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家榆种子ASC-GSH循环相关性质研究
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作者 裴培 刘钊 汪晓峰 《林业实用技术》 北大核心 2010年第7期13-15,共3页
以家榆种子为材料,以时间为梯度对其老化过程进行实验,检测ASC-GSH循环中ASSC/DHA和GSH/GSSG两比值的变化以及APX酶的活性变化趋势。吸光度检测结果清楚地表明,在老化过程中两比值首先呈增长趋势,在老化的第3天均达到峰值后,随即开始下... 以家榆种子为材料,以时间为梯度对其老化过程进行实验,检测ASC-GSH循环中ASSC/DHA和GSH/GSSG两比值的变化以及APX酶的活性变化趋势。吸光度检测结果清楚地表明,在老化过程中两比值首先呈增长趋势,在老化的第3天均达到峰值后,随即开始下降。种子Native-PAGE凝胶电泳结果表明,活性染色的条带显现出明显的梯度变化,亦第3天APX酶达最大活性。 展开更多
关键词 家榆种子 细胞凋亡 asc-gsh循环 相关性研究
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OsNTL2 confers rice osmotic stress resilience through coordinated transcriptional regulation of the ASC-GSH redox cycle and cell wall biosynthesis
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作者 Heng Zhou Xiaoyun Ma +6 位作者 Jianping Yang Lingxi Geng Taotao Qiu Xinyue Fan Kailu Zhang Fuyuan Zhu Yanjie Xie 《Stress Biology》 2025年第1期85-104,共20页
Drought,high salinity,and low temperatures impose osmotic stress,hindering water uptake and severely limiting plant growth and crop productivity.Osmotic stress not only perturbs cellular osmotic homeostasis but also d... Drought,high salinity,and low temperatures impose osmotic stress,hindering water uptake and severely limiting plant growth and crop productivity.Osmotic stress not only perturbs cellular osmotic homeostasis but also disrupts multiple metabolic processes,including reactive oxygen species(ROS)metabolism.However,the transcriptional regulation underlying these redox processes in plants remains poorly understood.Here,we report that rice NAC WITH TRANSMEMBRANE MOTIF1-LIKE 2(OsNTL2)is required for tolerance to salt and osmotic stresses.DNA affinity purificationsequencing(DAP-seq)revealed that OsNTL2 directly targets key genes in the ascorbate-glutathione(ASC-GSH)redox cycle,including ascorbate peroxidase 2(APX2),monodehydroascorbate reductase 1(MDHAR1),glutathione reductase 2(GR2),and glutathione peroxidase 5(GPX5),as well as peroxidase 3/70(PRX3/70),which function in the hydrogen peroxide catabolic process.Consistently,OsNTL2 activity was associated with enhanced ASC-GSH cycle enzyme activities,elevated ASC and GSH contents,and reduced ROS accumulation,as confirmed by histochemical staining.Furthermore,integrating DAP-seq with transcriptome analysis,we identified 325 direct transcriptional targets of OsNTL2,with a significant enrichment of genes involved in lignin and xylan biosynthesis.Notably,OsNTL2 bound directly to the promoters of,4-coumarate-CoA ligase 5(Os4CL5),and cinnamoyl-CoA reductase(OsCCR),activating their transcription.Correspondingly,stress-induced lignin,xylan,and cellulose accumulation was markedly reduced in ntl2 mutants but enhanced in OsNTL2-overexpressing lines.Together,these findings identify OsNTL2 as a key transcriptional regulator that coordinates the ASC-GSH redox cycle and cell wall biosynthesis to confer osmotic stress tolerance in rice. 展开更多
关键词 NAC TF Osmotic stress asc-gsh cycle Transcriptional regulation Cell wall
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