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601篇 您的检索式:作者名="Hahn L"
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1One stop shop:backbones trees for important phytopathogenic genera:Ⅰ(2014)显示文摘Many fungi are pathogenic on plants and cause significant damage in agriculture and forestry.They are also part of the natural ecosystem and may play a role in regulating plant numbers/density.Morphological identification and analysis of plant pathogenic fungi,while important,is often hampered by the scarcity of discriminatory taxonomic characters and the endophytic or inconspicuous nature of these fungi.Molecular(DNA sequence)data for plant pathogenic fungi have emerged as key information for diagnostic and classification studies,although hampered in part by non-standard laboratory practices and analytical methods.To facilitate current and future research,this study provides phylogenetic synopses for 25 groups of plant pathogenic fungi in the Ascomycota,Basidiomycota,Mucormycotina(Fungi),and Oomycota,using recent molecular data,up-to-date names,and the latest taxonomic insights.Lineagespecific laboratory protocols together with advice on their application,as well as general observations,are also provided.We hope to maintain updated backbone trees of these fungal lineages over time and to publish them jointly as new data emerge.Researchers of plant pathogenic fungi not covered by the present study are invited to join this future effort.Bipolaris,Botryosphaeriaceae,Botryosphaeria,Botrytis,Choanephora,Colletotrichum,Curvularia,Diaporthe,Diplodia,Dothiorella,Fusarium,Gilbertella,Lasiodiplodia,Mucor,Neofusicoccum,Pestalotiopsis,Phyllosticta,Phytophthora,Puccinia,Pyrenophora,Pythium,Rhizopus,Stagonosporopsis,Ustilago and Verticillium are dealt with in this paper.Kevin D.Hyde R.Henrik Nilsson S.Aisyah Alias Hiran A.Ariyawansa Jaime E.Blair Lei Cai Arthur W.A.M.de Cock Asha J.Dissanayake Sally L.Glockling Ishani D.Goonasekara Michal Gorczak Matthias Hahn Ruvishika S.Jayawardena Jan A.L.van Kan Matthew H.Laurence C.AndréLévesque Xinghong Li Jian-Kui Liu Sajeewa S.N.Maharachchikumbura Dimuthu S.Manamgoda Frank N.Martin Eric H.C.McKenzie Alistair R.McTaggart Peter E.Mortimer Prakash V.R.Nair Julia Pawlowska Tara L.Rintoul Roger G.Shivas Christoffel F.J.Spies Brett A.Summerell Paul W.J.Taylor Razak B.Terhem Dhanushka Udayanga Niloofar Vaghefi Grit Walther Mateusz Wilk Marta Wrzosek Jian-Chu Xu JiYe Yan Nan Zhou 2014Fungal Diversity2014,,4:3
2A framework infrageneric classification of Carex (Cyperaceae) and its organizing principles显示文摘Phylogenetic studies of Carex L.(Cyperaceae)have consistently demonstrated that most subgenera and sections are para-or polyphyletic.Yet,taxonomists continue to use subgenera and sections in Carex classification.Why?The Global Carex Group(GCG)here takes the position that the historical and continued use of subgenera and sections serves to(i)organize our understanding of lineages in Carex,(ii)create an identification mechanism to break the~2000 species of Carex into manageable groups and stimulate its study,and(iii)provide a framework to recognize morphologically diagnosable lineages within Carex.Unfortunately,the current understanding of phylogenetic relationships in Carex is not yet sufficient for a global reclassification of the genus within a Linnean infrageneric(sectional)framework.Rather than leaving Carex classification in its current state,which is misleading and confusing,we here take the intermediate steps of implementing the recently revised subgeneric classification and using a combination of informally named clades and formally named sections to reflect the current state of our knowledge.This hybrid classification framework is presented in an order corresponding to a linear arrangement of the clades on a ladderized phylogeny,largely based on the recent phylogenies published by the GCG.It organizes Carex into six subgenera,which are,in turn,subdivided into 62 formally named Linnean sections plus 49 informal groups.This framework will serve as a roadmap for research on Carex phylogeny,enabling further development of a complete reclassification by presenting relevant morphological and geographical information on clades where possible and standardizing the use of formal sectional names.Eric H.Roalson Pedro Jiménez-Mejías Andrew L.Hipp Carmen Benítez-Benítez Leo P.Bruederle Kyong-Sook Chung Marcial Escudero Bruce A.Ford Kerry Ford Sebastian Gebauer Berit Gehrke Marlene Hahn Muhammad Qasim Hayat Mathias H.Hoffmann Xiao-Feng Jin Sangtae Kim Isabel Larridon Étienne Léveillé-Bourret Yi-Fei Lu Modesto Luceño Enrique Maguilla Jose IgnacioMárquez-Corro Santiago Martín-Bravo Tomomi Masaki Mónica Míguez Robert F.C.Naczi Anton A.Reznicek Daniel Spalink Julian R.Starr Uzma Tamara Villaverde Marcia J.Waterway Karen L.Wilson and Shu-Ren Zhang 2021Journal of Systematics and Evolution2021,59,4:3
3Biomechanical and computer analysis of radial head prostheses显示文摘Ganesh G Gupta George Lucas Dustan L Hahn 1997Journal of Shoulder and Elbow Surgery1997,,1:2
4Dendritic cells stimuInted with actinobacilus actinomycetemcomitans elicit rapid gamma interferon responses by natural killer cells显示文摘KIKUCHI T HAHN C L TANAKA S 2004Infection and Immunity2004,72,9:1
5Damage and failure behaviour of a woven C/SiC material显示文摘Hahn L Ansorge F Brückner-foit A 1997Journal of Materials Science1997,32,:1
6Fas and Fas ligand in embryos and adult mice:ligand expression in several immune-privileged tissues and coexpression in adult tissues characterized by apoptotic cell turnover显示文摘FRENCH L E HAHNE M VIARD I 1996J Cell Biol1996,133,2:1
7Fracture characteristics of carbonfiber,ceramic and non-palladium endodontic post systems atmonotonously increasing loads显示文摘Ottl P Hahn L Lauer HCh 2002J Oral Rehabil2002,29,2:1
8Fracture characteristics of carbon fiber,ceramic and non-palladium endodontic post systems at monotonously increasimg loads显示文摘OttL P Hahn L lauer HCH 2002Oral Rehabil2002,29,2:1
9Dysfunctional,pro-inflammatory HDL directly upregulates monocyte PDGFRbeta,chemotaxis and TNFalpha production显示文摘Skaggs BJ Hahn BH Sahakian L 2010Clin Immunol2010,137,1:1
10Dynamic queue length threshold for shared memory packet switchs显示文摘Choudhury A K Hahne E L 1998IEEE/ACM Transaction on Networking1998,6,2:1
11EpsteinBarr virus BRLF1inhibits transcription of IRF3and IRF7and suppresses induction of interferon-beta显示文摘BENTZ G L LIU R HAHN A M 2010Virology2010,402,:1
12Field trial to evaluate immunogenicity of a glycoprotein I (gE) - deleted pseudorabies virus vaccine after its administration in the presence ofmaternal antibodies显示文摘Weigel R M Lehman J R Herr L Hahn E C 1995Am J Vet Res1995,56,9:1
13On the structure effects of bimetallic PtRu electrocatalysts towards methanol oxidation 显示文摘DUBAU L HAHN F COUTANCEAU C 2003Journal of Electroanalytical Chemistry2003,,:1
14Large volume tissue ablation with radiofrequency by using a clustered, inrirnally cooled electrode technique:laboratory and clinical enperience in liver metastases 显示文摘Goldberg SN Solbiati L Hahn PF 1998Radiology1998,209,2:1
15Expression of cyclin D1 is correlated with poor prognosis in patients with areca quid chewing-related oral squamous cell carcinomas in Taiwan显示文摘KUO M Y P LIN C Y HAHN L J 1999J Oral Pathol Med1999,28,4:1
16Dynamic Queue Length Thresholds for Multiple Loss Priorities显示文摘E L Hahne A K Choudnury 2002IEEE/ACM Transactions on Networking2002,10,3:1
17Transcutaneous electrical stimulation versus traditional dysphagia therapy: a nonconcurrent cohort study显示文摘Blumenfeld L Hahn Y Lepage A et el 2006Ortolaryngol Head Neck Surg2006,135,5:1
18Opposing cardioprotective actions and parallel hypertrophic effects of delta PKC and epsilon PKC显示文摘Chen L Hahn H Wu G 2001Proc Natl Acad Sci USA2001,98,11:1
19Dynamic queue length threshold for multiple loss priorities显示文摘Hahne E L Choudhury A K 2002IEEE/ACM Transaction on Networking2002,10,3:1
20Cytokine induction by streptococ- cus mutans and pulpal pathagenesis显示文摘Hahn C L Best A M Tew J G 2000Infect Immun2000,68,12:1
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