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7篇 您的检索式:作者名="Susan ED"
    题名 作者 年代 出处 被引量
1The genome-wide search for quantitive trait loci undering asthma显示文摘Susan ED Sumit B Alan J 1996Nature1996,383,:1
2Conserved molecular signatures of neurogenesis in the hippocampal subgranular zone of rodents and primates显示文摘Jeremy A. Miller Jason Nathanson Daniel Franjic Sungbo Shim Rachel A. Dalley Sheila Shapouri Kimberly A. Smith Susan M. Sunkin Amy Bernard Jeffrey L. Bennett Chang-Kyu Lee Michael J. Hawrylycz Allan R. Jones David G. Amaral Nenad Sestan Fred H. Gage Ed S. 2013Development2013,,22:1
3Fas/CD95-Induced Chemokines Can Serve as “Find-Me” Signals for Apoptotic Cells显示文摘Sean P. Cullen Conor M. Henry Conor J. Kearney Susan E. Logue Maria Feoktistova Graham A. Tynan Ed C. Lavelle Martin Leverkus Seamus J. Martin 2013Molecular Cell2013,,:1
4Accuracy of clinical diagnosis of idiopathic Parkinson's disease: a clinico-pathological study of 100 cases 显示文摘Andrew JH Susan ED Linda K 1992J Neurol Neurosurg Psychiatry1992,55,3:1
5What features improve the accuracy of clinical diagnosis in Parkinson's disease: A clinicopathologic study显示文摘Andrew JH Yoav BS Susan ED 1992Neurology1992,42,:1
6The genome-wide search for quantitive trait loci undering asthma显示文摘Susan ED Sumit B Alan J 1996J Nature1996,383,19:1
7Multiple quantitative trait loci contribute to resistance to bacterial canker incited by Pseudomonas syringae pv.actinidiae in kiwifruit(Actinidia chinensis)显示文摘Pseudomonas syringae pv.actinidiae(Psa)biovar 3,a virulent,canker-inducing pathogen is an economic threat to the kiwifruit(Actinidia spp.)industry worldwide.The commercially grown diploid(2×)A.chinensis var.chinensis is more susceptible to Psa than tetraploid and hexaploid kiwifruit.However information on the genetic loci modulating Psa resistance in kiwifruit is not available.Here we report mapping of quantitative trait loci(QTLs)regulating resistance to Psa in a diploid kiwifruit population,derived from a cross between an elite Psa-susceptible‘Hort16A’and a resistant male breeding parent P1.Using high-density genetic maps and intensive phenotyping,we identified a single QTL for Psa resistance on Linkage Group(LG)27 of‘Hort16A’revealing 16–19%phenotypic variance and candidate alleles for susceptibility and resistance at this loci.In addition,six minor QTLs were identified in P1 on distinct LGs,exerting 4–9%variance.Resistance in the F1 population is improved by additive effects from‘Hort16A’and P1 QTLs providing evidence that divergent genetic pathways interact to combat the virulent Psa strain.Two different bioassays further identified new QTLs for tissue-specific responses to Psa.The genetic marker at LG27 QTL was further verified for association with Psa resistance in diploid Actinidia chinensis populations.Transcriptome analysis of Psa-resistant and susceptible genotypes in field revealed hallmarks of basal defense and provided candidate RNA-biomarkers for screening for Psa resistance in greenhouse conditions.Jibran Tahir Stephen Hoyte Heather Bassett Cyril Brendolise Abhishek Chatterjee Kerry Templeton Cecilia Deng Ross Crowhurst Mirco Montefiori Ed Morgan Andrew Wotton Keith Funnell Claudia Wiedow Mareike Knaebel Duncan Hedderley Joel Vanneste John McCallum Kirsten Hoeata Amardeep Nath David Chagné Luis Gea Susan E.Gardiner 2019Horticulture Research2019,6,1:0
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