)