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110篇 您的检索式:作者名="Slippers"
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1Genomic and transcriptomic analysis unveils population evolution and development of pesticide resistance in fall armyworm Spodoptera frugiperda显示文摘The fall armyworm(FAW),Spodoptera frugiperda,is a destructive pest native to America and has recently become an invasive insect pest in China.Because of its rapid spread and great risks in China,understanding of FAW genetic background and pesticide resistance is urgent and essential to develop effective management strategies.Here,we assembled a chromosome-level genome of a male FAW(SFynMstLFR)and compared re-sequencing results of the populations from America,Africa,and China.Strain identification of 163 individuals collected from America,Africa and China showed that both C and R strains were found in the American pop-ulations,while only C strain was found in the Chinese and African populations.Moreover,population geno-mics analysis showed that populations from Africa and China have close relationship with significantly genetic differentiation from American populations.Taken toge-ther,FAWs invaded into China were most likely origi-nated from Africa.Comparative genomics analysis displayed that the cytochrome p450 gene family is extremely expanded to 425 members in FAW,of which 283 genes are specific to FAW.Treatments of Chinese populations with twenty-three pesticides showed the variant patterns of transcriptome profiles,and several detoxification genes such as AOX,UGT and GST spe-cially responded to the pesticides.These findings will be useful in developing effective strategies for manage-ment of FAW in China and other invaded areas.Furong Gui Tianming Lan Yue Zhao Wei Guo Yang Dong Dongming Fang Huan Liu Haimeng Li Hongli Wang Ruoshi Hao Xiaofang Cheng Yahong Li Pengcheng Yang Sunil Kumar Sahu Yaping Chen Le Cheng Shuqi He Ping Liu Guangyi Fan Haorong Lu Guohai Hu Wei Dong Bin Chen Yuan Jiang Yongwei Zhang Hanhong Xu Fei Lin Bernard Slippers Alisa Postma Matthew Jackson Birhan Addisie Abate Kassahun Tesfaye Aschalew Lemma Demie Meseret Destaw Bayeleygne Dawit Tesfaye Degefu Feng Chen Paul K.Kuria Zachary M.Kinyua Tong-Xian Liu Huanming Yang Fangneng Huang Xin Liu Jun Sheng Le Kang 2022Protein & Cell2022,13,7:2
2Botryosphaeriaceae as endophytes and latent pathogens of woody plants: diversity, ecology and impact显示文摘Bernard Slippers Michael J. Wingfield 2007Fungal Biology Reviews2007,,2:2
3Naming and outline of Dothideomycetes-2014 including proposals for the protection or suppression of generic names显示文摘Article 59.1,of the International Code of Nomenclature for Algae,Fungi,and Plants(ICN;Melbourne Code),which addresses the nomenclature of pleomorphic fungi,became effective from 30 July 2011.Since that date,each fungal species can have one nomenclaturally correct name in a particular classification.All other previously used names for this species will be considered as synonyms.The older generic epithet takes priority over the younger name.Any widely used younger names proposed for use,must comply with Art.57.2 and their usage should be approved by the Nomenclature Committee for Fungi(NCF).In this paper,we list all genera currently accepted by us in Dothideomycetes(belonging to 23 orders and 110 families),including pleomorphic and nonpleomorphic genera.In the case of pleomorphic genera,we follow the rulings of the current ICN and propose single generic names for future usage.The taxonomic placements of 1261 genera are listed as an outline.Protected names and suppressed names for 34 pleomorphic genera are listed separately.Notes and justifications are provided for possible proposed names after the list of genera.Notes are also provided on recent advances in our understanding of asexual and sexual morph linkages in Dothideomycetes.A phylogenetic tree based on four gene analyses supported 23 orders and 75 families,while 35 families still lack molecular data.Nalin N.Wijayawardene Pedro W.Crous Paul M.Kirk David L.Hawksworth Saranyaphat Boonmee Uwe Braun Dong-Qin Dai Melvina J.D’souza Paul Diederich Asha Dissanayake Mingkhuan Doilom Singang Hongsanan E.B.Gareth Jones Johannes Z.Groenewald Ruvishika Jayawardena James D.Lawrey Jian-Kui Liu Robert Lücking Hugo Madrid Dimuthu S.Manamgoda Lucia Muggia Matthew P.Nelsen Rungtiwa Phookamsak Satinee Suetrong Kazuaki Tanaka Kasun M.Thambugala Dhanushka N.Wanasinghe Saowanee Wikee Ying Zhang Andre Aptroot H.A.Ariyawansa Ali H.Bahkali D.Jayarama Bhat Cécile Gueidan Putarak Chomnunti G.Sybren De Hoog Kerry Knudsen Wen-Jing Li Eric H.C.McKenzie Andrew N.Miller Alan J.L.Phillips Marcin Piatek Huzefa A.Raja Roger S.Shivas Bernad Slippers Joanne E.Taylor Qing Tian Yong Wang Joyce H.C.Woudenberg Lei Cai Walter M.Jaklitsch Kevin D.Hyde 2014Fungal Diversity2014,,6:2
4Combined multiple gene genealogies and phenotypiceharaeters differentiate several species previously identified as Botryosphaeria dothidea 显示文摘Slippers B Crous P W Denman S 2004Mycologia2004,,96:1
5Taxonomy, phylogeny and identification of Botryosphaeriaceae associated with pome and stone fruit trees in South Africa and other regions of the world 显示文摘Slippers B Smit W A Crous P W 2007Plant Pathology2007,56,1:1
6High levels of genetic diversity and cryptic recombination is widespread in introduced Diplodia pinea populations 显示文摘Bihon W Burgess T Slippers B 2012Australasian Plant Pathology2012,41,1:1
7Phylogenetic lineages in the Botryospbaeriaceae显示文摘Crous P W Slipper B Wingfield M J 2006Studies in mycology2006,55,:1
8Synthesis and characterisation of Fe-V-O thin film photoanodes 显示文摘Morton C D Slipper I J Thomas M J K 2010Journal of Photochemistry and Photobiology A: Chemistry2010,216,:1
9Botryosphaeriaceae asso- ciated with Pterocarpus angolensis(kiaat) in South Africa显示文摘Mehl J W M Slippers B Roux J 2011Mycologia2011,103,:1
10Distribution of Diplodia pinea and its genotypic diversity within asymptomatic Pinus patula trees 显示文摘Bihon W Burgess T Slippers B 2011Australasian Plant Pathology2011,40,5:1
11The application of electrostatic dry powderdeposition technology to coat drug-eluting stents 显示文摘Nukala R K Boyapally H Slipper I J Mendham A P Douroumis D 2010Pharmaceutical Research2010,27,1:1
12Combined multiple gene genealogies and phenotypic characters differentiate several species previously identified as Botryosphaeria dothidea显示文摘Slippers B Crous P W Denman S 2004Mycologia2004,96,1:1
13Taxonomy, phylogeny and identification of Botryosphaeriaceae associated with pome and stone fruit trees in South Africa and other regions of the world显示文摘Slippers B Smit W A Crous P W 2007Plant Pathology2007,56,:1
14Foscarnet in the management of cytomegalovirus infections in hematopoiet- ic stem cell transplant patients 显示文摘BACIGALUPO A BOYD A SLIPPER J 2012Expert Rev Anti Infect T- her2012,10,11:1
15The use of ostracods in paleoenvironmental studies, or what can you do with an ostracod shell? 显示文摘Boomer I Home D J Slipper I J 2003Paleontological Society Papers2003,9,:1
16Phylogenetic lineages in the Botryosphaeriales: a systematic and evolutionary framework显示文摘Slippers B Boissin E Phillips A J L 2013Study in Mycology2013,76,1:1
17Botryosphaeriaceae as endophytes and latent pathogens of woody plants:diversity,ecology and impact显示文摘Slippers B Wingfield M J 2007Fungal Biological Reviews2007,21,:1
18Worldwide movement of exotic forest fungi, especially in the Tropics and the Southern Hemisphere显示文摘Wingfield M J Slippers B Roux J 2001BioScience2001,51,2:1
19Eucalypt pests and diseases: growing threats to plantation productivity显示文摘Wingfield M J Slippers B Hurley B P 2008Southern Forests2008,70,2:1
20Multiple gene genealogies and microsatellite markers reflect relationships between morphotypes of Sphaeropsis sapinea and distinguish a new species of Diplodia 显示文摘de Wet J Burgess T Slippers B 2003Mycological Research2003,107,5:1
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