山西小麦品种苗期锈病抗性鉴定及抗病基因检测OA
Evaluation of Rust Resistance in the Seedling Stage of Wheat Varieties and Disease-Resistant Gene Detection in Shanxi Province,China
[目的]条锈病和叶锈病是黄淮冬麦区小麦生产的主要病害,精准鉴定小麦品种资源的抗性,了解抗病基因分布,挖掘新的抗病基因/位点,为抗病品种的选育和推广奠定基础.[方法]利用当前条锈菌流行小种 CYR32、CYR34,以及叶锈菌小种 PHSH 对 326 份山西小麦品种进行苗期抗性鉴定,利用分子标记和 GBTS 液相芯片技术进行检测,并通过 16K SNP芯片进行全基因组关联分析挖掘抗锈病遗传位点.[结果]山西小麦品种苗期抗条锈病能力整体较好,其中,金麦 919、云麦766和临黑199等97份品种苗期对CYR32和CYR34小种均表现出抗性;中旱110、泽优2号和石农086等15个(4.60%)品种苗期对 CYR32 表现免疫;晋农 207、晋麦 13 和临黑 199 等 14 份(4.29%)品种苗期对 CYR34 表现免疫;山西小麦品种苗期抗叶锈病能力较差,仅 12 份品种苗期对叶锈病表现中抗.23 个检测抗病基因中共检测到 11 个抗条锈病基因/QTL——QYrqin.nwafu-2AL(87.42%)、Yr78(27.30%)、Yr9(24.54%)、QYrsn.nwafu-3DL(15.95%)、Yr75(13.19%)、QYrhm.nwafu-2BC(10.73%)、Yr5(7.98%)、Yr80(2.76%)、QYr.nwafu-4BL(2.15%)、YrSP(1.84%)和Yr82(1.84%),7 个抗叶锈病基因——Lr46(28.83%)、Lr1(22.09%)、Lr68(16.87%)、Lr26(16.56%)、Lr34(11.96%)、Lr13(5.83%)和 Lr37(1.23%),未携带 Yr15、Yr26、Lr10、Lr21和 Lr80.对于多个抗病基因的聚合,聚合频率最高的是QYrqin.nwafu-2AL+QYrsn.nwafu-3DL和Lr46+Lr68组合.全基因组关联分析共检测到 5 个与条锈病抗性显著关联的位点,2B、5B 和 7A 染色体上可能携带新的条锈病抗性位点;同时检测到 14 个与叶锈病抗性显著关联的位点,1B、4A 和 5A 等染色体上可能携带新的叶锈病抗性位点.[结论]山西小麦苗期抗条锈病能力整体较好,但苗期抗叶锈病整体较差;在 1B、2B 和 3B 等 13 条染色体上共定位到 19 个与条锈/叶锈病抗性显著关联的位点,推测 QYrs-2B、QLrs-2A和 QLrs-4A等 14个位点可能是新的锈病抗性位点.
[Objective]Stripe rust and leaf rust are major diseases affecting wheat production in the Huang-Huai winter wheat region,accurate identification of resistance in wheat cultivars,understanding the distribution of disease-resistance genes,excavate new disease-resistance genes/loci lays the foundation for the breeding and promotion of disease-resistant varieties.[Method]We phenotyped 326 Shanxi wheat at both seedling against the prevalent Chinese Pst races CYR32 and CYR34,and Pt race PHSH.To identify more Yr/Lr genes,we also conducted molecular detection and GBTS,using a genome-wide association study(GWAS)using a wheat 16K SNP array.[Result]Shanxi wheat seedlings demonstrate generally good resistance to stripe rust during the seedling stage,97 cultivars such as Jinmai 919,Yunmai 766 and Linhei 199 showed good resistance to the Pst isolate CYR32 and CYR34 during the seedling stage;15(4.60%)cultivars such as Zhonghan 110,Zeyou 2 and Shinong 086 showed resistance to the isolate Pst isolate CYR32;14(4.29%)cultivars such as Jinnong 207,Jinmai 13 and Linhei 199 showed resistance to the isolate Pst isolate CYR34;wheat seedlings in Shanxi Province exhibit poor resistance to leaf rust during the seedling stage,12 cultivars showed moderate resistance to the isolate Pt isolate PHSH.Of the 23 Yr/Lr genes assayed,a total of eleven stripe rust resistance genes/QTLs have been detected,including QYrqin.nwafu-2AL(87.42%),Yr78(27.30%),Yr9(24.54%),QYrsn.nwafu-3DL(15.95%),Yr75(13.19%),QYrhm.nwafu-2BC(10.73%),Yr5(7.98%),Yr80(2.76%),QYr.nwafu-4BL(2.15%),YrSP(1.84%)and Yr82(1.84%),as well as seven leaf rust resistance genes,including Lr46(28.83%),Lr1(22.09%),Lr68(16.87%),Lr26(16.56%),Lr34(11.96%),Lr13(5.83%)and Lr37(1.23%)were identified in wheat varieties from Shanxi province,whereas Yr15,Yr26,Lr10,Lr21 and Lr80 were not detected;for the pyramiding of multiple Yr/Lr genes,the highest proportion was the QYrqin.nwafu-2AL+QYrsn.nwafu-3DL and Lr46+Lr68 combinations.GWAS identified five loci significantly associated with stripe rust resistance,2B,5B and 7A may harbor novel loci associated with stripe rust resistance,simultaneously identified fourteen loci significantly associated with resistance to leaf rust disease,1B,4A and 5A may harbor novel loci associated with stripe rust resistance.[Conclusion]Shanxi wheat exhibits generally good resistance to stripe rust during the seedling stage,but overall resistance to leaf rust is poor,thirty-eight loci significantly associated with stripe rust/leaf rust resistance were mapped across 13 chromosomes,including 1B,2B,and 3B.Preliminary analysis suggests that fourteen of these loci,including QYrs-2B,QLrs-2A and QLrs-4A may represent novel rust resistance loci.
毛嘉琦;武棒棒;赵佳佳;郝宇琼;郑兴卫;吴建辉;曾庆东;刘敏捷;郑军
山西农业大学小麦研究所/农业农村部有机旱作农业重点实验室(部省共建),山西 临汾 041000||山西农业大学农学院,山西 晋中 030801山西农业大学小麦研究所/农业农村部有机旱作农业重点实验室(部省共建),山西 临汾 041000山西农业大学小麦研究所/农业农村部有机旱作农业重点实验室(部省共建),山西 临汾 041000山西农业大学小麦研究所/农业农村部有机旱作农业重点实验室(部省共建),山西 临汾 041000山西农业大学小麦研究所/农业农村部有机旱作农业重点实验室(部省共建),山西 临汾 041000西北农林科技大学植物保护学院,陕西 杨凌 712100西北农林科技大学植物保护学院,陕西 杨凌 712100山西农业大学植物保护学院/农业有害生物综合治理山西省重点实验室,太原 030031山西农业大学小麦研究所/农业农村部有机旱作农业重点实验室(部省共建),山西 临汾 041000
山西小麦条锈病叶锈病抗病基因全基因组关联分析
Shanxi wheatstripe rustleaf rustresistance geneGWAS
《中国农业科学》 2026 (14)
3006-3021,16
山西省现代农业产业技术体系专项(2026CYJSTX02-05)、山西农业大学生物育种工程(YZGC2026155)和三晋英才支持计划(SJYC2024481)
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