Changes
On April 30, 2024 at 6:40:19 AM UTC, Attilio Rizzoli:
-
Updated description of Gone-wild grapevines in forests host phytoplasma genotypes linked to grapevines Flavescence doree epidemics in cultivated vineyards and competent vectors from
“'Flavescence dorée” (FD) is a quarantine grapevine disease associated with FD phytoplasmas (FDp). In Switzerland, FD was identified in 2004 in the southernmost part of Canton Ticino (TI) and then rapidly propagated throughout the entire regional winegrowing area despite the mandatory control measures. The reported widespread distribution of gone-wild grapevines (GWGV) in TI raised the hypothesis of a potential role of GWGV as an FDp reservoir and as a habitat for FDp vectors. To test this assumption, GWGV and FDp vectors were sampled in 13 plots to attest their infection status and compare the FDp genetic profiles. The primary (Scaphoideus titanus) and best-candidate alternative (Orientus ishidae) vectors were collected throughout the season and were found in moderate to high abundance in all the study area. The infection rate of both GWGV and S. titanus followed the historical gradient of S. titanus arrival and dispersal in TI with a clear geographic distinction between the southern and northern part of TI. Interestingly, the rate measured for S. titanus was similar to that observed in highly FD-infested cultivated vineyards. Moreover, the genetic profiles of the infected GWGV and S. titanus samples were identical to those commonly observed in cultivated vineyards (map M54). Importantly, four specimens of O. ishidae were also found harboring the same genotype. This study emphasizes the importance of GWGV (and abandoned vineyards) and alternative vectors for the FD epidemics in FD-infested regions, as well as a potential origin for FD outbreaks in areas currently designated as FDp-free.
to“Flavescence dorée” (FD) is a quarantine grapevine disease associated with FD phytoplasmas (FDp). In Switzerland, FD was identified in 2004 in the southernmost part of Canton Ticino (TI) and then rapidly propagated throughout the entire regional winegrowing area despite the mandatory control measures. The reported widespread distribution of gone-wild grapevines (GWGV) in TI raised the hypothesis of a potential role of GWGV as an FDp reservoir and as a habitat for FDp vectors. To test this assumption, GWGV and FDp vectors were sampled in 13 plots to attest their infection status and compare the FDp genetic profiles. The primary (Scaphoideus titanus) and best-candidate alternative (Orientus ishidae) vectors were collected throughout the season and were found in moderate to high abundance in all the study area. The infection rate of both GWGV and S. titanus followed the historical gradient of S. titanus arrival and dispersal in TI with a clear geographic distinction between the southern and northern part of TI. Interestingly, the rate measured for S. titanus was similar to that observed in highly FD-infested cultivated vineyards. Moreover, the genetic profiles of the infected GWGV and S. titanus samples were identical to those commonly observed in cultivated vineyards (map M54). Importantly, four specimens of O. ishidae were also found harboring the same genotype. This study emphasizes the importance of GWGV (and abandoned vineyards) and alternative vectors for the FD epidemics in FD-infested regions, as well as a potential origin for FD outbreaks in areas currently designated as FDp-free.
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2 | "author": "[{\"given_name\": \"Alan\", \"name\": \"Oggier\", | 2 | "author": "[{\"given_name\": \"Alan\", \"name\": \"Oggier\", | ||
3 | \"email\": \"alan.oggier@wsl.ch\", \"data_credit\": [\"software\", | 3 | \"email\": \"alan.oggier@wsl.ch\", \"data_credit\": [\"software\", | ||
4 | \"curation\", \"collection\", \"publication\"], \"identifier\": | 4 | \"curation\", \"collection\", \"publication\"], \"identifier\": | ||
5 | \"0009-0005-7970-7926\", \"affiliation\": \"Swiss Federal Institute | 5 | \"0009-0005-7970-7926\", \"affiliation\": \"Swiss Federal Institute | ||
6 | for Forest, Snow and Landscape Research WSL\"}, {\"given_name\": | 6 | for Forest, Snow and Landscape Research WSL\"}, {\"given_name\": | ||
7 | \"Marco\", \"name\": \"Conedera\", \"email\": | 7 | \"Marco\", \"name\": \"Conedera\", \"email\": | ||
8 | \"marco.conedera@wsl.ch\", \"data_credit\": [\"supervision\", | 8 | \"marco.conedera@wsl.ch\", \"data_credit\": [\"supervision\", | ||
9 | \"validation\", \"publication\"], \"identifier\": | 9 | \"validation\", \"publication\"], \"identifier\": | ||
10 | \"0000-0003-3980-2142\", \"affiliation\": \"Swiss Federal Institute | 10 | \"0000-0003-3980-2142\", \"affiliation\": \"Swiss Federal Institute | ||
11 | for Forest, Snow and Landscape Research WSL\"}, {\"given_name\": | 11 | for Forest, Snow and Landscape Research WSL\"}, {\"given_name\": | ||
12 | \"Christophe\", \"name\": \"Debonneville\", \"email\": | 12 | \"Christophe\", \"name\": \"Debonneville\", \"email\": | ||
13 | \"christophe.debonneville@agroscope.admin.ch\", \"data_credit\": | 13 | \"christophe.debonneville@agroscope.admin.ch\", \"data_credit\": | ||
14 | [\"curation\", \"collection\", \"validation\", \"publication\", | 14 | [\"curation\", \"collection\", \"validation\", \"publication\", | ||
15 | \"software\"], \"identifier\": | 15 | \"software\"], \"identifier\": | ||
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17 | \"Agroscope\"}, {\"given_name\": \"Olivier\", \"name\": \"Schumpp\", | 17 | \"Agroscope\"}, {\"given_name\": \"Olivier\", \"name\": \"Schumpp\", | ||
18 | \"email\": \"olivier.schumpp@agroscope.admin.ch\", \"data_credit\": | 18 | \"email\": \"olivier.schumpp@agroscope.admin.ch\", \"data_credit\": | ||
19 | [\"validation\", \"publication\", \"supervision\"], \"identifier\": | 19 | [\"validation\", \"publication\", \"supervision\"], \"identifier\": | ||
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21 | \"Agroscope\"}, {\"given_name\": \"Attilio\", \"name\": \"Rizzoli\", | 21 | \"Agroscope\"}, {\"given_name\": \"Attilio\", \"name\": \"Rizzoli\", | ||
22 | \"email\": \"attilio.rizzoli@agroscope.admin.ch\", \"data_credit\": | 22 | \"email\": \"attilio.rizzoli@agroscope.admin.ch\", \"data_credit\": | ||
23 | [\"supervision\", \"curation\", \"validation\", \"publication\"], | 23 | [\"supervision\", \"curation\", \"validation\", \"publication\"], | ||
24 | \"identifier\": \"https://orcid.org/0000-0002-5465-0506\", | 24 | \"identifier\": \"https://orcid.org/0000-0002-5465-0506\", | ||
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28 | "date": | 28 | "date": | ||
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30 | "doi": "10.16904/envidat.503", | 30 | "doi": "10.16904/envidat.503", | ||
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37 | "license_title": "WSL Data Policy", | 37 | "license_title": "WSL Data Policy", | ||
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40 | "maintainer": | 40 | "maintainer": | ||
41 | io.rizzoli@wsl.ch\",\"given_name\":\"Attilio\",\"name\":\"Rizzoli\"}", | 41 | io.rizzoli@wsl.ch\",\"given_name\":\"Attilio\",\"name\":\"Rizzoli\"}", | ||
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43 | "metadata_created": "2024-04-17T09:46:23.565567", | 43 | "metadata_created": "2024-04-17T09:46:23.565567", | ||
n | 44 | "metadata_modified": "2024-04-30T06:36:49.521770", | n | 44 | "metadata_modified": "2024-04-30T06:40:19.014978", |
45 | "name": "gone-wild-grapevines-fd-genotypes", | 45 | "name": "gone-wild-grapevines-fd-genotypes", | ||
t | 46 | "notes": "\u201c'Flavescence dor\u00e9e\u201d (FD) is a quarantine | t | 46 | "notes": "\u201cFlavescence dor\u00e9e\u201d (FD) is a quarantine |
47 | grapevine disease associated with FD phytoplasmas (FDp). In | 47 | grapevine disease associated with FD phytoplasmas (FDp). In | ||
48 | Switzerland, FD was identified in 2004 in the southernmost part of | 48 | Switzerland, FD was identified in 2004 in the southernmost part of | ||
49 | Canton Ticino (TI) and then rapidly propagated throughout the entire | 49 | Canton Ticino (TI) and then rapidly propagated throughout the entire | ||
50 | regional winegrowing area despite the mandatory control measures. The | 50 | regional winegrowing area despite the mandatory control measures. The | ||
51 | reported widespread distribution of gone-wild grapevines (GWGV) in TI | 51 | reported widespread distribution of gone-wild grapevines (GWGV) in TI | ||
52 | raised the hypothesis of a potential role of GWGV as an FDp reservoir | 52 | raised the hypothesis of a potential role of GWGV as an FDp reservoir | ||
53 | and as a habitat for FDp vectors. To test this assumption, GWGV and | 53 | and as a habitat for FDp vectors. To test this assumption, GWGV and | ||
54 | FDp vectors were sampled in 13 plots to attest their infection status | 54 | FDp vectors were sampled in 13 plots to attest their infection status | ||
55 | and compare the FDp genetic profiles. The primary (Scaphoideus | 55 | and compare the FDp genetic profiles. The primary (Scaphoideus | ||
56 | titanus) and best-candidate alternative (Orientus ishidae) vectors | 56 | titanus) and best-candidate alternative (Orientus ishidae) vectors | ||
57 | were collected throughout the season and were found in moderate to | 57 | were collected throughout the season and were found in moderate to | ||
58 | high abundance in all the study area. The infection rate of both GWGV | 58 | high abundance in all the study area. The infection rate of both GWGV | ||
59 | and S. titanus followed the historical gradient of S. titanus arrival | 59 | and S. titanus followed the historical gradient of S. titanus arrival | ||
60 | and dispersal in TI with a clear geographic distinction between the | 60 | and dispersal in TI with a clear geographic distinction between the | ||
61 | southern and northern part of TI. Interestingly, the rate measured for | 61 | southern and northern part of TI. Interestingly, the rate measured for | ||
62 | S. titanus was similar to that observed in highly FD-infested | 62 | S. titanus was similar to that observed in highly FD-infested | ||
63 | cultivated vineyards. Moreover, the genetic profiles of the infected | 63 | cultivated vineyards. Moreover, the genetic profiles of the infected | ||
64 | GWGV and S. titanus samples were identical to those commonly observed | 64 | GWGV and S. titanus samples were identical to those commonly observed | ||
65 | in cultivated vineyards (map M54). Importantly, four specimens of O. | 65 | in cultivated vineyards (map M54). Importantly, four specimens of O. | ||
66 | ishidae were also found harboring the same genotype. This study | 66 | ishidae were also found harboring the same genotype. This study | ||
67 | emphasizes the importance of GWGV (and abandoned vineyards) and | 67 | emphasizes the importance of GWGV (and abandoned vineyards) and | ||
68 | alternative vectors for the FD epidemics in FD-infested regions, as | 68 | alternative vectors for the FD epidemics in FD-infested regions, as | ||
69 | well as a potential origin for FD outbreaks in areas currently | 69 | well as a potential origin for FD outbreaks in areas currently | ||
70 | designated as FDp-free.", | 70 | designated as FDp-free.", | ||
71 | "num_resources": 8, | 71 | "num_resources": 8, | ||
72 | "num_tags": 7, | 72 | "num_tags": 7, | ||
73 | "organization": { | 73 | "organization": { | ||
74 | "approval_status": "approved", | 74 | "approval_status": "approved", | ||
75 | "created": "2018-09-11T08:41:19.049947", | 75 | "created": "2018-09-11T08:41:19.049947", | ||
76 | "description": "The name Insubria derives from a pre-Roman | 76 | "description": "The name Insubria derives from a pre-Roman | ||
77 | population occupying the geographical area between the Po River and | 77 | population occupying the geographical area between the Po River and | ||
78 | the Monte Ceneri. In the present time the name is used for indicating | 78 | the Monte Ceneri. In the present time the name is used for indicating | ||
79 | the region extending from Lago d'Orta in the West, to Lago di Garda in | 79 | the region extending from Lago d'Orta in the West, to Lago di Garda in | ||
80 | the East, which is characterized by a mild and wet climate. Due to its | 80 | the East, which is characterized by a mild and wet climate. Due to its | ||
81 | particular biogeographical position, this region does not only host a | 81 | particular biogeographical position, this region does not only host a | ||
82 | highly diverse flora and fauna with important endemisms, but also a | 82 | highly diverse flora and fauna with important endemisms, but also a | ||
83 | great cultural and historical diversity. In the recent past, the area | 83 | great cultural and historical diversity. In the recent past, the area | ||
84 | has been exposed to important socio-cultural changes with dramatic | 84 | has been exposed to important socio-cultural changes with dramatic | ||
85 | effects on the land use and on the cultural and biological diversity | 85 | effects on the land use and on the cultural and biological diversity | ||
86 | in space and time. For these reasons, Insubria can be considered an | 86 | in space and time. For these reasons, Insubria can be considered an | ||
87 | ideal model region to assess the effects of global change on cultural | 87 | ideal model region to assess the effects of global change on cultural | ||
88 | and biotic diversity and ecosystem function.\r\n\r\nThe Insubric | 88 | and biotic diversity and ecosystem function.\r\n\r\nThe Insubric | ||
89 | Ecosystems Group aims understanding the ecological and cultural | 89 | Ecosystems Group aims understanding the ecological and cultural | ||
90 | component of such biogeographic transition regions and their role in | 90 | component of such biogeographic transition regions and their role in | ||
91 | driving biological and cultural diversity. Dynamics and changes are | 91 | driving biological and cultural diversity. Dynamics and changes are | ||
92 | investigated from geo-historical perspectives and at different biotic | 92 | investigated from geo-historical perspectives and at different biotic | ||
93 | levels (from the species, to the population and community composition) | 93 | levels (from the species, to the population and community composition) | ||
94 | and interpreted in the light of different socio-cultural | 94 | and interpreted in the light of different socio-cultural | ||
95 | context.\r\n\r\nMain research topics are the chestnut forests and | 95 | context.\r\n\r\nMain research topics are the chestnut forests and | ||
96 | cultivation, forest fire history and ecology, neophytes, biodiversity | 96 | cultivation, forest fire history and ecology, neophytes, biodiversity | ||
97 | in disturbed and urban ecosystems.", | 97 | in disturbed and urban ecosystems.", | ||
98 | "id": "23509083-845f-43f9-8aae-67cdd2800779", | 98 | "id": "23509083-845f-43f9-8aae-67cdd2800779", | ||
99 | "image_url": "2018-09-11-064425.506670LogoWSL.svg", | 99 | "image_url": "2018-09-11-064425.506670LogoWSL.svg", | ||
100 | "is_organization": true, | 100 | "is_organization": true, | ||
101 | "name": "insubric-ecosystems", | 101 | "name": "insubric-ecosystems", | ||
102 | "state": "active", | 102 | "state": "active", | ||
103 | "title": "Insubric Ecosystems", | 103 | "title": "Insubric Ecosystems", | ||
104 | "type": "organization" | 104 | "type": "organization" | ||
105 | }, | 105 | }, | ||
106 | "owner_org": "23509083-845f-43f9-8aae-67cdd2800779", | 106 | "owner_org": "23509083-845f-43f9-8aae-67cdd2800779", | ||
107 | "private": false, | 107 | "private": false, | ||
108 | "publication": | 108 | "publication": | ||
109 | "{\"publisher\":\"EnviDat\",\"publication_year\":\"2024\"}", | 109 | "{\"publisher\":\"EnviDat\",\"publication_year\":\"2024\"}", | ||
110 | "publication_state": "published", | 110 | "publication_state": "published", | ||
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119 | "created": "2024-04-17T11:27:52.202257", | 119 | "created": "2024-04-17T11:27:52.202257", | ||
120 | "description": "Phytoplasma sequences from this work and | 120 | "description": "Phytoplasma sequences from this work and | ||
121 | reference strains with their GenBank accession number, hosts, | 121 | reference strains with their GenBank accession number, hosts, | ||
122 | geographic origin and reference.", | 122 | geographic origin and reference.", | ||
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149 | "description": "Plot characteristics in terms of coordinates, | 149 | "description": "Plot characteristics in terms of coordinates, | ||
150 | region, mean slope, closest distance from nearest cultivated vineyard | 150 | region, mean slope, closest distance from nearest cultivated vineyard | ||
151 | (DV), distance range between yellow sticky trap and nearest forest | 151 | (DV), distance range between yellow sticky trap and nearest forest | ||
152 | edge (DF), last time registered as cultivated vineyard (Last_T); | 152 | edge (DF), last time registered as cultivated vineyard (Last_T); | ||
153 | absolute captures (N) and mean captures per hundred leaves (mean/100 | 153 | absolute captures (N) and mean captures per hundred leaves (mean/100 | ||
154 | leaves \u00b1 SE) during nymph collection for Scaphoideus titanus and | 154 | leaves \u00b1 SE) during nymph collection for Scaphoideus titanus and | ||
155 | Orientus ishidae, absolute captures (N) and mean captures per single | 155 | Orientus ishidae, absolute captures (N) and mean captures per single | ||
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183 | "description": "Molecular characterization of the Flavescence | 183 | "description": "Molecular characterization of the Flavescence | ||
184 | dor\u00e9e phytoplasma detected in Scaphoideus titanus and Orientus | 184 | dor\u00e9e phytoplasma detected in Scaphoideus titanus and Orientus | ||
185 | ishidae specimens collected on gone-wild grapevines; number of | 185 | ishidae specimens collected on gone-wild grapevines; number of | ||
186 | analyzed and infected insect specimens and genotype profile for the | 186 | analyzed and infected insect specimens and genotype profile for the | ||
187 | map, vmpA and malG genes.", | 187 | map, vmpA and malG genes.", | ||
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215 | of Flavescence dor\u00e9e phytoplasma in symptomatic and asymptomatic | 215 | of Flavescence dor\u00e9e phytoplasma in symptomatic and asymptomatic | ||
216 | leaf samples collected from gone-wild grapevines; number of analyzed | 216 | leaf samples collected from gone-wild grapevines; number of analyzed | ||
217 | and infected leaf samples, and map genotype (conducted on all | 217 | and infected leaf samples, and map genotype (conducted on all | ||
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245 | "description": "Location of the experimental plots in Canton | 245 | "description": "Location of the experimental plots in Canton | ||
246 | Ticino\n(a) Location of the study area within Switzerland; T = | 246 | Ticino\n(a) Location of the study area within Switzerland; T = | ||
247 | Ticino\n(b) Black dots: plots hosting GWGVs monitored for the presence | 247 | Ticino\n(b) Black dots: plots hosting GWGVs monitored for the presence | ||
248 | of FDp-infected insect and plant samples. \nSopra = Sopraceneri | 248 | of FDp-infected insect and plant samples. \nSopra = Sopraceneri | ||
249 | (Ticino); Sotto = Sottoceneri (Ticino). Grey areas = cultivated | 249 | (Ticino); Sotto = Sottoceneri (Ticino). Grey areas = cultivated | ||
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276 | "description": "Flavescence dor\u00e9e detection on the analyzed | 276 | "description": "Flavescence dor\u00e9e detection on the analyzed | ||
277 | insect (a) and gone-wild grapevine (b) samples\n(a)\tCircles: location | 277 | insect (a) and gone-wild grapevine (b) samples\n(a)\tCircles: location | ||
278 | with insect vectors tested for Flavescence dor\u00e9e phytoplasma; | 278 | with insect vectors tested for Flavescence dor\u00e9e phytoplasma; | ||
279 | horizontal bar: S. titanus FDp-infected with map-genotype M54; | 279 | horizontal bar: S. titanus FDp-infected with map-genotype M54; | ||
280 | diagonal line top right to bottom left; O. ishidae FDp-infected with | 280 | diagonal line top right to bottom left; O. ishidae FDp-infected with | ||
281 | map-genotype M54; diagonal line top left to bottom right: O. ishidae | 281 | map-genotype M54; diagonal line top left to bottom right: O. ishidae | ||
282 | FDp-infected with map-genotype M50\n(b)\tCircles: Gone-wild grapevines | 282 | FDp-infected with map-genotype M50\n(b)\tCircles: Gone-wild grapevines | ||
283 | (GWGV) tested for FDp; vertical bar: symptomatic and FDp-infected | 283 | (GWGV) tested for FDp; vertical bar: symptomatic and FDp-infected | ||
284 | samples; horizontal bar: asymptomatic and FDp-infected samples. Sopra | 284 | samples; horizontal bar: asymptomatic and FDp-infected samples. Sopra | ||
285 | = Sopraceneri (Ticino); Sotto = Sottoceneri (Ticino). Grey areas = | 285 | = Sopraceneri (Ticino); Sotto = Sottoceneri (Ticino). Grey areas = | ||
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312 | "description": "Flavescence dor\u00e9e detection on the analyzed | 312 | "description": "Flavescence dor\u00e9e detection on the analyzed | ||
313 | insect (a) and gone-wild grapevine (b) samples\n(a)\tCircles: location | 313 | insect (a) and gone-wild grapevine (b) samples\n(a)\tCircles: location | ||
314 | with insect vectors tested for Flavescence dor\u00e9e phytoplasma; | 314 | with insect vectors tested for Flavescence dor\u00e9e phytoplasma; | ||
315 | horizontal bar: S. titanus FDp-infected with map-genotype M54; | 315 | horizontal bar: S. titanus FDp-infected with map-genotype M54; | ||
316 | diagonal line top right to bottom left; O. ishidae FDp-infected with | 316 | diagonal line top right to bottom left; O. ishidae FDp-infected with | ||
317 | map-genotype M54; diagonal line top left to bottom right: O. ishidae | 317 | map-genotype M54; diagonal line top left to bottom right: O. ishidae | ||
318 | FDp-infected with map-genotype M50\n(b)\tCircles: Gone-wild grapevines | 318 | FDp-infected with map-genotype M50\n(b)\tCircles: Gone-wild grapevines | ||
319 | (GWGV) tested for FDp; vertical bar: symptomatic and FDp-infected | 319 | (GWGV) tested for FDp; vertical bar: symptomatic and FDp-infected | ||
320 | samples; horizontal bar: asymptomatic and FDp-infected samples. Sopra | 320 | samples; horizontal bar: asymptomatic and FDp-infected samples. Sopra | ||
321 | = Sopraceneri (Ticino); Sotto = Sottoceneri (Ticino). Grey areas = | 321 | = Sopraceneri (Ticino); Sotto = Sottoceneri (Ticino). Grey areas = | ||
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347 | "created": "2024-04-17T11:33:23.294209", | 347 | "created": "2024-04-17T11:33:23.294209", | ||
348 | "description": "Phylogenetic tree of the map (a; partial) and | 348 | "description": "Phylogenetic tree of the map (a; partial) and | ||
349 | vmpA (b) genes sequences from Scaphoideus titanus, Orientus ishidae | 349 | vmpA (b) genes sequences from Scaphoideus titanus, Orientus ishidae | ||
350 | and gone-wild grapevines obtained in this work and reference strains | 350 | and gone-wild grapevines obtained in this work and reference strains | ||
351 | from Genbank (see Online Resource 1). Maximum likelihood phylogeny | 351 | from Genbank (see Online Resource 1). Maximum likelihood phylogeny | ||
352 | based on nucleotide sequences of (A) map (543 bp) and (B) vmpA (465 | 352 | based on nucleotide sequences of (A) map (543 bp) and (B) vmpA (465 | ||
353 | bp) genes. The numbers on branches indicate the level of bootstrap | 353 | bp) genes. The numbers on branches indicate the level of bootstrap | ||
354 | support (500 replicates). Support values above 70% are labeled. The | 354 | support (500 replicates). Support values above 70% are labeled. The | ||
355 | scale bar shows the number of substitutions per site.", | 355 | scale bar shows the number of substitutions per site.", | ||
356 | "doi": "", | 356 | "doi": "", | ||
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376 | } | 376 | } | ||
377 | ], | 377 | ], | ||
378 | "spatial": | 378 | "spatial": | ||
379 | ]}],\"properties\":{\"name\":\"gone-wild-grapevines-fd-genotypes\"}}", | 379 | ]}],\"properties\":{\"name\":\"gone-wild-grapevines-fd-genotypes\"}}", | ||
380 | "state": "active", | 380 | "state": "active", | ||
381 | "subtitle": "", | 381 | "subtitle": "", | ||
382 | "tags": [ | 382 | "tags": [ | ||
383 | { | 383 | { | ||
384 | "display_name": "FLAVESCENCE DOR\u00c9E", | 384 | "display_name": "FLAVESCENCE DOR\u00c9E", | ||
385 | "id": "c6cf9604-8326-41a4-9667-30d9c6429b10", | 385 | "id": "c6cf9604-8326-41a4-9667-30d9c6429b10", | ||
386 | "name": "FLAVESCENCE DOR\u00c9E", | 386 | "name": "FLAVESCENCE DOR\u00c9E", | ||
387 | "state": "active", | 387 | "state": "active", | ||
388 | "vocabulary_id": null | 388 | "vocabulary_id": null | ||
389 | }, | 389 | }, | ||
390 | { | 390 | { | ||
391 | "display_name": "GENOTYPING", | 391 | "display_name": "GENOTYPING", | ||
392 | "id": "83358c15-a7ac-4460-909b-c0fb72105a8b", | 392 | "id": "83358c15-a7ac-4460-909b-c0fb72105a8b", | ||
393 | "name": "GENOTYPING", | 393 | "name": "GENOTYPING", | ||
394 | "state": "active", | 394 | "state": "active", | ||
395 | "vocabulary_id": null | 395 | "vocabulary_id": null | ||
396 | }, | 396 | }, | ||
397 | { | 397 | { | ||
398 | "display_name": "GRAPEVINE YELLOWS", | 398 | "display_name": "GRAPEVINE YELLOWS", | ||
399 | "id": "208faa83-d296-4a99-9ad0-00f5f3bed135", | 399 | "id": "208faa83-d296-4a99-9ad0-00f5f3bed135", | ||
400 | "name": "GRAPEVINE YELLOWS", | 400 | "name": "GRAPEVINE YELLOWS", | ||
401 | "state": "active", | 401 | "state": "active", | ||
402 | "vocabulary_id": null | 402 | "vocabulary_id": null | ||
403 | }, | 403 | }, | ||
404 | { | 404 | { | ||
405 | "display_name": "ORIENTUS ISHIDAE", | 405 | "display_name": "ORIENTUS ISHIDAE", | ||
406 | "id": "2dd4b3c8-6d19-4744-bd22-741a0e907bb6", | 406 | "id": "2dd4b3c8-6d19-4744-bd22-741a0e907bb6", | ||
407 | "name": "ORIENTUS ISHIDAE", | 407 | "name": "ORIENTUS ISHIDAE", | ||
408 | "state": "active", | 408 | "state": "active", | ||
409 | "vocabulary_id": null | 409 | "vocabulary_id": null | ||
410 | }, | 410 | }, | ||
411 | { | 411 | { | ||
412 | "display_name": "SCAPHOIDEUS TITANUS", | 412 | "display_name": "SCAPHOIDEUS TITANUS", | ||
413 | "id": "b89aac3b-5b92-49f5-ab06-32bca55f90e9", | 413 | "id": "b89aac3b-5b92-49f5-ab06-32bca55f90e9", | ||
414 | "name": "SCAPHOIDEUS TITANUS", | 414 | "name": "SCAPHOIDEUS TITANUS", | ||
415 | "state": "active", | 415 | "state": "active", | ||
416 | "vocabulary_id": null | 416 | "vocabulary_id": null | ||
417 | }, | 417 | }, | ||
418 | { | 418 | { | ||
419 | "display_name": "SOUTHERN SWITZERLAND", | 419 | "display_name": "SOUTHERN SWITZERLAND", | ||
420 | "id": "34d3c9fa-e99a-4d5f-89a9-636ff1ec24b4", | 420 | "id": "34d3c9fa-e99a-4d5f-89a9-636ff1ec24b4", | ||
421 | "name": "SOUTHERN SWITZERLAND", | 421 | "name": "SOUTHERN SWITZERLAND", | ||
422 | "state": "active", | 422 | "state": "active", | ||
423 | "vocabulary_id": null | 423 | "vocabulary_id": null | ||
424 | }, | 424 | }, | ||
425 | { | 425 | { | ||
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427 | "id": "97ac3564-bb88-46ad-9fe4-b7d606e0aa3a", | 427 | "id": "97ac3564-bb88-46ad-9fe4-b7d606e0aa3a", | ||
428 | "name": "SWITZERLAND", | 428 | "name": "SWITZERLAND", | ||
429 | "state": "active", | 429 | "state": "active", | ||
430 | "vocabulary_id": null | 430 | "vocabulary_id": null | ||
431 | } | 431 | } | ||
432 | ], | 432 | ], | ||
433 | "title": "Gone-wild grapevines in forests host phytoplasma genotypes | 433 | "title": "Gone-wild grapevines in forests host phytoplasma genotypes | ||
434 | linked to grapevines Flavescence doree epidemics in cultivated | 434 | linked to grapevines Flavescence doree epidemics in cultivated | ||
435 | vineyards and competent vectors", | 435 | vineyards and competent vectors", | ||
436 | "type": "dataset", | 436 | "type": "dataset", | ||
437 | "url": null | 437 | "url": null | ||
438 | } | 438 | } |