Draft genome sequence of Phyllosticta ampelicida, the cause of grapevine black rot
Phyllosticta ampelicida causes grapevine black rot, a potentially damaging disease for grape production. This paper reports the draft genome sequence of P. ampelicida PA1 Galicia CBS 148563, which is 30.55 Mb and encodes 10,691 predicted protein-coding genes. This is the first sequence genome assembly of P. ampelicida, and this information is a valuable resource to support genomic attributes for determining pathogenic behaviour and comparative genomic analyses of grapevine black rot fungi.
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Firenze University Press
2022-07-19
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Subjects: | Grapevine Disease, Microbe-plant interaction, Vitis vinifera L., |
Online Access: | http://hdl.handle.net/10261/287724 |
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dig-icvv-es-10261-2877242023-01-27T11:00:03Z Draft genome sequence of Phyllosticta ampelicida, the cause of grapevine black rot Eichmeier, Ales Díaz-Losada, Emilia Hakalova, Eliska Pečenka, Jakub Stuskova, Katerina Ojeda, Sonia Gramaje, David Ministry of Education, Youth and Sports (Czech Republic) Grapevine Disease Microbe-plant interaction Vitis vinifera L. Phyllosticta ampelicida causes grapevine black rot, a potentially damaging disease for grape production. This paper reports the draft genome sequence of P. ampelicida PA1 Galicia CBS 148563, which is 30.55 Mb and encodes 10,691 predicted protein-coding genes. This is the first sequence genome assembly of P. ampelicida, and this information is a valuable resource to support genomic attributes for determining pathogenic behaviour and comparative genomic analyses of grapevine black rot fungi. Ministerstvo Školství, Mládeže a Tělovýchovy Grant numbers CZ.02.2.69/0.0/0.0/19_073/0016670 2023-01-27T11:00:02Z 2023-01-27T11:00:02Z 2022-07-19 2023-01-27T11:00:03Z artículo doi: 10.36253/phyto-13516 e-issn: 1593-2095 issn: 0031-9465 Phytopathologia Mediterranea 61(2): 279-282 (2022) http://hdl.handle.net/10261/287724 10.36253/phyto-13516 Publisher's version http://dx.doi.org/10.36253/phyto-13516 Sí open Firenze University Press |
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Grapevine Disease Microbe-plant interaction Vitis vinifera L. Grapevine Disease Microbe-plant interaction Vitis vinifera L. |
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Grapevine Disease Microbe-plant interaction Vitis vinifera L. Grapevine Disease Microbe-plant interaction Vitis vinifera L. Eichmeier, Ales Díaz-Losada, Emilia Hakalova, Eliska Pečenka, Jakub Stuskova, Katerina Ojeda, Sonia Gramaje, David Draft genome sequence of Phyllosticta ampelicida, the cause of grapevine black rot |
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Phyllosticta ampelicida causes grapevine black rot, a potentially damaging disease for grape production. This paper reports the draft genome sequence of P. ampelicida PA1 Galicia CBS 148563, which is 30.55 Mb and encodes 10,691 predicted protein-coding genes. This is the first sequence genome assembly of P. ampelicida, and this information is a valuable resource to support genomic attributes for determining pathogenic behaviour and comparative genomic analyses of grapevine black rot fungi. |
author2 |
Ministry of Education, Youth and Sports (Czech Republic) |
author_facet |
Ministry of Education, Youth and Sports (Czech Republic) Eichmeier, Ales Díaz-Losada, Emilia Hakalova, Eliska Pečenka, Jakub Stuskova, Katerina Ojeda, Sonia Gramaje, David |
format |
artículo |
topic_facet |
Grapevine Disease Microbe-plant interaction Vitis vinifera L. |
author |
Eichmeier, Ales Díaz-Losada, Emilia Hakalova, Eliska Pečenka, Jakub Stuskova, Katerina Ojeda, Sonia Gramaje, David |
author_sort |
Eichmeier, Ales |
title |
Draft genome sequence of Phyllosticta ampelicida, the cause of grapevine black rot |
title_short |
Draft genome sequence of Phyllosticta ampelicida, the cause of grapevine black rot |
title_full |
Draft genome sequence of Phyllosticta ampelicida, the cause of grapevine black rot |
title_fullStr |
Draft genome sequence of Phyllosticta ampelicida, the cause of grapevine black rot |
title_full_unstemmed |
Draft genome sequence of Phyllosticta ampelicida, the cause of grapevine black rot |
title_sort |
draft genome sequence of phyllosticta ampelicida, the cause of grapevine black rot |
publisher |
Firenze University Press |
publishDate |
2022-07-19 |
url |
http://hdl.handle.net/10261/287724 |
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