维普中文期刊产品整合服务
414篇 您的检索式:作者名="J.D"
    题名 作者 年代 出处 被引量
1湖泊碳库效应对青藏高原气候变化解释的影响探讨显示文摘在当前全球变化背景下,青藏高原冰川急剧退缩严重影响着东亚地区水资源。为了有效地规划水资源,需要对高原气候变化及其机制有深入的理解。尽管在青藏高原及周边地区有大量的古气候记录,但是目前对高原气候的时空变化及其机制仍缺乏深入一致的认识。青藏高原冰川、树轮和石笋记录可以提供过去气候变化的框架,但是这些记录的分布局限于一些特定的地理区域。青藏高原上广泛分布的湖泊沉积物是研究高原气候的时空变化及其机制的优良介质。湖泊沉积物岩芯的年龄控制主要依赖于放射性碳同位素定年,但大多数高原湖泊具有碳库效应,为建立沉积岩芯年代控制需要进行碳库年龄校正所带来的年龄误差目前未有深入研究,这在某种程度上制约了利用湖泊沉积物记录研究高原气候时空变化及其机制。本文比较了目前确定高原湖泊碳库年龄的方法并提出建议采用的方法,汇总目前已发表的高原湖泊碳库年龄,讨论湖泊现代碳库年龄的空间分布及其影响因素,讨论湖泊碳库过去变化及其可能造成的岩芯年代控制误差;以青海湖和班公错两个高原湖泊已发表的记录为例讨论过去碳库年龄变化可能造成对记录完全不同的解释;还讨论了由碳库效应校正而带来的湖泊沉积物岩芯年龄控制误差对青藏高原湖泊记录的末次盛冰期终止年代的空间分布及其对变化机制解释的影响。如果考虑碳库效应的过去变化,目前所观测到的高原气候时空变化及其机制需要重新解释。因此,为了更好地理解青藏高原气候时空变化及其机制,我们需要更多有良好定年、高分辨率和定量化的湖泊记录,本文也建议在解释目前湖泊记录时需要应对年龄控制极大重视。侯居峙 William J.D'Andrea 柳中晖 2012第四纪研究2012,32,3:14
2面向21世纪的美国高等教育改革显示文摘J.D安德森 毛新勇 1999华东师范大学学报(教育科学版)1999,17,1:5
3Families of Sordariomycetes显示文摘Sordariomycetes is one of the largest classes of Ascomycota that comprises a highly diverse range of fungi characterized mainly by perithecial ascomata and inoperculate unitunicate asci.The class includes many important plant pathogens,as well as endophytes,saprobes,epiphytes,coprophilous and fungicolous,lichenized or lichenicolous taxa.They occur in terrestrial,freshwater and marine habitats worldwide.This paper reviews the 107 families of the class Sordariomycetes and provides a modified backbone tree based on phylogenetic analysis of four combined loci,with a maximum five representative taxa from each family,where available.This paper brings together for the first time,since Barrs’1990 Prodromus,descriptions,notes on the history,and plates or illustrations of type or representative taxa of each family,a list of accepted genera,including asexual genera and a key to these taxa of Sordariomycetes.Delineation of taxa is supported where possible by molecular data.The outline is based on literature to the end of 2015 and the Sordariomycetes now comprises six subclasses,32 orders,105 families and 1331 genera.The family Obryzaceae and Pleurotremataceae are excluded from the class.Sajeewa S.N.Maharachchikumbura Kevin D.Hyde E.B.Gareth Jones E.H.C.McKenzie Jayarama D.Bhat Monika C.Dayarathne Shi-Ke Huang Chada Norphanphoun Indunil C.Senanayake Rekhani H.Perera Qiu-Ju Shang Yuanpin Xiao Melvina J.D’souza Sinang Hongsanan Ruvishika S.Jayawardena Dinushani A.Daranagama Sirinapa Konta Ishani D.Goonasekara Wen-Ying Zhuang Rajesh Jeewon Alan J.L.Phillips Mohamed A.Abdel-Wahab Abdullah M.Al-Sadi Ali H.Bahkali Saranyaphat Boonmee Nattawut Boonyuen Ratchadawan Cheewangkoon Asha J.Dissanayake Jichuan Kang Qi-Rui Li Jian Kui Liu Xing Zhong Liu Zuo-Yi Liu JJennifer Luangsa-ard Ka-Lai Pang Rungtiwa Phookamsak Itthayakorn Promputtha Satinee Suetrong Marc Stadler Tingchi Wen Nalin N.Wijayawardene 2016Fungal Diversity2016,,4:3
4Fungal diversity notes 1–110:taxonomic and phylogenetic contributions to fungal species显示文摘This paper is a compilation of notes on 110 fungal taxa,including one new family,10 new genera,and 76 new species,representing a wide taxonomic and geographic range.The new family,Paradictyoarthriniaceae is introduced based on its distinct lineage in Dothideomycetes and its unique morphology.The family is sister to Biatriosporaceae and Roussoellaceae.The new genera are Allophaeosphaeria(Phaeosphaeriaceae),Amphibambusa(Amphisphaeriaceae),Brunneomycosphaerella(Capnodiales genera incertae cedis),Chaetocapnodium(Capnodiaceae),Flammeascoma(Anteagloniaceae),Multiseptospora(Pleosporales genera incertae cedis),Neogaeumannomyces(Magnaporthaceae),Palmiascoma(Bambusicolaceae),Paralecia(Squamarinaceae)and Sarimanas(Melanommataceae).The newly described species are the Ascomycota Aliquandostipite manochii,Allophaeosphaeria dactylidis,A.muriformia,Alternaria cesenica,Amphibambusa bambusicola,Amphisphaeria sorbi,Annulohypoxylon thailandicum,Atrotorquata spartii,Brunneomycosphaerella laburni,Byssosphaeria musae,Camarosporium aborescentis,C.aureum,C.frutexensis,Chaetocapnodium siamensis,Chaetothyrium agathis,Colletotrichum sedi,Conicomyces pseudotransvaalensis,Cytospora berberidis,C.sibiraeae,Diaporthe thunbergiicola,Diatrype palmicola,Dictyosporium aquaticum,D.meiosporum,D.thailandicum,Didymella cirsii,Dinemasporium nelloi,Flammeascoma bambusae,Kalmusia italica,K.spartii,Keissleriella sparticola,Lauriomyces synnematicus,Leptosphaeria ebuli,Lophiostoma pseudodictyosporium,L.ravennicum,Lophiotrema eburnoides,Montagnula graminicola,Multiseptospora thailandica,Myrothecium macrosporum,Natantispora unipolaris,Neogaeumannomyces bambusicola,Neosetophoma clematidis,N.italica,Oxydothis atypica,Palmiascoma gregariascomum,Paraconiothyrium nelloi,P.thysanolaenae,Paradictyoarthrinium tectonicola,Paralecia pratorum,Paraphaeosphaeria spartii,Pestalotiopsis digitalis,P.dracontomelon,P.italiana,Phaeoisaria pseudoclematidis,Phragmocapnias philippinensis,Pseudocamarosporium cotinae,Pseudocercospora tamarindi,Pseudotrichia rubriostiolata,P.thailandica,Psiloglonium multiseptatum,Saagaromyces mangrovei,Sarimanas pseudofluviatile,S.shirakamiense,Tothia spartii,Trichomerium siamensis,Wojnowicia dactylidicola,W.dactylidis and W.lonicerae.The Basidiomycota Agaricus flavicentrus,A.hanthanaensis,A.parvibicolor,A.sodalis,Cantharellus luteostipitatus,Lactarius atrobrunneus,L.politus,Phylloporia dependens and Russula cortinarioides are also introduced.Epitypifications or reference specimens are designated for Hapalocystis berkeleyi,Meliola tamarindi,Pallidocercospora acaciigena,Phaeosphaeria musae,Plenodomus agnitus,Psiloglonium colihuae,P.sasicola and Zasmidium musae while notes and/or new sequence data are provided for Annulohypoxylon leptascum,A.nitens,A.stygium,Biscogniauxia marginata,Fasciatispora nypae,Hypoxylon fendleri,H.monticulosum,Leptosphaeria doliolum,Microsphaeropsis olivacea,Neomicrothyrium,Paraleptosphaeria nitschkei,Phoma medicaginis and Saccotheciaceae.A full description of each species is provided with light micrographs(or drawings).Molecular data is provided for 90 taxa and used to generate phylogenetic trees to establish a natural classification for species.Jian Kui Liu Kevin D.Hyde E.B.Gareth Jones Hiran A.Ariyawansa Darbhe J.Bhat Saranyaphat Boonmee Sajeewa S.N.Maharachchikumbura Eric H.C.McKenzie Rungtiwa Phookamsak Chayanard Phukhamsakda Belle Damodara Shenoy Mohamed A,Abdel-Wahab Bart Buyck Jie Chen K.W.Thilini Chethana Chonticha Singtripop Dong Qin Dai Yu Cheng Dai Dinushani ADaranagama Asha J.Dissanayake Mingkwan Doilom Melvina J.D’souza Xin Lei Fan Ishani DGoonasekara Kazuyuki Hirayama Sinang Hongsanan Subashini C.Jayasiri Ruvishika S.Jayawardena Samantha C.Karunarathna Wen Jing Li Ausana Mapook Chada Norphanphoun Ka Lai Pang Rekhani H.Perera Derek Peršoh Umpava Pinruan Indunil CSenanayake Sayanh Somrithipol Satinee Suetrong Kazuaki Tanaka Kasun M.Thambugala Qing Tian Saowaluck Tibpromma Danushka Udayanga Nalin N.Wijayawardene Dhanuska Wanasinghe Komsit Wisitrassameewong Xiang Yu Zeng Faten AAbdel-Aziz Slavomir Adamčík Ali H.Bahkali Nattawut Boonyuen Timur Bulgakov Philippe Callac Putarak Chomnunti Katrin Greiner Akira Hashimoto Valerie Hofstetter Ji Chuan Kang David Lewis Xing Hong Li Xing Zhong Liu Zuo Yi Liu Misato Matsumura Peter E.Mortimer Gerhard Rambold Emile Randrianjohany Genki Sato Veera Sri-Indrasutdhi Cheng Ming Tian Annemieke Verbeken Wolfgang von Brackel Yong Wang Ting Chi Wen Jian Chu Xu Ji Ye Yan Rui Lin Zhao Erio Camporesi 2015Fungal Diversity2015,,3:3
5Naming 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
6查看详情显示文摘Way J.D Noble R.D Reed D.L Ginley G.M. Jarr L.A 0,,:1
7查看详情显示文摘Hoffman J.D Weeks J.J 0,,:1
8Structural characterization of kerogens to granulite facies graphite:applicability of Raman microprobe spectroscopy显示文摘Wopenka B Pasteris J.D 0,,:1
9Crop and irrigation management strategies for saline-sodic soils and waters aimed at environmentally sustainable agriculture显示文摘M Qadir J.D Oster 2003Science of the Total Environment2003,,1:1
10Metmyoglobin reducing activity and colour stability of ovine longissimus muscle显示文摘A.E.D Bekhit G.H Geesink J.D Morton R Bickerstaffe 2001Meat Science2001,,4:1
11Temporal dynamics of brain activation during a working memory task显示文摘Cohen J.D Perlstein W.M Braver T.S Nystrom L.E Noll D.C Jonides J & Smith E.E 0,,:1
12Quantification of clinical morbidity associated with schistosome infection in sub-Saharan Africa显示文摘Marieke J van der Werf Sake J de Vlas Simon Brooker Caspar W.N Looman Nico J.D Nagelkerke J.Dik F Habbema Dirk Engels 2003Acta Tropica2003,,2:1
13Community Attachment in Mass Society显示文摘Kasarda J.D Janowitz M 0,,:1
14Activities of extracellular enzymes in physically isolated fractions of restored grassland soils显示文摘Allison S.D Jastrow J.D 0,,:1
15Influence of livestock grazing on C sequestration in semi-arid mixed-grass and short-grass rangelands显示文摘J.D Reeder G.E Schuman 2001Environmental Pollution2001,,3:1
16Conflict monitoring versus selection for-action in anterior cingulate cortex显示文摘Botvinick M Nystrom L.E Fissell K Carter C.S & Cohen J.D 0,,6758:1
17查看详情显示文摘Holbrey J.D Turner M.B Reichert W.M Rogers R.D 0,,:1
18Examining the testing effect with open-and closed-book tests显示文摘Agarwal P.K Karpicke J.D Kang S.H.K Roediger H.L & McDermott K.B 0,,07:1
19The design and analysis of longitudinal studies of development and psychopathology in context:Statistical models and methodological recommendations显示文摘Willett J.B Singer J.D Martin N.C 0,,02:1
20Energy savings from the adopt ion of more efficientappliance显示文摘Khazzoom J.D 0,,01:1
返回顶部 每页显示:
共21页 首页 上一页 第1页 下一页 末页 /21 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费