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1Proliferation and apoptosis property of mesenchymal stem cells derived from peripheral blood under the culture conditions of hypoxia and serum deprivation显示文摘增长和间充质的干细胞的 apoptosis 性质从外部血( PB-MSCs )导出的背景在剥夺在 vitro 调节以便在软骨 repair.Methods MSC 为自体同源的 PB-MSCs 应用评估可行性的组织缺氧和浆液下面被调查被 granulocyte 殖民地刺激动员进外部血因素( G-CSF )和 AMD3100.The 血样品从 rabbits.Adhered 房间的中央耳朵动脉被收集被红血球细胞溶解 b 获得当这二个条件联合了 together.Furthermore 时,效果更强壮, apoptosis 上的浆液剥夺的效果与 hypoxia.Conclusions PB-MSCs 的相比是更强壮的当 BM-MSCs.Their 区别和增长能力在关节的软骨修理的地里为局部缺血相关的房间治疗和织物工程使他们成为种子房间的新来源,拥有类似的显型。FU Wei-li JIA Zhu-qing WANG Wei-ping ZHANG Ji-ying FU Xin DUAN Xiao-ning LEUNG Kevin Kar Ming ZHOU Chun-yan YU Jia-kuo 2011Chinese Medical Journal2011,,23:11
2Diaporthe species occurring on citrus in China显示文摘Diaporthe species are important pathogens of a wide range of hosts including many economically important crops.Diaporthe citri is generally accepted to cause melanose of Citrus fruits,leaves and shoots;stem-end rot of fruits and gummosis of perennial branches.In this study,147 strains of Diaporthe were isolated from diseased leaves,twigs,fruits and branches of Citrus from Shaanxi,Zhejiang,Guangxi,Fujian,Guangdong,Jiangxi,Hunan,Chongqing and Shanghai and identified by morphology and molecular analysis of nuclear ribosomal internal transcribed spacer(ITS),partial sequences of translation elongation factor 1-α(EF 1-α),tubulin(TUB)and calmodulin(CAL)genes.All strains from Citrus clustered in three clades.Diaporthe citri was the predominant species and is compared with strains from Florida,USA,where this species was first collected and described.Two new taxa differing from D.citri are described as D.citriasiana and D.citrichinensis in this paper.Inoculation tests indicate that all three species are able to cause stem-end rot of fruits,while only D.citri could cause melanose on leaves.Feng Huang Xin Hou Megan M Dewdney Yushi Fu Guoqing Chen Kevin D Hyde Hongye Li 2013Fungal Diversity2013,,4:4
3Notch signaling:Its essential roles in bone and craniofacial development显示文摘Notch is a cellecell signaling pathway that is involved in a host of activities including development,oncogenesis,skeletal homeostasis,and much more.More specifically,recent research has demonstrated the importance of Notch signaling in osteogenic differentiation,bone healing,and in the development of the skeleton.The craniofacial skeleton is complex and understanding its development has remained an important focus in biology.In this review we briefly summarize what recent research has revealed about Notch signaling and the current understanding of how the skeleton,skull,and face develop.We then discuss the crucial role that Notch plays in both craniofacial development and the skeletal system,and what importance it may play in the future.Mikhail Pakvasa Pranav Haravu Michael Boachie-Mensah Alonzo Jones Elam Coalson Junyi Liao Zongyue Zeng Di Wu Kevin Qin Xiaoxing Wu Huaxiu Luo Jing Zhang Meng Zhang Fang He Yukun Mao Yongtao Zhang Changchun Niu Meng Wu Xia Zhao Hao Wang Linjuan Huang Deyao Shi Qing Liu Na Ni Kai Fu Michael J.Lee Jennifer Moriatis Wolf Aravind Athiviraham Sherwin S.Ho Tong-Chuan He Kelly Hynes Jason Strelzow Mostafa El Dafrawy Russell R.Reid 2021Genes & Diseases2021,8,1:4
4Improved Proxy Re - Encryption Schemes With Applications to Se- cure Distributed Storage 显示文摘GIUSEPPE ATENIESE KEVIN FU MATFHEW GREEN 2006ACM Transactions on Information and System Security2006,9,1:1
5The numbers of fungi:contributions from traditional taxonomic studies and challenges of metabarcoding显示文摘The global diversity of fungi has been estimated using several different approaches.There is somewhere between 2–11 million estimated species,but the number of formally described taxa is around 150,000,a tiny fraction of the total.In this paper,we examine 12 ascomycete genera as case studies to establish trends in fungal species descriptions,and introduce new species in each genus.To highlight the importance of traditional morpho-molecular methods in publishing new species,we introduce novel taxa in 12 genera that are considered to have low species discovery.We discuss whether the species are likely to be rare or due to a lack of extensive sampling and classification.The genera are Apiospora,Bambusicola,Beltrania,Capronia,Distoseptispora,Endocalyx,Neocatenulostroma,Neodeightonia,Paraconiothyrium,Peroneutypa,Phaeoacremonium and Vanakripa.We discuss host-specificity in selected genera and compare the number of species epithets in each genus with the number of ITS(barcode)sequences deposited in GenBank and UNITE.We furthermore discuss the relationship between the divergence times of these genera with those of their hosts.We hypothesize whether there might be more species in these genera and discuss hosts and habitats that should be investigated for novel species discovery.Chayanard Phukhamsakda Rolf Henrik Nilsson Chitrabhanu S.Bhunjun Antonio Roberto Gomes de Farias Ya-Ru Sun Subodini N.Wijesinghe Mubashar Raza Dan-Feng Bao Li Lu Saowaluck Tibpromma Wei Dong Danushka S.Tennakoon Xing-Guo Tian Yin-Ru Xiong Samantha C.Karunarathna Lei Cai Zong-Long Luo Yong Wang Ishara S.Manawasinghe Erio Camporesi Paul M.Kirk Itthayakorn Promputtha Chang-Hsin Kuo Hong-Yan Su Mingkwan Doilom Yu Li Yong-Ping Fu Kevin D.Hyde 2022Fungal Diversity2022,,3:1
6Direct comparison of culture-dependent and culture-independent molecular approaches reveal the diversity of fungal endophytic communities in stems of grapevine(Vitis vinifera)显示文摘Grapevines(Vitis vinifera)are colonized by ubiquitous microorganisms known as endophytes,which may have advantageous or neutral effects without causing disease symptoms.Certain endophytes are uncultivable,so culture-independent approaches such as next generation sequencing(NGS)can help for a better understanding of their ecology and distribution.To date,there are no studies which directly link NGS results with taxa derived from a culturing approach,integrating morphological and multi-gene phylogenetic analysis of endophytes.In this study,a culture-dependent and high-resolution culture-independent approach(next generation sequencing)were used to identify endophytes in grapevine stems.In the culture-dependent approach,a total of 94 isolates were recovered from 84 of 144 healthy grapevine stem fragments(colonization rate=58.3%).The study is unique as we used subsets of combined multi-gene regions to identify the endophytes to species level.Based on each multi-gene phylogenetic analysis,28 species belong to 19 genera(Acremonium,Alternaria,Arthrinium,Ascorhizoctonia,Aspergillus,Aureobasidium,Bipolaris,Botryosphaeria,Botrytis,Chaetomium,Cladosporium,Curvularia,Hypoxylon,Lasiodiplodia,Mycosphaerella,Nigrospora,Penicillium,Phoma,Scopulariopsis)were identified.A higher number of culturable fungi were obtained from 13 year-old vines,followed by eight and three yearold vines.In the culture-independent approach,a fungal richness of 59 operational taxonomic units(OTU)was detected,being highest in 13 year-old grapevines,followed by eight and three years.Even though the cultivation approach detected lower fungal richness,the results related to stem are consistent for fungal community composition and richness.Comparison of the fungal taxa identified by the two approaches resulted in an overlap of 53%of the fungal genera.Due to interspecific variability of the sequences from NGS,in many cases the OTUs(even with the highly abundant ones)were only assignable to order,family or genus level.Incorporating multi-gene phylogenies we successfully identified many of the NGS derived OTUs with poor taxonomic information in reference databases to the genus or species levels.Hence,this study signifies the importance of applying both culture-dependent and culture-independent approaches to study the fungal endophytic community composition in Vitis vinifera.This principle could also be applied to other host species and ecosystem level studies.Asha J.Dissanayake Witoon Purahong Tesfaye Wubet Kevin D.Hyde Wei Zhang Haiying Xu Guojun Zhang Chunyuan Fu Mei Liu Qikai Xing Xinghong Li Jiye Yan 2018Fungal Diversity2018,,3:1
7Vibration sonoelastography and the detectability of lesions显示文摘Kevin J. Parker Dongshan Fu Sheryl M. Graceswki Fai Yeung Stephen F. Levinson 1998Ultrasound in Medicine & Biology1998,,:1
8Homocysteine level and coronary heart disease incidence显示文摘Linda L Rongwei Fu Kevin R 2008Mayo Clin Proc2008,83,:1
9Joint effect of phylogenetic relatedness and trait selection on the elevational distribution of Rhododendron species显示文摘Congeneric species may coexist at fine spatial scales through niche differentiation,however,the magnitude to which the effects of functional traits and phylogenetic relatedness contribute to their distribution along elevational gradients remains understudied.To test the hypothesis that trait and elevational range overlap can affect local speciesʼcoexistence,we first compared phylogenetic relatedness and trait(including morphological traits and leaf elements)divergence among closely related species of Rhododendron L.on Yulong Mountain,China.We then assessed relationships between the overlap of multiple functional traits and the degree of elevational range overlap among species pairs in a phylogenetic context.We found that phylogeny was a good predictor for most functional traits,where closely related species showed higher trait similarity and occupied different elevational niches at our study site.Species pairs of R.subgen.Hymenanthes(Blume)K.Koch showed low elevational range overlap and some species pairs of R.subgen.Rhododendron showed obvious niche differentiation.Trait divergence is greater for species in R.subgen.Rhododendron,and it plays an important role between species pairs with low elevational range overlap.Trait convergent selection takes place between co-occurring closely related species that have high elevational range overlap,which share more functional trait space due to environmental filtering or ecological adaptation in more extreme habitats.Our results highlight the importance of evolutionary history and trait selection for species coexistence at fine ecological scales along environmental gradients.Jia-Yun Zou Ya-Huang Luo Kevin SBurgess Shao-Lin Tan Wei Zheng Chao-Nan Fu Kun Xu Lian-Ming Gao 2021Journal of Systematics and Evolution2021,59,6:1
10Development of delivery methods for carbohydrate-based drugs: controlled release of biologically-active short chain fatty acid-hexosamine analogs显示文摘Udayanath Aich M. Adam Meledeo Srinivasa-Gopalan Sampathkumar Jie Fu Mark B. Jones Christopher A. Weier Sung Yun Chung Benjamin C. Tang Ming Yang Justin Hanes Kevin J. Yarema 2010Glycoconjugate Journal2010,,4:1
11Improved proxy re-encryption schemes with applications to secure distributed storage显示文摘Giuseppe Ateniese Kevin Fu Matthew Green Susan Hohenberger 2006ACM Transactions on Information and System Security (TISSEC)2006,,1:1
12Security and privacy for implantable medical devices 显示文摘HALPERIN Daniel HEYDT-BENJAMIN Thomas S FU Kevin 2008IEEE Pervasive Computing2008,7,1:1
13Early-diverging fungal phyla:taxonomy,species concept,ecology,distribution,anthropogenic impact,and novel phylogenetic proposals显示文摘The increasing number of new fungal species described from all over the world along with the use of genetics to define taxa,has dramatically changed the classification system of early-diverging fungi over the past several decades.The number of phyla established for non-Dikarya fungi has increased from 2 to 17.However,to date,both the classification and phylogeny of the basal fungi are still unresolved.In this article,we review the recent taxonomy of the basal fungi and re-evaluate the relationships among early-diverging lineages of fungal phyla.We also provide information on the ecology and distribu-tion in Mucoromycota and highlight the impact of chytrids on amphibian populations.Species concepts in Chytridiomycota,Aphelidiomycota,Rozellomycota,Neocallimastigomycota are discussed in this paper.To preserve the current application of the genus Nephridiophaga(Chytridiomycota:Nephridiophagales),a new type species,Nephridiophaga blattellae,is proposed.Kerstin Voigt Timothy Y.James Paul M.Kirk AndréL.C.M.de A.Santiago Bruce Waldman Gareth W.Griffith Minjie Fu Renate Radek Jürgen F.H.Strassert Christian Wurzbacher Gustavo Henrique Jerônimo David R.Simmons Kensuke Seto Eleni Gentekaki Vedprakash G.Hurdeal Kevin D.Hyde Thuong T.T.Nguyen Hyang Burm Lee 2021Fungal Diversity2021,,4:1
14Perifosine plus docetaxel in patients with platinum and taxane resistant or refractory high-grade epithelial ovarian cancer显示文摘Siqing Fu Bryan T. Hennessy Chaan S. Ng Zhenlin Ju Kevin R. Coombes Judith K. Wolf Anil K. Sood Charles F. Levenback Robert L. Coleman John J. Kavanagh David M. Gershenson Maurie Markman Kristine Dice Adrienne Howard Jane Li Yang Li Katherine Stemke-Hale 2012Gynecologic Oncology2012,,1:1
15Homocysteine Level and Coronary Heart Disease Incidence: A Systematic Review and Meta-analysis显示文摘Linda L. Humphrey Rongwei Fu Kevin Rogers Michele Freeman Mark Helfand 2008Mayo Clinic Proceedings2008,,11:1
16Fungal diversity notes 1611-1716: taxonomic and phylogenetic contributions on fungal genera and species emphasis in south China显示文摘This article is the 15th contribution in the Fungal Diversity Notes series,wherein 115 taxa from three phyla,nine classes,28 orders,48 families,and 64 genera are treated.Fungal taxa described and illustrated in the present study include a new family,five new genera,61 new species,five new combinations,one synonym,one new variety and 31 records on new hosts or new geographical distributions.Ageratinicolaceae fam.nov.is introduced and accommodated in Pleosporales.The new genera introduced in this study are Ageratinicola,Kevinia,Pseudomultiseptospora(Parabambusicolaceae),Marasmiellomycena,and Vizzinia(Porotheleaceae).Newly described species are Abrothallus altoandinus,Ageratinicola kunmingensis,Allocryptovalsa aceris,Allophoma yuccae,Apiospora cannae,A.elliptica,A.pallidesporae,Boeremia wisteriae,Calycina papaeana,Clypeo-coccum lichenostigmoides,Coniochaeta riskali-shoyakubovii,Cryphonectria kunmingensis,Diaporthe angustiapiculata,D.campylandrae,D.longipapillata,Diatrypella guangdongense,Dothiorella franceschinii,Endocalyx phoenicis,Epicoc-cum terminosporum,Fulvifomes karaiensis,F.pannaensis,Ganoderma ghatensis,Hysterobrevium baoshanense,Inocybe avellaneorosea,I.lucida,Jahnula oblonga,Kevinia lignicola,Kirschsteiniothelia guangdongensis,Laboulbenia caprina,L.clavulata,L.cobiae,L.cosmodisci,L.nilotica,L.omalii,L.robusta,L.similis,L.stigmatophora,Laccaria rubriporus,Lasiodiplodia morindae,Lyophyllum agnijum,Marasmiellomycena pseudoomphaliiformis,Melomastia beihaiensis,Nemania guangdongensis,Nigrograna thailandica,Nigrospora ficuum,Oxydothis chinensis,O.yunnanensis,Petriella thailandica,Phaeoacremonium chinensis,Phialocephala chinensis,Phytophthora debattistii,Polyplosphaeria nigrospora,Pronectria loweniae,Seriascoma acutispora,Setoseptoria bambusae,Stictis anomianthi,Tarzetta tibetensis,Tarzetta urceolata,Tetraploa obpyriformis,Trichoglossum beninense,and Tricoderma pyrrosiae.We provide an emendation for Urnula ailaoshanensis Agaricus duplocingulatoides var.brevisporus introduced as a new variety based on morphology and phylogeny.Indunil C.Senanayake Walter Rossi Marco Leonardi Alex Weir Mark McHugh Kunhiraman C.Rajeshkumar Rajnish K.Verma Samantha C.Karunarathna Saowaluck Tibpromma Nikhil Ashtekar Sreejith K.Ashtamoorthy Sanjay Raveendran Gurmeet Kour Aishwarya Singh Saúl De la Peña-Lastra Antonio Mateos Miroslav Kolařík Vladimír Antonín HanaŠevčíková Fernando Esteve-Raventós Ellen Larsson Fermín Pancorbo Gabriel Moreno Alberto Altés Yolanda Turégano Tian-Ye Du Li Lu Qi-Rui Li Ji-Chuan Kang Sugantha Gunaseelan Kezhocuyi Kezo Malarvizhi Kaliyaperumal Jizhen Fu Milan C.Samarakoon Yusufjon Gafforov Shakhnoza Teshaboeva Pradeep C.Kunjan Arya Chamaparambath Adam Flakus Javier Etayo Pamela Rodriguez-Flakus Mikhail P.Zhurbenko Nimali Ide Silva Danushka S.Tennakoon KPDeepna Latha Patinjareveettil Manimohan KNAnil Raj Mark S.Calabon Abdollah Ahmadpour Zeinab Heidarian Zahra Alavi Fatemeh Alavi Youbert Ghosta Razmig Azizi Mei Luo Min-Ping Zhao Nuwan D.Kularathnage Li Hua Yun-Hui Yang Chun-Fang Liao Hai-Jun Zhao Anis S.Lestari Subashini C.Jayasiri Feng-Ming Yu Lei Lei Jian-Wei Liu Omid Karimi Song-Ming Tang Ya-Ru Sun Yong Wang Ming Zeng Zin H.Htet Benedetto T.Linaldeddu Artur Alves Alan J.L.Phillips Carlo Bregant Lucio Montecchio AndréDe Kesel Vincent P.Hustad Andrew N.Miller Anna G.Fedosova Viktor Kučera Mubashar Raza Muzammil Hussain Yan-Peng Chen Vinodhini Thiyagaraja Deecksha Gomdola Achala R.Rathnayaka Asha J.Dissanayake Nakarin Suwannarach Sinang Hongsanan Sajeewa S.N.Maharachchikumbura Lakmali S.Dissanayake Nalin N.Wijayawardene Rungtiwa Phookamsak Saisamorn Lumyong E.B.Gareth Jones Neelamanie Yapa Dhanushka N.Wanasinghe Ning Xie Mingkwan Doilom Ishara S.Manawasinghe Jian-Kui(Jack)Liu Qi Zhao Biao Xu Kevin D.Hyde Jiage Song 2023Fungal Diversity2023,,5:0
17Global progress in climate change adaptation policies and its implication for China显示文摘This paper reviews the progress in climate change adaptation(CCA) policies both under the United Nations Framework Convention on Climate Change(UNFCCC) and in major regions and countries,including the EU and its major member countries,the influential developed countries in the Asia-Pacific region,the emerging economies and the least developed countries(LDCs).The progress made in China in CCA policies is also reviewed and compared with that in other countries.Finally,good international practices are proposed for China's policy development.It is found that adaptation has been given the same priority as mitigation since the twenty-first century with regard to climate change-related actions.The topics related to adaptation in the international climate change negotiations under the UNFCCC have evolved from mechanisms for finance and technology development and transfer exclusively in the early stages to implementation of practical adaptation programs and actions.Since 2006,major developed and developing countries have frequently set forward specific CCA policies or general climate change policies involving adaptation in the form of laws,frameworks,strategies,and plans.The LDCs have also been working on National Adaptation Programmes of Action and subsequent National Adaptation Plans with the support from the financial mechanisms under the UNFCCC.Therefore,globally,it has become a common practice to develop national or regional policies to plan and guide CCA actions.China has established climate change policies involving adaptation at the national,regional,and sectorial levels since 2007.However,these policies have strong limitations in their knowledge base,strategic positioning,contents,and implementation mechanisms,e.g.lack of a sound knowledge base,an international perspective,clear responsibilities for policy implementation,and appropriate monitoring and evaluation mechanisms.It is recommended that China should further strengthen its technical capabilities in climate change projections as well as impact,vulnerability,and risk assessment,and develop methodologies and techniques for the preparation,impact assessment and implementation of CCA policies.Furthermore,future CCA strategies or plans should be developed with an emphasis on China's vision and strategic position on the world stage.Fu Sun Xiaojia He Paul Rummy Kevin Lauzon 2015Chinese Journal of Population,Resources and Environment2015,13,1:0
18Fungal diversity notes 1151-1276:taxonomic and phylogenetic contributions on genera and species of fungal taxa显示文摘Fungal diversity notes is one of the important journal series of fungal taxonomy that provide detailed descriptions and illustrations of new fungal taxa,as well as providing new information of fungal taxa worldwide.This article is the 11th contribution to the fungal diversity notes series,in which 126 taxa distributed in two phyla,six classes,24 orders and 55 families are described and illustrated.Taxa in this study were mainly collected from Italy by Erio Camporesi and also collected from China,India and Thailand,as well as in some other European,North American and South American countries.Taxa described in the present study include two new families,12 new genera,82 new species,five new combinations and 25 new records on new hosts and new geographical distributions as well as sexual-asexual reports.The two new families are Eriomycetaceae(Dothideomycetes,family incertae sedis)and Fasciatisporaceae(Xylariales,Sordariomycetes).The twelve new genera comprise Bhagirathimyces(Phaeosphaeriaceae),Camporesiomyces(Tubeufiaceae),Eriocamporesia(Cryphonectriaceae),Eriomyces(Eriomycetaceae),Neomonodictys(Pleurotheciaceae),Paraloratospora(Phaeosphaeriaceae),Paramonodictys(Parabambusicolaceae),Pseudoconlarium(Diaporthomycetidae,genus incertae sedis),Pseudomurilentithecium(Lentitheciaceae),Setoapiospora(Muyocopronaceae),Srinivasanomyces(Vibrisseaceae)and Xenoanthostomella(Xylariales,genera incertae sedis).The 82 new species comprise Acremonium chiangraiense,Adustochaete nivea,Angustimassarina camporesii,Bhagirathimyces himalayensis,Brunneoclavispora camporesii,Camarosporidiella camporesii,Camporesiomyces mali,Camposporium appendiculatum,Camposporium multiseptatum,Camposporium septatum,Canalisporium aquaticium,Clonostachys eriocamporesiana,Clonostachys eriocamporesii,Colletotrichum hederiicola,Coniochaeta vineae,Conioscypha verrucosa,Cortinarius ainsworthii,Cortinarius aurae,Cortinarius britannicus,Cortinarius heatherae,Cortinarius scoticus,Cortinarius subsaniosus,Cytospora fusispora,Cytospora rosigena,Diaporthe camporesii,Diaporthe nigra,Diatrypella yunnanensis,Dictyosporium muriformis,Didymella camporesii,Diutina bernali,Diutina sipiczkii,Eriocamporesia aurantia,Eriomyces heveae,Ernakulamia tanakae,Falciformispora uttaraditensis,Fasciatispora cocoes,Foliophoma camporesii,Fuscostagonospora camporesii,Helvella subtinta,Kalmusia erioi,Keissleriella camporesiana,Keissleriella camporesii,Lanspora cylindrospora,Loratospora arezzoensis,Mariannaea atlantica,Melanographium phoenicis,Montagnula camporesii,Neodidymelliopsis camporesii,Neokalmusia kunmingensis,Neoleptosporella camporesiana,Neomonodictys muriformis,Neomyrmecridium guizhouense,Neosetophoma camporesii,Paraloratospora camporesii,Paramonodictys solitarius,Periconia palmicola,Plenodomus triseptatus,Pseudocamarosporium camporesii,Pseudocercospora maetaengensis,Pseudochaetosphaeronema kunmingense,Pseudoconlarium punctiforme,Pseudodactylaria camporesiana,Pseudomurilentithecium camporesii,Pseudotetraploa rajmachiensis,Pseudotruncatella camporesii,Rhexocercosporidium senecionis,Rhytidhysteron camporesii,Rhytidhysteron erioi,Septoriella camporesii,Setoapiospora thailandica,Srinivasanomyces kangrensis,Tetraploa dwibahubeeja,Tetraploa pseudoaristata,Tetraploa thrayabahubeeja,Torula camporesii,Tremateia camporesii,Tremateia lamiacearum,Uzbekistanica pruni,Verruconis mangrovei,Wilcoxina verruculosa,Xenoanthostomella chromolaenae and Xenodidymella camporesii.The five new combinations are Camporesiomyces patagoniensis,Camporesiomyces vaccinia,Camposporium lycopodiellae,Paraloratospora gahniae and Rhexocercosporidium microsporum.The 22 new records on host and geographical distribution comprise Arthrinium marii,Ascochyta medicaginicola,Ascochyta pisi,Astrocystis bambusicola,Camposporium pellucidum,Dendryphiella phitsanulokensis,Diaporthe foeniculina,Didymella macrostoma,Diplodia mutila,Diplodia seriata,Heterosphaeria patella,Hysterobrevium constrictum,Neodidymelliopsis ranunculi,Neovaginatispora fuckelii,Nothophoma quercina,Occultibambusa bambusae,Phaeosphaeria chinensis,Pseudopestalotiopsis theae,Pyxine berteriana,Tetraploa sasicola,Torula gaodangensis and Wojnowiciella dactylidis.In addition,the sexual morphs of Dissoconium eucalypti and Phaeosphaeriopsis pseudoagavacearum are reported from Laurus nobilis and Yucca gloriosa in Italy,respectively.The holomorph of Diaporthe cynaroidis is also reported for the first time.Kevin DHyde Yang Dong Rungtiwa Phookamsak Rajesh Jeewon DJayarama Bhat EBGareth Jones Ning‑Guo Liu Pranami DAbeywickrama Ausana Mapook Deping Wei Rekhani HPerera Ishara SManawasinghe Dhandevi Pem Digvijayini Bundhun Anuruddha Karunarathna Anusha HEkanayaka Dan‑Feng Bao Junfu Li Milan CSamarakoon Napalai Chaiwan Chuan‑Gen Lin Kunthida Phutthacharoen Sheng‑Nan Zhang Indunil CSenanayake Ishani DGoonasekara Kasun MThambugala Chayanard Phukhamsakda Danushka STennakoon Hong‑Bo Jiang Jing Yang Ming Zeng Naruemon Huanraluek Jian‑Kui(Jack)Liu Subodini NWijesinghe Qing Tian Saowaluck Tibpromma Rashika SBrahmanage Saranyaphat Boonmee Shi‑Ke Huang Vinodhini Thiyagaraja Yong‑Zhong Lu Ruvishika SJayawardena Wei Dong Er‑Fu Yang Sanjay KSingh Shiv Mohan Singh Shiwali Rana Sneha SLad Garima Anand Bandarupalli Devadatha MNiranjan VVenkateswara Sarma Kare Liimatainen 馻‑ Tuula Niskanen Andy Overall Renato Lúcio Mendes Alvarenga Tatiana Baptista Gibertoni Walter PPfliegler EnikőHorváth Alexandra Imre Amanda Lucia Alves Ana Carla da Silva Santos Patricia Vieira Tiago Timur SBulgakov Dhanushaka NWanasinghe Ali HBahkali Mingkwan Doilom Abdallah MElgorban Sajeewa SNMaharachchikumbura Kunhiraman CRajeshkumar Danny Haelewaters Peter EMortimer Qi Zhao Saisamorn Lumyong Jianchu Xu Jun Sheng 2020Fungal Diversity2020,,1:0
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