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Morphological Traits Evaluated with Random Forest Method Explains Natural Classification of Grapevine (Vitis vinifera L.) Cultivars.
Szűgyi-Reiczigel Z, Ladányi M, Bisztray GD, Varga Z, Bodor-Pesti P. Szűgyi-Reiczigel Z, et al. Plants (Basel). 2022 Dec 8;11(24):3428. doi: 10.3390/plants11243428. Plants (Basel). 2022. PMID: 36559539 Free PMC article.
There are hundreds of morphologic and morphometric traits available to classify and identify grapevine (Vitis vinifera L.) genotypes, while statistical evaluation of those has certain limitations, especially when we have no information about the traits that are discriminat …
There are hundreds of morphologic and morphometric traits available to classify and identify grapevine (Vitis vinifera L.) genotypes, …
Pest categorisation of Eulecanium giganteum.
EFSA Panel on Plant Health (PLH); Bragard C, Baptista P, Chatzivassiliou E, Di Serio F, Gonthier P, Jaques Miret JA, Justesen AF, Magnusson CS, Milonas P, Navas-Cortes JA, Parnell S, Potting R, Reignault PL, Stefani E, Thulke HH, Van der Werf W, Vicent Civera A, Yuen J, Zappalà L, Grégoire JC, Malumphy C, Akrivou A, Kertesz V, Papachristos D, Sfyra O, MacLeod A. EFSA Panel on Plant Health (PLH), et al. EFSA J. 2024 Apr 3;22(4):e8666. doi: 10.2903/j.efsa.2024.8666. eCollection 2024 Apr. EFSA J. 2024. PMID: 38576539 Free PMC article.
Host plant species commonly found in the EU include apricot (Prunus armeniaca), elm (Ulmus spp.), grapevine (Vitis vinifera), maple (Acer spp.), oak (Quercus spp.), oriental plane (Platanus orientalis), pomegranate (Punica granatum), quince (Cydonia oblonga), silkwo …
Host plant species commonly found in the EU include apricot (Prunus armeniaca), elm (Ulmus spp.), grapevine (Vitis vinifera), maple ( …
Fungal Planet description sheets: 1112-1181.
Crous PW, Cowan DA, Maggs-Kölling G, Yilmaz N, Larsson E, Angelini C, Brandrud TE, Dearnaley JDW, Dima B, Dovana F, Fechner N, García D, Gené J, Halling RE, Houbraken J, Leonard P, Luangsa-Ard JJ, Noisripoom W, Rea-Ireland AE, Ševčíková H, Smyth CW, Vizzini A, Adam JD, Adams GC, Alexandrova AV, Alizadeh A, Duarte EÁ, Andjic V, Antonín V, Arenas F, Assabgui R, Ballarà J, Banwell A, Berraf-Tebbal A, Bhatt VK, Bonito G, Botha W, Burgess TI, Caboň M, Calvert J, Carvalhais LC, Courtecuisse R, Cullington P, Davoodian N, Decock CA, Dimitrov R, Di Piazza S, Drenth A, Dumez S, Eichmeier A, Etayo J, Fernández I, Fiard JP, Fournier J, Fuentes-Aponte S, Ghanbary MAT, Ghorbani G, Giraldo A, Glushakova AM, Gouliamova DE, Guarro J, Halleen F, Hampe F, Hernández-Restrepo M, Iturrieta-González I, Jeppson M, Kachalkin AV, Karimi O, Khalid AN, Khonsanit A, Kim JI, Kim K, Kiran M, Krisai-Greilhuber I, Kučera V, Kušan I, Langenhoven SD, Lebel T, Lebeuf R, Liimatainen K, Linde C, Lindner DL, Lombard L, Mahamedi AE, Matočec N, Maxwell A, May TW, McTaggart AR, Meijer M, Mešić A, Mileto AJ, Miller AN, Molia A, Mongkolsamrit S, Cortés CM, Muñoz-Mohedano J, Morte A, Morozova OV, Mostert L, Mostowfizadeh-Gha… See abstract for full author list ➔ Crous PW, et al. Persoonia. 2020 Dec;45:251-409. doi: 10.3767/persoonia.2020.45.10. Epub 2020 Dec 19. Persoonia. 2020. PMID: 34456379 Free PMC article.
., Xenomonodictys iranica (incl. Xenomonodictys gen. nov.) on wood of Fagus orientalis. Italy, Penicillium vallebormidaense from compost. Namibia, Alternaria mirabibensis on plant litter, Curvularia moringae and Moringomyces phantasmae (incl. ...Hantamomyces gen. nov.) on …
., Xenomonodictys iranica (incl. Xenomonodictys gen. nov.) on wood of Fagus orientalis. Italy, Penicillium vallebormidaense from comp …
Fungal Planet description sheets: 1182-1283.
Crous PW, Cowan DA, Maggs-Kölling G, Yilmaz N, Thangavel R, Wingfield MJ, Noordeloos ME, Dima B, Brandrud TE, Jansen GM, Morozova OV, Vila J, Shivas RG, Tan YP, Bishop-Hurley S, Lacey E, Marney TS, Larsson E, Le Floch G, Lombard L, Nodet P, Hubka V, Alvarado P, Berraf-Tebbal A, Reyes JD, Delgado G, Eichmeier A, Jordal JB, Kachalkin AV, Kubátová A, Maciá-Vicente JG, Malysheva EF, Papp V, Rajeshkumar KC, Sharma A, Spetik M, Szabóová D, Tomashevskaya MA, Abad JA, Abad ZG, Alexandrova AV, Anand G, Arenas F, Ashtekar N, Balashov S, Bañares Á, Baroncelli R, Bera I, Biketova AY, Blomquist CL, Boekhout T, Boertmann D, Bulyonkova TM, Burgess TI, Carnegie AJ, Cobo-Diaz JF, Corriol G, Cunnington JH, da Cruz MO, Damm U, Davoodian N, de A Santiago ALCM, Dearnaley J, de Freitas LWS, Dhileepan K, Dimitrov R, Di Piazza S, Fatima S, Fuljer F, Galera H, Ghosh A, Giraldo A, Glushakova AM, Gorczak M, Gouliamova DE, Gramaje D, Groenewald M, Gunsch CK, Gutiérrez A, Holdom D, Houbraken J, Ismailov AB, Istel Ł, Iturriaga T, Jeppson M, Jurjević Ž, Kalinina LB, Kapitonov VI, Kautmanová I, Khalid AN, Kiran M, Kiss L, Kovács Á, Kurose D, Kušan I, Lad S, Læssøe T, Lee HB, Luangsa-Ard JJ, Lynch M, Mahamedi AE,… See abstract for full author list ➔ Crous PW, et al. Persoonia. 2021 Jun;46:313-528. doi: 10.3767/persoonia.2021.46.11. Epub 2021 Jul 13. Persoonia. 2021. PMID: 35935893 Free PMC article.
Novel species of fungi described in this study include those from various countries as follows: Algeria, Phaeoacremonium adelophialidum from Vitis vinifera. Antarctica, Comoclathris antarctica from soil. Australia, Coniochaeta salicifolia as endophyte from healthy leaves o …
Novel species of fungi described in this study include those from various countries as follows: Algeria, Phaeoacremonium adelophialidum from …
First Report of Fruit Rot of Grapes (Vitis vinifera) Caused by Cladosporium cladosporioides in Xinjiang, China.
Liu Z, Jiao RL, Chen SY, Ren Y, Zhang L, Zhang D, Chen JY, Guoying L. Liu Z, et al. Plant Dis. 2021 Jul 28. doi: 10.1094/PDIS-01-21-0080-PDN. Online ahead of print. Plant Dis. 2021. PMID: 34319766 Free article.
Xinjiang Province accounts for nearly 20% of the total grape (Vitis Vinifera L.), proles orientalis) (wine, table and raisin combined) production, being the largest production area in China. ...
Xinjiang Province accounts for nearly 20% of the total grape (Vitis Vinifera L.), proles orientalis) (wine, table and raisin c …
Co-fermentation of grape must by Issatchenkia orientalis and Saccharomyces cerevisiae reduces the malic acid content in wine.
Kim DH, Hong YA, Park HD. Kim DH, et al. Biotechnol Lett. 2008 Sep;30(9):1633-8. doi: 10.1007/s10529-008-9726-1. Epub 2008 Apr 15. Biotechnol Lett. 2008. PMID: 18414791
Grape must was fermented by a mixed culture of Saccharomyces cerevisiae W-3 (a wine yeast) and Issatchenkia orientalis KMBL 5774 (a malic acid-degrading yeast). Co-fermentation with 1:1 (v/v) inoculum ratio of W-3 and KMBL 5774 decreased malic acid to 0.33 mg/ml from 1.1 m …
Grape must was fermented by a mixed culture of Saccharomyces cerevisiae W-3 (a wine yeast) and Issatchenkia orientalis KMBL 5774 (a m …
Degradation of malic acid by Issatchenkia orientalis KMBL 5774, an acidophilic yeast strain isolated from Korean grape wine pomace.
Seo SH, Rhee CH, Park HD. Seo SH, et al. J Microbiol. 2007 Dec;45(6):521-7. J Microbiol. 2007. PMID: 18176535 Free article.
Among them, the strain designated as KMBL 5774 showed the highest malic acid degrading ability. It was identified as Issatchenkia orientalis based on its morphological and physiological characteristics as well as the nucleotide sequences of the internal transcribed spacer …
Among them, the strain designated as KMBL 5774 showed the highest malic acid degrading ability. It was identified as Issatchenkia orienta
Improving the chemical and sensory characteristics of red and white wines with pectinase-producing non-Saccharomyces yeasts.
Paup VD, Barton TL, Edwards CG, Lange I, Lange BM, Lee J, Ross CF. Paup VD, et al. J Food Sci. 2022 Dec;87(12):5402-5417. doi: 10.1111/1750-3841.16371. Epub 2022 Nov 10. J Food Sci. 2022. PMID: 36357987
Merlot and Chardonnay wines were produced with or without a mixture of pectinase-producing non-Saccharomyces yeasts (Cryptococcus adeliensis, Issatchenkia orientalis, and Pichia kluyveri) added to the must prior to alcoholic fermentation conducted by a commercial strain of …
Merlot and Chardonnay wines were produced with or without a mixture of pectinase-producing non-Saccharomyces yeasts (Cryptococcus adeliensis …
Collection and characterization of grapevine genetic resources (Vitis vinifera) in the Holy Land, towards the renewal of ancient winemaking practices.
Drori E, Rahimi O, Marrano A, Henig Y, Brauner H, Salmon-Divon M, Netzer Y, Prazzoli ML, Stanevsky M, Failla O, Weiss E, Grando MS. Drori E, et al. Sci Rep. 2017 Mar 17;7:44463. doi: 10.1038/srep44463. Sci Rep. 2017. PMID: 28303928 Free PMC article.
The ampelographic analysis shows clear differences between Sativa and Sylvestris groups in flower, leaf and cluster parameters, and that most Sativa belong to proles orientalis. Genetic population analysis was conducted by analyzing 22 common SSR markers, determining first …
The ampelographic analysis shows clear differences between Sativa and Sylvestris groups in flower, leaf and cluster parameters, and that mos …
Molecular identification and genetic relationships of Palestinian grapevine cultivars.
Basheer-Salimia R, Lorenzi S, Batarseh F, Moreno-Sanz P, Emanuelli F, Grando MS. Basheer-Salimia R, et al. Mol Biotechnol. 2014 Jun;56(6):546-56. doi: 10.1007/s12033-013-9728-7. Mol Biotechnol. 2014. PMID: 24469973
Genetic relationships inferred from SSR markers clearly assigned Palestinian cultivars to the Proles orientalis subpr. Antasiatica ancestral population, and they even remarked the connection between local resources and cultivars generated from international table grape bre …
Genetic relationships inferred from SSR markers clearly assigned Palestinian cultivars to the Proles orientalis subpr. Antasiatica an …
21 results