@ARTICLE{TreeBASE2Ref28414,
author = {Ayaka Minoshima and Donald M Walker and Shuhei Takemoto and Tsuyoshi Hosoya and Allison K Walker and Seiju Ishikawa and Yuuri Hirooka},
title = {Pathogenicity and taxonomy of Tenuignomonia styracis gen. et sp. nov, a new monotypic genus of Gnomoniaceae on Styrax obassia in Japan.},
year = {2018},
keywords = {Diaporthales, New species, Phylogeny, Plant disease, Styracaceae},
doi = {},
url = {http://},
pmid = {},
journal = {Mycoscience},
volume = {},
number = {},
pages = {},
abstract = {Since 2010, an unknown fungus in the Gnomoniaceae has been found on overwintered leaves and petioles of Styrax obassia (Styracaceae) in Japan. This fungus is characterized by dark brown immersed or partially erumpent ascomata with long necks and fusiform to obovoid asci each with an acute or long tapering stipe. Each ascus bears eight fusiform to filiform ascospores. Phylogenetic analyses based on the markers LSU, rpb2, and tef-1α indicated that this is a new monotypic genus in the Gnomoniaceae (Diaporthales). We thus propose Tenuignomonia styracis gen. et sp. nov. Members of the Gnomoniaceae are commonly isolated as endophytes, saprobes, and plant pathogens from a broad diversity of herbaceous, shade tree, and agriculturally significant plants. We thus carried out a pathogenicity test to determine if T. styracis is the causative agent of leaf blotch on S. obassia. One week after inoculation, this fungus produced small necrotic spots on the leaves and petioles, and all leaves having necrotic spots were abscised in a short time. We thus confirmed that this fungus has weak pathogenicity on S. obassia. This new species may promote early defoliation of S. obassia during the fall.}
}
Matrices for Study 22653

Citation title:
"Pathogenicity and taxonomy of Tenuignomonia styracis gen. et sp. nov, a new monotypic genus of Gnomoniaceae on Styrax obassia in Japan.".

Study name:
"Pathogenicity and taxonomy of Tenuignomonia styracis gen. et sp. nov, a new monotypic genus of Gnomoniaceae on Styrax obassia in Japan.".

This study is part of submission 22653
(Status: Published).
Matrices
| ID |
Matrix Title |
Description |
Data type |
NTAX |
NCHAR |
Taxa |
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M32436
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Folate metabolism-related genes in maize 10-FDF |
|
Amino Acid |
8 |
351 |
View Taxa
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M32435
|
Folate metabolism-related genes in maize 5-FCL |
|
Amino Acid |
18 |
374 |
View Taxa
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M32437
|
Folate metabolism-related genes in maize ADCL |
|
Amino Acid |
18 |
768 |
View Taxa
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M32438
|
Folate metabolism-related genes in maize ADCS |
|
Amino Acid |
8 |
921 |
View Taxa
|
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M32439
|
Folate metabolism-related genes in maize DHC |
|
Amino Acid |
23 |
408 |
View Taxa
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M32440
|
Folate metabolism-related genes in maize DHFR |
|
Amino Acid |
12 |
567 |
View Taxa
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M32441
|
Folate metabolism-related genes in maize DHFS |
|
Amino Acid |
8 |
636 |
View Taxa
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M32442
|
Folate metabolism-related genes in maize DHNA |
|
Amino Acid |
12 |
826 |
View Taxa
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M32443
|
Folate metabolism-related genes in maize FPGS |
|
Amino Acid |
19 |
627 |
View Taxa
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M32444
|
Folate metabolism-related genes in maize FTHS |
|
Amino Acid |
10 |
977 |
View Taxa
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M32445
|
Folate metabolism-related genes in maize GDCH |
|
Amino Acid |
20 |
177 |
View Taxa
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M32446
|
Folate metabolism-related genes in maize GDCP |
|
Amino Acid |
11 |
1291 |
View Taxa
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M32447
|
Folate metabolism-related genes in maize GDCT |
|
Amino Acid |
9 |
434 |
View Taxa
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M32448
|
Folate metabolism-related genes in maize GTPCHI |
|
Amino Acid |
11 |
480 |
View Taxa
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M32449
|
Folate metabolism-related genes in maize HPPK-DHPS |
|
Amino Acid |
11 |
826 |
View Taxa
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M32450
|
Folate metabolism-related genes in maize MS |
|
Amino Acid |
17 |
1267 |
View Taxa
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M32451
|
Folate metabolism-related genes in maize MTHFR |
|
Amino Acid |
13 |
697 |
View Taxa
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M32452
|
Folate metabolism-related genes in maize SHMT1 |
|
Amino Acid |
10 |
681 |
View Taxa
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