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红花基因组学研究及应用
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作者 苏鲁方 谭鑫雨 +2 位作者 胡涵冰 陈锐 刘小云 《自然科学》 2025年第5期1028-1036,共9页
红花作为一种重要的经济作物,在食品、医药和工业等领域具有广泛应用。随着测序技术的快速发展,红花基因组学研究取得了显著进展。本文阐述了基于全基因组和表观基因组测序技术在红花基因组研究中的应用,包括全基因组测序(GWAS)、表观... 红花作为一种重要的经济作物,在食品、医药和工业等领域具有广泛应用。随着测序技术的快速发展,红花基因组学研究取得了显著进展。本文阐述了基于全基因组和表观基因组测序技术在红花基因组研究中的应用,包括全基因组测序(GWAS)、表观基因组测序(epiGWAS)和转录组测序等。整合GWAS、表观组、转录组与代谢组多组学,已挖掘脂肪酸合成(FAD2, FAB2)、类黄酮/羟基红花色素A合成(CHS, DFR, CtCGT1)、花色(YABBY, CYP450)及抗旱(CtWRKYs, CtSAMS1)等关键基因。未来,单细胞表观图谱、泛基因组及AI育种模型将加速高油、高黄酮、抗逆红花新品种创制,为分子育种与产业升级提供基因蓝图。 展开更多
关键词 红花 测序技术 基因组学 表观基因组学
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Establishment of rat model for aspiration pneumonia and potential mechanisms
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作者 hanbing hu Junfeng Chen +5 位作者 Yiru Shao Yuedong Tang Yu Dun Obulkasim Memet Xuanrong Bao Jie Shen 《Animal Models and Experimental Medicine》 2025年第6期1105-1118,共14页
Background:Aspiration pneumonia is a severe health concern,particularly for ICU patients with impaired airway defenses.Current animal models fail to fully replicate the condition,focusing solely on chemical lung injur... Background:Aspiration pneumonia is a severe health concern,particularly for ICU patients with impaired airway defenses.Current animal models fail to fully replicate the condition,focusing solely on chemical lung injury from gastric acid while neglecting pathogen-induced inflammation.This gap hinders research on pathogenesis and treatment,creating an urgent need for a clinically relevant model.This study aimed to develop an improved rat model of aspiration pneumonia by combining hydrochloric acid(HCl)and lipopolysaccharide(LPS)administration.Methods:Specific pathogen-free Sprague Dawley rats underwent intratracheal instillation of HCl and LPS.Techniques included rat weight measurement,tracheal intubation,pulmonary function monitoring,lung tissue sampling with HE staining and scoring,bronchoalveolar lavage fluid(BALF)sampling,protein and inflammatory cytokine analysis via BCA and ELISA,BALF pH determination,Evans Blue dye assessment,blood gas analysis,FITC-dextran leakage,Western blotting,electron microscopy,survival analysis,and transcriptome sequencing with bioinformatics.Statistical analysis was performed using GraphPad Prism.Results:The optimal model involved instillation of 1.5μL/g.wt HCl(pH=1)followed by 20μg/g.wt LPS after 1 h.This model reproduced acute lung injury,including tissue damage,pulmonary microvascular dysfunction,inflammatory responses,hypoxemia,and impaired pulmonary ventilation,with recovery observed at 72 h.PANoptosis was confirmed,characterized by increased markers.Concentration-dependent effects of HCl and LPS on lung damage were identified,alongside cytokine elevation and microvascular dysfunction.Conclusions:This optimized model closely mimics clinical aspiration pneumonia,providing a valuable tool for studying pathophysiology and therapeutic strategies. 展开更多
关键词 acute lung injury ASPIRATION disease models PNEUMONIA
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