广西植物2026,Vol.46Issue(5):752-766,15.DOI:10.11931/guihaia.gxzw202505001
水稻OsNGCD基因家族鉴定与非生物胁迫表达谱分析
Identification of OsNGCD gene family in rice and analysis of its expression profiles under abiotic stress
摘要
Abstract
Rice(Oryza sativa)is a globally important food crop,and its yield is often severely affected by abiotic stresses such as salinity and drought.Glucosylceramide enzyme(GCD),as a key enzyme in the sphingolipid metabolic pathway,its molecular mechanism in response to abiotic stress in plants has not been clarified,and there is currently a lack of systematic bioinformatics research.In this study,a genome-wide analysis method was used to identify four OsNGCD gene family members(OsNGCD1-OsNGCD4)in rice.Through the integration of bioinformatics analysis and experimental verification methods,the molecular characteristics,evolutionary relationships,and expression regulation patterns of this gene family were systematically analyzed,aiming to reveal its biological functions in response to abiotic stress in plants.The results were as follows:(1)Bioinformatics analyses revealed that all OsNGCD members contained a conserved DUF608 domain and possessed promoter regions enriched with drought-responsive(MBS)and hormone-responsive(ABRE/GARE)cis-acting elements.(2)Tissue expression profiling analysis indicated that OsNGCD1 was predominantly expressed in roots at the three-leaf stage;OsNGCD2 was highly expressed in roots at the germination stage and in grains at the wax ripening stage;OsNGCD3 had high expression levels in stems and leaves at the three-leaf stage and in inflorescences at the booting stage;OsNGCD4 was continuously highly expressed in stems at all stages.(3)Quantitative real-time PCR(qRT-PCR)analysis revealed that OsNGCD1 and OsNGCD4 exhibited a rapid and strong upregulation in leaves under salt,alkali,and drought stress conditions,suggesting their potential role in early stress response regulation.In contrast,OsNGCD2 displayed a distinct root-predominant expression pattern,particularly during later stress stages,with significantly higher expression levels in roots compared to leaves.This study elucidates the OsNGCD gene family's molecular mechanisms in rice stress adaptation through spatiotemporal expression patterns,offering novel targets for stress-resistant crop breeding.关键词
水稻/OsNGCD基因家族/非生物胁迫/鞘脂代谢/生物信息学Key words
rice/OsNGCD gene family/abiotic stress/sphingolipid metabolism/bioinformatics分类
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苏晶,钱娇娇,田永丽,张丹婷,罗成科,李培富,马天利..水稻OsNGCD基因家族鉴定与非生物胁迫表达谱分析[J].广西植物,2026,46(5):752-766,15.基金项目
宁夏回族自治区教育厅高等学校科学研究重点项目(NYG2024009). (NYG2024009)