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Broader Terms:
   Coleosporiaceae 
   Dermateaceae 
   Dothioraceae 
   Elsinoaceae 
   Entylomataceae 
   Glomosporiaceae 
   Gnomoniaceae 
   Hemiphacidiaceae 
   Hyponectriaceae 
   Melanconidaceae 
   Mycosphaerellaceae 
   Phyllachoraceae 
   Sclerotiniaceae 
   Trichocomaceae 
   Valsaceae 

More Specific:
   Gloeosporium acaciae 
   Gloeosporium acanthophylli 
   Gloeosporium acericola 
   Gloeosporium acerinum 
   Gloeosporium acerinum acerinum 
   Gloeosporium acerinum samaricola 
   Gloeosporium aceris 
   Gloeosporium aceris-tataricae 
   Gloeosporium aceris-tatarici 
   Gloeosporium achaeniicola 
   Gloeosporium achatocarpi 
   Gloeosporium acutiloba 
   Gloeosporium adenocalymmae 
   Gloeosporium adenocalymmatis 
   Gloeosporium adonidis 
   Gloeosporium aecidiicola 
   Gloeosporium aecidiophilum 
   Gloeosporium aecidiophylum 
   Gloeosporium affine 
   Gloeosporium agatinum 
   Gloeosporium agaves 
   Gloeosporium aglaonemae 
   Gloeosporium aglaonematis 
   Gloeosporium ailanthi 
   Gloeosporium albi-macula 
   Gloeosporium albiziae 
   Gloeosporium albizziae 
   Gloeosporium alboferrugineum 
   Gloeosporium albomacula 
   Gloeosporium alborubrum 
   Gloeosporium album 
   Gloeosporium alchorneae 
   Gloeosporium aletridis 
   Gloeosporium aleuriticum 
   Gloeosporium allantoideum 
   Gloeosporium allantosporum 
   Gloeosporium allescheri 
   Gloeosporium allescherianum 
   Gloeosporium alneum 
   Gloeosporium alni 
   Gloeosporium alnicola 
   Gloeosporium alphitoniae 
   Gloeosporium alpinum 
   Gloeosporium alstoniae 
   Gloeosporium alutaceum 
   Gloeosporium alvarezi 
   Gloeosporium alvarezii 
   Gloeosporium amaranti 
   Gloeosporium amentorum 
   Gloeosporium americanum 
   Gloeosporium amoenum 
   Gloeosporium ampelophagum 
   Gloeosporium ampelopsidis 
   Gloeosporium amygdalinum 
   Gloeosporium anceps 
   Gloeosporium andurnense 
   Gloeosporium angelicae 
   Gloeosporium angophorae 
   Gloeosporium angulatum 
   Gloeosporium annonae 
   Gloeosporium anonae 
   Gloeosporium antherarum 
   Gloeosporium anthocephali 
   Gloeosporium anthurii 
   Gloeosporium anthuriophilum 
   Gloeosporium apiosporium 
   Gloeosporium apiosporum 
   Gloeosporium apocryptum 
   Gloeosporium apocryptum apocryptum 
   Gloeosporium apocryptum ramicola 
   Gloeosporium aquifolii 
   Gloeosporium aquilegiae 
   Gloeosporium aracearum 
   Gloeosporium araliae 
   Gloeosporium araucariae 
... 
 
Latest Articles on Gloeosporium from uBioRSS
Breeding of disease-resistant seedless grapes using Chinese wild Vitis spp.... - ScienceDirect Search: species


External Resources:



1.  Natural phenolic derivatives based on piperine scaffold as potential antifungal agents.LinkIT
Wang J, Wang W, Xiong H, Song D, Cao X
BMC chemistry, 2020
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

2.  Discovery of ?-lactam derivatives containing 1,3-benzodioxole unit as potential anti-phytopathogenic fungus agents.LinkIT
Song D, Cao X, Wang J, Ke S
Bioorganic & medicinal chemistry letters, 2020
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

3.  Amino acid-oriented poly-substituted heterocyclic tetramic acid derivatives as potential antifungal agents.LinkIT
Wang S, Bao L, Song D, Wang J, Cao X, Ke S
European journal of medicinal chemistry, 2019
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

4.  Synthesis, crystal structure and antimicrobial activity of 2-((2-(4-(1H-1,2,4-triazol-1-yl)phenyl)quinazolin-4-yl)oxy)-N-phenylacetamide derivatives against phytopathogens.LinkIT
Fan Z, Shi J, Luo N, Bao X
Molecular diversity, 2019
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

5.  The Colletotrichum dracaenophilum, C. magnum and C. orchidearum species complexes.LinkIT
Damm U, Sato T, Alizadeh A, Groenewald JZ, Crous PW
Studies in mycology, 2019
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

6.  Heterocyclic pyrrolizinone and indolizinones derived from natural lactam as potential antifungal agents.LinkIT
Wang S, Bao L, Wang W, Song D, Wang J, Cao X
Fitoterapia, 2018
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

7.  Cyclization Reaction of Acyl Thiourea Chitosan: Enhanced Antifungal Properties via Structural Optimization.LinkIT
Qin Y, Liu W, Xing R, Liu S, Li K, Li P
Molecules (Basel, Switzerland), 2018
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

8.  Design, synthesis and fungicidal evaluation of novel pyraclostrobin analogues.LinkIT
Wang L, Zhao S, Kong X, Cao L, Tian S, Ye Y, Qiao C
Bioorganic & medicinal chemistry, 2018
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

9.  The potential of compounds isolated from Xylaria spp. as antifungal agents against anthracnose.LinkIT
Elias LM, Fortkamp D, Sartori SB, Ferreira MC, Gomes LH, Azevedo JL, Montoya QV, Rodrigues A, Ferreira AG, Lira SP
Brazilian journal of microbiology : [publication of the Brazilian Society for Microbiology], 2018
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

10.  Overlooked competing asexual and sexually typified generic names of Ascomycota with recommendations for their use or protection.LinkIT
Rossman AY, Allen WC, Braun U, Castlebury LA, Chaverri P, Crous PW, Hawksworth DL, Hyde KD, Johnston P, Lombard L, Romberg M, Samson RA, Seifert KA, Stone JK, Udayanga D, White JF
IMA fungus, 2016
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0



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