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16篇 您的检索式:作者名="E.Taylor"
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1智慧农机调配管理平台设计与实现显示文摘针对目前农机作业过程中资源调度不合理、效率低下以及缺乏有效的农机调度与监管手段等问题,提出一种基于互联网的智慧农机管理平台。该平台分为数据采集层、网络传输层、平台层、访问层、用户层5个层次。围绕该平台,开发谷物收割机的机载数据采集单元,'我是地主'、'我是机手'手机APP,通过终端+APP的方式,将农机信息,服务供需双方信息进行实时动态匹配和对接,解决农机服务过程中供需之间的信息不对称问题。为解决大规模数据高并发的数据接收和存储问题,给出三层数据接收与存储架构,该结构同时具备良好的可扩展性。以机手为服务对象,提出在多目标约束下的基于回溯策略的农机智能调度算法,在作业季内可提高机手收益20.6%,实现了对农机资源的高效调配。设计改进型的三角形分割法,该方法提高农机作业面积计算精确性,使平均相对误差降至4.5%以下,减少农机服务过程中因测量作业面积产生的人力成本,能够满足服务费用快速计算的要求。将互联网技术融入农业机械的作业和管理环节,为实现农业机械作业全程信息化和智能化进行有益的尝试。王春山 张璠 滕桂法 Matthew E.Taylor 王克俭 王斌 2018中国农机化学报2018,39,1:19
2对中国流域生态补偿的法律思考显示文摘中国流域经济在快速发展的同时给流域的生态环境也带来了巨大的压力,而流域生态补偿正是为了保障流域生态和经济的可持续性发展所采取的有力措施之一。文章解释了生态补偿和流域生态补偿的概念,阐述了对中国流域生态补偿进行法律保护的必要性,剖析了流域生态补偿法律制度的现状,从流域生态补偿的立法原则、法律体系和补偿机制三方面给出了对中国流域生态补偿的立法建议。张艳芳 Melinda E.Taylor 2013生态经济2013,29,1:11
3Bambusicolous fungi显示文摘Fourty-three species of microfungi from bamboo are treated,including one new family,Occultibambusaceae,three new genera,Neoanthostomella,Occultibambusa and Seriascoma,27 new species,one renamed species and 15 redescribed or re-illustrated species,and four designated reference specimens are treated in this paper,the majority of which are saprobic on dead culms.To determine species identification,separate phylogenetical analyses for each group are carried out,based on molecular data from this study and sequences downloaded from GenBank.Morphologically similar species and phylogenetically close taxa are compared and discussed.In addition a list of bambusicolous fungi published since Hyde and colleagues in 2002 is provided.Dong Qin Dai Rungtiwa Phookamsak Nalin N.Wijayawardene Wen Jing Li D.Jayarama Bhat Jian Chu Xu Joanne E.Taylor Kevin D.Hyde E.Chukeatirote 2017Fungal Diversity2017,,1:2
4Naming 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
5Exogenous jasmonic acid mimics herbivore‐induced systemic increase in cell wall bound peroxidase activity and reduction in leaf expansion显示文摘Jason P.Moore Nigel D.Paul John B.Whittaker Jane E.Taylor 2003Functional Ecology2003,,4:1
6Effect of renal medullary H2O2 on salt-induced hypertension and renal injury显示文摘Norman E.Taylor Allen W.Cowley Jr 0,,:1
7Microfungi on Tectona grandis(teak)in Northern Thailand显示文摘To date there is virtually no information available concerning the fungi associated with Tectona grandis(teak)(Lamiaceae)in Thailand.In this study,samples of microfungi were collected from both asymptomatic stems and dead wood,and symptomatic branches,stem and leaves of T.grandisfrom 27 sites in six provinces(Chiang Mai,Chiang Rai,Phayao,Phitsanulok,Phrae and Uttaradit Provinces).Morphology and combined multi-gene phylogeny(CAL,GAPDH,ITS,LSU,RPB2,SSU,TEF1 and TUB)were used to identify taxa.A total of 270 collections,representing 28 fungal species residing in 12 families,7 orders and 21 genera,with three species of uncertain taxonomic placement were identified.Of these,one family,three genera and 14 species are new to science.The new family,Pseudocoleodictyosporaceae is introduced based on its distinct lineage in the Dothideomycetes and its unique morphology as compared to Roussoellaceae and Torulaceae.The new genera are Neooccultibambusa,Pseudocoleodictyospora and Subglobosporium.The newly described species are Diaporthe neoraonikayaporum,D.tectonendophytica,D.tectonae,D.tectonigena,Hermatomyces tectonae,H.thailandica,Manoharachariella tectonae,Neooccultibambusa chiangraiensis,Pseudocoleodictyospora sukhothaiensis,Ps.tectonae,Ps.thailandica,Rhytidhysteron tectonae,Subglobosporium tectonae and Tubeufia tectonae.Fourteen species are known published taxa including Alternaria tillandsiae,Berkleasmium talaumae,Boerlagiomyces macrospora,Ceratocladium purpureogriseum,Fusarium solani,Helicoma siamense,Lasiodiplodia theobromae,Macrovalsaria megalospora,Paradictyoarthrinium diffractum,Phaeoacremonium italicum,Sphaeropsis eucalypticola,Stachybotrys levispora,St.renispora and Thaxteriellopsis lignicola.Epitypifications or reference specimens are designated for Boerlagiomyces macrospora and Macrovalsaria megalospora.Macrovalsaria megalospora is transferred from Botryosphaeriaceae to Dothideomycetes genus,incertae sedis based on taxonomy and phylogenetic analysis,which indicate it is distinct from Botryosphaeriaceae.All fungal species represent first reports on T.grandisin Thailand.New taxa and taxa incertae sedis,as well as known taxa which are established as reference specimens or epitypes,are presented with phylogenetic tree analyses,habitat,known distribution,material examined,full descriptions,notes and figures.Information is also provided for known taxa to add to the body of knowledge and to assist those wishing to study fungi occurring on T.grandis in future.Mingkwan Doilom Asha J.Dissanayake Dhanushka N.Wanasinghe Saranyaphat Boonmee Jian-Kui Liu D.Jayarama Bhat Joanne E.Taylor Ali.H.Bahkali Eric H.C.McKenzie Kevin D.Hyde 2017Fungal Diversity2017,,1:1
8Families of Dothideomycetes显示文摘Dothideomycetes comprise a highly diverse range of fungi characterized mainly by asci with two wall layers(bitunicate asci)and often with fissitunicate dehiscence.Many species are saprobes,with many asexual states comprising important plant pathogens.They are also endophytes,epiphytes,fungicolous,lichenized,or lichenicolous fungi.They occur in terrestrial,freshwater and marine habitats in almost every part of the world.We accept 105 families in Dothideomycetes with the new families Anteagloniaceae,Bambusicolaceae,Biatriosporaceae,Lichenoconiaceae,Muyocopronaceae,Paranectriellaceae,Roussoellaceae,Salsugineaceae,Seynesiopeltidaceae and Thyridariaceae introduced in this paper.Each family is provided with a description and notes,including asexual and asexual states,and if more than one genus is included,the type genus is also characterized.Each family is provided with at least one figure-plate,usually illustrating the type genus,a list of accepted genera,including asexual genera,and a key to these genera.A phylogenetic tree based on four gene combined analysis add support for 64 of the families and 22 orders,including the novel orders,Dyfrolomycetales,Lichenoconiales,Lichenotheliales,Monoblastiales,Natipusillales,Phaeotrichales and Strigulales.The paper is expected to provide a working document on Dothideomycetes which can be modified as new data comes to light.It is hoped that by illustrating types we provide stimulation and interest so that more work is carried out in this remarkable group of fungi.Kevin D.Hyde E.B.Gareth Jones Jian-Kui Liu Hiran Ariyawansa Eric Boehm Saranyaphat Boonmee Uwe Braun Putarak Chomnunti Pedro W.Crous Dong-Qin Dai Paul Diederich Asha Dissanayake Mingkhuan Doilom Francesco Doveri Singang Hongsanan Ruvishika Jayawardena James D.Lawrey Yan-Mei Li Yong-Xiang Liu Robert Lücking Jutamart Monkai Lucia Muggia Matthew P.Nelsen Ka-Lai Pang Rungtiwa Phookamsak Indunil C.Senanayake Carol A.Shearer Satinee Suetrong Kazuaki Tanaka Kasun M.Thambugala Nalin N.Wijayawardene Saowanee Wikee Hai-Xia Wu Ying Zhang Begoña Aguirre-Hudson S.Aisyah Alias AndréAptroot Ali H.Bahkali Jose L.Bezerra D.Jayarama Bhat Erio Camporesi Ekachai Chukeatirote Cécile Gueidan David L.Hawksworth Kazuyuki Hirayama Sybren De Hoog Ji-Chuan Kang Kerry Knudsen Wen-Jing Li Xing-Hong Li Zou-Yi Liu Ausana Mapook Eric H.C.McKenzie Andrew N.Miller Peter E.Mortimer Alan J.L.Phillips Huzefa A.Raja Christian Scheuer Felix Schumm Joanne E.Taylor Qing Tian Saowaluck Tibpromma Dhanushka N.Wanasinghe Yong Wang Jian-Chu Xu Supalak Yacharoen Ji-Ye Yan Min Zhang 2013Fungal Diversity2013,,6:1
9The Faces of Fungi database:fungal names linked with morphology,phylogeny and human impacts显示文摘Taxonomic names are key links between various databases that store information on different organisms.Several global fungal nomenclural and taxonomic databases(notably Index Fungorum,Species Fungorum and MycoBank)can be sourced to find taxonomic details about fungi,while DNA sequence data can be sourced from NCBI,EBI and UNITE databases.Although the sequence data may be linked to a name,the quality of the metadata is variable and generally there is no corresponding link to images,descriptions or herbarium material.There is generally no way to establish the accuracy of the names in these genomic databases,other than whether the submission is from a reputable source.To tackle this problem,a new database(FacesofFungi),accessible at www.facesoffungi.org(FoF)has been established.This fungal database allows deposition of taxonomic data,phenotypic details and other useful data,which will enhance our current taxonomic understanding and ultimately enable mycologists to gain better and updated insights into the current fungal classification system.In addition,the database will also allow access to comprehensive metadata including descriptions of voucher and type specimens.This database is user-friendly,providing links and easy access between taxonomic ranks,with the classification system based primarily on molecular data(from the literature and via updated web-based phylogenetic trees),and to a lesser extent on morphological data when molecular data are unavailable.In FoF species are not only linked to the closest phylogenetic representatives,but also relevant data is provided,wherever available,on various applied aspects,such as ecological,industrial,quarantine and chemical uses.The data include the three main fungal groups(Ascomycota,Basidiomycota,Basal fungi)and fungus-like organisms.The FoF webpage is an output funded by the Mushroom Research Foundation which is an NGO with seven directors with mycological expertise.The webpage has 76 curators,and with the help of these specialists,FoF will provide an updated natural classification of the fungi,with illustrated accounts of species linked to molecular data.The present paper introduces the FoF database to the scientific community and briefly reviews some of the problems associated with classification and identification of the main fungal groups.The structure and use of the database is then explained.We would like to invite all mycologists to contribute to these web pages.Subashini C.Jayasiri Kevin D.Hyde Hiran A.Ariyawansa Jayarama Bhat Bart Buyck Lei Cai Yu-Cheng Dai Kamel A.Abd-Elsalam Damien Ertz Iman Hidayat Rajesh Jeewon E.B.Gareth Jones Ali H.Bahkali Samantha C.Karunarathna Jian-Kui Liu J.Jennifer Luangsa-ard H.Thorsten Lumbsch Sajeewa S.N.Maharachchikumbura Eric H.C.McKenzie Jean-Marc Moncalvo Masoomeh Ghobad-Nejhad Henrik Nilsson Ka-Lai Pang Olinto L.Pereira Alan J.L.Phillips Olivier Raspé Adam W.Rollins Andrea I.Romero Javier Etayo Faruk Selçuk Steven L.Stephenson Satinee Suetrong Joanne E.Taylor Clement K.M.Tsui Alfredo Vizzini Mohamed A.Abdel-Wahab Ting-Chi Wen Saranyaphat Boonmee Dong Qin Dai Dinushani A.Daranagama Asha J.Dissanayake Anusha H.Ekanayaka S.C.Fryar Sinang Hongsanan Ruvishika S.Jayawardena Wen-Jing Li Rekhani H.Perera R.Phookamsak Nimali Ide Silva Kasun M.T.hambugala Qing Tian Nalin N.Wijayawardene Rui-Lin Zhao Qi Zhao Ji-Chuan Kang Itthayakorn Promputtha 2015Fungal Diversity2015,,5:1
10Automated Production of Schematic Maps for Mobile Applications显示文摘J.Mark Ware George E.Taylor SuchithAnand NathanThomas 2006Transactions in GIS2006,,1:1
11Automated Production of Schematic Maps for Mobile Applications显示文摘J.Mark Ware George E.Taylor SuchithAnand NathanThomas 2006Transactions in GIS2006,,1:1
12美国市场:中国的机会在何处,如何进入?显示文摘1.美国市场的概况:2.美国商品化木制产品:针叶/阔叶锯材、人造板和家具;3.Russell E.Taylor 2003国外林产工业文摘2003,33,12:0
13Effects of intestine-specific deletion of fibroblast growth factor 15 on alcoholic liver disease development in mice显示文摘Background and aims:Alcoholic liver disease(ALD)is an important and growing cause for the development of chronic liver diseases in the world.Bile acid(BA)levels are increased in patients with ALD anddysregulation of BA homeostasis worsens ALD.BA synthesis is critically regulated by fibroblast growthfactor(FGF)15 in mice and FGF19 in humans.FGF15/19 are mainly produced in the ileum and their mainfunction is to suppress BA synthesis in the liver through the activation of fibroblast growth factor receptor 4(FGFR4)on hepatocytes.The effects of intestine-specific Fgf15 deficiency on the development ofALD were determined in the current study.Methods:Enterocyte-specific Fgf15 knockout mice(Fgf15intint^(-/-))and the established mouse model bychronic and binge ethanol feeding(NIAAA model)were adapted in this study.Results:The Fgf15intint^(-/-)mice had increased BA pool size,consistent with negative effects of FGF15-FGFR4signaling on BA synthesis.There were not obviously physical and hepatic histological abnormalitiespresented in Fgf15intint^(-/-)mice compared to wild-type mice.Following alcohol treatment,the Fgf15intint^(-/-)mice exhibited a higher degree of liver injury,increased hepatic expression of Cd14,a receptor forlipopolysaccharide expressed in the liver,and increased hepatic lipid levels.We did not observe alterations in the levels of fibrosis in the liver or expression of genes involved in hepatic fibrosis,regardless ofgenotypes or following the alcohol treatment.Conclusions:FGF15 may prevent hepatic steatosis in the development of ALD in mice,and maintainingFGF19/FGFR4 signaling may be critical in the prevention and/or treatment of ALD in humans in thefuture.Bo Kong Mingxing Huang Rulaiha E.Taylor Daniel Rizzolo Katherine D.Otersen Grace L.Guo 2022Liver Research2022,6,2:0
14Phylogenetic relationships and morphological reappraisal of Melanommataceae(Pleosporales)显示文摘The family Melanommataceae is widespread in temperate and subtropical regions and species invariably occur on twigs or bark of various woody plants in terrestrial,marine or freshwater habitats.In this paper,the type species of 26 genera of the family are re-described and illustrated.A multi-gene phylogeny based on maximum likelihood and Bayesian analyses of LSU,SSU,RPB2 and EF-1αsequence data of species of Melanommataceae is provided.The new genera,Muriformistrickeria,Pseudostrickeria and Thysanolaenae are introduced.Anomalemma is synonymized under Exosporiella.Acrocordiopsis,Astrosphaeriella,Beverwykella,Caryosporella,Sporidesmiella and Pseudotrichia are excluded from Melanommataceae based on molecular phylogenetic analyses.Presently,20 genera are accepted in Melanommataceae.Based on the phylogenetic data,five new species,Byssosphaeria siamensis,Herpotrichia vaginatispora,Pseudostrickeria muriformis,Pseudostrickeria ononidis and Muriformistrickeria rubi,are introduced.Qing Tian Jian Kui Liu Kevin D.Hyde Dhanushka N.Wanasinghe Saranyaphat Boonmee Subashini C.Jayasiri Zong Long Luo Joanne E.Taylor Alan J.L.Phillips Darbhe J.Bhat Wen Jing Li Hiran Ariyawansa Kasun M.Thambugala EBGareth Jones Putarak Chomnunti Ali H.Bahkali Jian Chu Xu Erio Camporesi 2015Fungal Diversity2015,,5:0
15Dictyosporiaceae fam.nov.显示文摘Dictyosporiaceae fam.nov.is introduced to accommodate a holomorphic group of Dothideomycetes that are saprobes on decaying wood and plant debris in terrestrial and freshwater habitats.The sexual morph comprises Dictyosporium meiosporum,D.sexualis,Gregarithecium curvisporum,Pseudocoleophoma calamagrostidis and P.polygonicola.The sexual morphs are characterized by immersed to erumpent,superficial,globose to subglobose,dark brown to black ascomata,bitunicate asci,and septate,hyaline,sheathed ascospores.The asexual morphs are hyphomycetous with brown,multi-septate,cheirosporous conidia,produced from holoblastic conidiogenous cells,on micronematous conidiophores.Phylogenetic analyses of LSU,SSU and TEF1 sequence data place the genera with cheirospores in a monophyletic clade in the order Pleosporales.Phylogenetic analyses based on ITS sequence data show the family to comprise 44 distinct lineages that correspond to ten genera and an undetermined genus.Four new genera Dictyocheirospora,Dictyopalmispora,Jalapriya and Vikalpa,and eight new species Dictyocheirospora bannica,D.rotunda,D.vinaya,Dictyopalmispora palmae,Dictyosporium olivaceosporum,D.sexualis,Jalapriya pulchra,and Vikalpa lignicola,are introduced in the family.Saranyaphat Boonmee Melvina J.D’souza Zonglong Luo Umpava Pinruan Kazuaki Tanaka Hongyan Su Darbhe J.Bhat Eric H.C.McKenzie E.B.Gareth Jones Joanne E.Taylor Alan J.L.Phillips Kazuyuki Hirayama Prapassorn D.Eungwanichayapant Kevin D.Hyde 2016Fungal Diversity2016,,5:0
16为水循环提供全面解决方案显示文摘ITT在中国面临的最大挑战是什么?ITT的技术优势在于哪些方面? ITT在中国市场的最大挑战是如何扩大品牌知名度和业务范围。现在我们对中国市场进行了很大规模的投资,例如我们正在沈阳、无锡、南京等地兴建工厂,我们在扩大投资的同时也要确保对客户的服务水平不下降。William E.Taylor 2006工业设计2006,0,1:0
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