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Synonyms:
   Botrytis 

Broader Terms:
   Botryobasidiaceae 
   Botrytis 
   Capnodiaceae 
   Chaetosphaerellaceae 
   Clavicipitaceae 
   Erysiphaceae 
   Hypocreaceae 
   Mucoraceae 
   Mycosphaerellaceae 
   Peronosporaceae (downy mildews) 
   Pezizaceae 
   Pythiaceae 
   Sclerotiniaceae 
   Thelephoraceae 
   Unassigned 
   Xylariaceae 
   mitosporic 

More Specific:
   Botrytis 
   Botrytis acinorum 
   Botrytis aclada 
   Botrytis acmospora 
   Botrytis acridiorum 
   Botrytis aeruginosa 
   Botrytis affinis 
   Botrytis africana 
   Botrytis agaricina 
   Botrytis alba 
   Botrytis albidocaesia 
   Botrytis allii 
   Botrytis allii-fistulosi 
   Botrytis allochroa 
   Botrytis ampelophila 
   Botrytis anacardii 
   Botrytis angularia 
   Botrytis anthophila 
   Botrytis arborecens 
   Botrytis arborescens 
   Botrytis arenariae 
   Botrytis argillacea 
   Botrytis argillacea argillacea 
   Botrytis argillacea avicenniae 
   Botrytis arisaemae 
   Botrytis artocarpi 
   Botrytis asperula 
   Botrytis atrata 
   Botrytis atrofumosa 
   Botrytis atroviridis 
   Botrytis aurantiaca 
   Botrytis bassiana 
   Botrytis bassiana bassiana 
   Botrytis bassiana lunzinensis 
   Botrytis bassiana tenella 
   Botrytis bassinana tenella 
   Botrytis bicolor 
   Botrytis bifurcata 
   Botrytis bonordenii 
   Botrytis brevior 
   Botrytis brongniartii 
   Botrytis brongniartii brongniartii 
   Botrytis brongniartii delacroixii 
   Botrytis brunneola 
   Botrytis bryi 
   Botrytis bryophila 
   Botrytis byssoidea 
   Botrytis caerulescens 
   Botrytis calthae 
   Botrytis campsotricha 
   Botrytis campsotricha campsotricha 
   Botrytis campsotricha fennica 
   Botrytis camptopoda 
   Botrytis cana 
   Botrytis candidula 
   Botrytis canescens 
   Botrytis capitata 
   Botrytis capsularum 
   Botrytis carnea 
   Botrytis carnea carnea 
   Botrytis carnea quercina 
   Botrytis carthami 
   Botrytis ceratioides 
   Botrytis cercosporaecola 
   Botrytis cercosporicola 
   Botrytis cinerea 
   Botrytis cinerea cinerea 
   Botrytis cinerea coffeae 
   Botrytis cinerea convallariae 
   Botrytis cinerea dianthi 
   Botrytis cinerea douglasii 
   Botrytis cinerea erythronii 
   Botrytis cinerea gentianae-asclepiadeae 
   Botrytis cinerea lini 
   Botrytis cinerea narcissicola 
... 
 
Latest Articles on Botrytis from uBioRSS
Identification of glycoproteins secreted by wild-type Botrytis cinerea and ... - BioMed Central
The grapevine flagellin receptor VvFLS2 differentially recognizes flagellin... - PubMed: species


Botrytis cinerea
ForestryImages.org

External Resources:



1.  Sodium pheophorbide a controls cherry tomato gray mold (Botrytis cinerea) by destroying fungal cell structure and enhancing disease resistance-related enzyme activities in fruit.LinkIT
Ji JY, Yang J, Zhang BW, Wang SR, Zhang GC, Lin LN
Pesticide biochemistry and physiology, 2020
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

2.  Genome mining of the citrus pathogen Elsinoë fawcettii; prediction and prioritisation of candidate effectors, cell wall degrading enzymes and secondary metabolite gene clusters.LinkIT
Jeffress S, Arun-Chinnappa K, Stodart B, Vaghefi N, Tan YP, Ash G
PloS one, 2020
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

3.  Diverse Secondary Metabolites from a Lichen-Derived Amycolatopsis Strain.LinkIT
Liu C, Jiang Y, Huang R, Jiang B, Zheng K, Wu S
Current microbiology, 2020
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

4.  The Endophytic Bacteria Bacillus velezensis Lle-9, Isolated from Lilium leucanthum, Harbors Antifungal Activity and Plant Growth-Promoting Effects.LinkIT
Khan MS, Gao J, Chen X, Zhang M, Yang F, Du Y, Moe TS, Munir I, Xue J, Zhang X
Journal of microbiology and biotechnology, 2020
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

5.  Yield and Quality Characteristics of Brassica Microgreens as Affected by the NH4:NO3 Molar Ratio and Strength of the Nutrient Solution.LinkIT
Palmitessa OD, Renna M, Crupi P, Lovece A, Corbo F, Santamaria P
Foods (Basel, Switzerland), 2020
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

6.  Co-regulation of indole glucosinolates and camalexin biosynthesis by CPK5/CPK6 and MPK3/MPK6 signaling pathways.LinkIT
Yang L, Zhang Y, Guan R, Li S, Xu X, Zhang S, Xu J
Journal of integrative plant biology, 2020
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

7.  Biological investigations of essential oils extracted from three Juniperus species and evaluation of their antimicrobial, antioxidant and cytotoxic activities.LinkIT
Elshafie HS, Caputo L, De Martino L, Gru?ová D, Zheljazkov VD, De Feo V, Camele I
Journal of applied microbiology, 2020
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

8.  Molecular cloning and functional characterisation of the tomato E3 ubiquitin ligase SlBAH1 gene.LinkIT
Zhou SM, Wang SH, Lin C, Song YZ, Zheng XX, Song FM, Zhu CX
Functional plant biology : FPB, 2016
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

9.  Comparison of full-length and conserved segments of wheat dehydrin DHN-5 overexpressed in Arabidopsis thaliana showed different responses to abiotic and biotic stress.LinkIT
Drira M, Hanin M, Masmoudi K, Brini F
Functional plant biology : FPB, 2016
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

10.  Plasmalemma localisation of DOUBLE HYBRID PROLINE-RICH PROTEIN 1 and its function in systemic acquired resistance of Arabidopsis thaliana.LinkIT
Li BC, Zhang C, Chai QX, Han YY, Wang XY, Liu MX, Feng H, Xu ZQ
Functional plant biology : FPB, 2014
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0



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