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Meta-QTL analysis for mining of candidate genes and constitutive gene network development for fungal disease resistance in maize(Zea mays L.)
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作者 Mamta Gupta Mukesh Choudhary +3 位作者 Alla Singh Seema Sheoran Deepak Singla Sujay Rakshit 《The Crop Journal》 SCIE CSCD 2023年第2期511-522,共12页
The development of resistant maize cultivars is the most effective and sustainable approach to combat fungal diseases.Over the last three decades,many quantitative trait loci(QTL)mapping studies reported numerous QTL ... The development of resistant maize cultivars is the most effective and sustainable approach to combat fungal diseases.Over the last three decades,many quantitative trait loci(QTL)mapping studies reported numerous QTL for fungal disease resistance(FDR)in maize.However,different genetic backgrounds of germplasm and differing QTL analysis algorithms limit the use of identified QTL for comparative studies.The meta-QTL(MQTL)analysis is the meta-analysis of multiple QTL experiments,which entails broader allelic coverage and helps in the combined analysis of diverse QTL mapping studies revealing common genomic regions for target traits.In the present study,128(33.59%)out of 381 reported QTL(from 82 studies)for FDR could be projected on the maize genome through MQTL analysis.It revealed 38 MQTL for FDR(12 diseases)on all chromosomes except chromosome 10.Five MQTL namely 1_4,2_4,3_2,3_4,and 5_4 were linked with multiple FDR.Total of 1910 candidate genes were identified for all the MQTL regions,with protein kinase gene families,TFs,pathogenesis-related,and disease-responsive proteins directly or indirectly associated with FDR.The comparison of physical positions of marker-traits association(MTAs)from genome-wide association studies with genes underlying MQTL interval verified the presence of QTL/candidate genes for particular diseases.The linked markers to MQTL and putative candidate genes underlying identified MQTL can be further validated in the germplasm through marker screening and expression studies.The study also attempted to unravel the underlying mechanism for FDR resistance by analyzing the constitutive gene network,which will be a useful resource to understand the molecular mechanism of defense-response of a particular disease and multiple FDR in maize. 展开更多
关键词 Meta-QTL Maize genome fungal disease resistance Candidate gene Constitutive genes Gene network
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抗生素滥用与真菌性鼻窦炎 被引量:3
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作者 辛忠海 王宁宇 《国际耳鼻咽喉头颈外科杂志》 2008年第5期306-308,共3页
近年来鼻窦真菌感染的发病率有增无减,甚至占到全部鼻窦手术的10%。文献曾报道100%的正常人和96%的慢性鼻窦炎患者鼻腔中可检出真菌。长期大量使用广谱抗生素使原来既包含细菌也包含真菌的正常菌群问比例失衡,从一定程度上导致鼻... 近年来鼻窦真菌感染的发病率有增无减,甚至占到全部鼻窦手术的10%。文献曾报道100%的正常人和96%的慢性鼻窦炎患者鼻腔中可检出真菌。长期大量使用广谱抗生素使原来既包含细菌也包含真菌的正常菌群问比例失衡,从一定程度上导致鼻窦的真菌过度生长而引发疾病。本文就抗生素滥用现状与真菌性鼻窦炎的关系进行综述。 展开更多
关键词 鼻窦炎(Sinusitis) 耐药性 真菌(Drug resistance fungal) 抗菌药 (Anti—Bacterial Agents)
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