Changes
On March 20, 2023 at 2:58:11 PM UTC, Administrator:
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Changed value of field
publication_state
toapproved
in Gone-wild grapevines in forests may act as a potential habitat for “Flavescence dorée” phytoplasma vectors and inoculum
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19 | \"Christophe\", \"identifier\": \"\", \"name\": \"Debonneville\"}, | 19 | \"Christophe\", \"identifier\": \"\", \"name\": \"Debonneville\"}, | ||
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31 | "date": "[{\"date\": \"2021-06-20\", \"date_type\": \"collected\", | 31 | "date": "[{\"date\": \"2021-06-20\", \"date_type\": \"collected\", | ||
32 | \"end_date\": \"2022-09-30\"}]", | 32 | \"end_date\": \"2022-09-30\"}]", | ||
33 | "doi": "10.16904/envidat.385", | 33 | "doi": "10.16904/envidat.385", | ||
34 | "funding": "[{\"grant_number\": \"627001075\", \"institution\": | 34 | "funding": "[{\"grant_number\": \"627001075\", \"institution\": | ||
35 | \"Swiss Federal Office for Agriculture\", \"institution_url\": | 35 | \"Swiss Federal Office for Agriculture\", \"institution_url\": | ||
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40 | "language": "en", | 40 | "language": "en", | ||
41 | "license_id": "wsl-data", | 41 | "license_id": "wsl-data", | ||
42 | "license_title": "WSL Data Policy", | 42 | "license_title": "WSL Data Policy", | ||
43 | "license_url": | 43 | "license_url": | ||
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45 | "maintainer": "{\"affiliation\": \"Agroscope\", \"email\": | 45 | "maintainer": "{\"affiliation\": \"Agroscope\", \"email\": | ||
46 | \"attilio.rizzoli@agroscope.admin.ch\", \"given_name\": \"Attilio\", | 46 | \"attilio.rizzoli@agroscope.admin.ch\", \"given_name\": \"Attilio\", | ||
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49 | "metadata_created": "2023-03-16T07:27:26.391391", | 49 | "metadata_created": "2023-03-16T07:27:26.391391", | ||
n | 50 | "metadata_modified": "2023-03-20T07:33:15.682916", | n | 50 | "metadata_modified": "2023-03-20T14:58:11.690506", |
51 | "name": "gone-wild-grapevines-in-forests", | 51 | "name": "gone-wild-grapevines-in-forests", | ||
52 | "notes": "Dataset used to test the potential role of gone-wild | 52 | "notes": "Dataset used to test the potential role of gone-wild | ||
53 | grapevines (GWGV) in forests of Southern Switzerland as a source of | 53 | grapevines (GWGV) in forests of Southern Switzerland as a source of | ||
54 | Flavescence dor\u00e9e phytoplasma (FDp) inoculum and as a habitat for | 54 | Flavescence dor\u00e9e phytoplasma (FDp) inoculum and as a habitat for | ||
55 | its main and alternative vectors, <i>Scaphoideus titanus</i> and | 55 | its main and alternative vectors, <i>Scaphoideus titanus</i> and | ||
56 | <i>Orientus ishidae</i>. In the first phase, GWGV were located and | 56 | <i>Orientus ishidae</i>. In the first phase, GWGV were located and | ||
57 | sampled to test their FDp status. In addition, a set of chromotropic | 57 | sampled to test their FDp status. In addition, a set of chromotropic | ||
58 | traps were placed to monitor the presence and abundance of FDp | 58 | traps were placed to monitor the presence and abundance of FDp | ||
59 | vectors. In the second phase, wood from GWGV in forests was collected | 59 | vectors. In the second phase, wood from GWGV in forests was collected | ||
60 | and placed in cages to test the potential oviposition activity by FDp | 60 | and placed in cages to test the potential oviposition activity by FDp | ||
61 | vectors.\r\nThe results showed that GWGV in forests are a reservoir of | 61 | vectors.\r\nThe results showed that GWGV in forests are a reservoir of | ||
62 | FDp and that they can sustain the whole life cycle of both | 62 | FDp and that they can sustain the whole life cycle of both | ||
63 | <i>S.titanus</i> and <i>O.ishidae</i>. Eventually, the need to adapt | 63 | <i>S.titanus</i> and <i>O.ishidae</i>. Eventually, the need to adapt | ||
64 | the current FD management strategies are highlighted.", | 64 | the current FD management strategies are highlighted.", | ||
65 | "num_resources": 5, | 65 | "num_resources": 5, | ||
66 | "num_tags": 7, | 66 | "num_tags": 7, | ||
67 | "organization": { | 67 | "organization": { | ||
68 | "approval_status": "approved", | 68 | "approval_status": "approved", | ||
69 | "created": "2018-09-11T08:41:19.049947", | 69 | "created": "2018-09-11T08:41:19.049947", | ||
70 | "description": "The name Insubria derives from a pre-Roman | 70 | "description": "The name Insubria derives from a pre-Roman | ||
71 | population occupying the geographical area between the Po River and | 71 | population occupying the geographical area between the Po River and | ||
72 | the Monte Ceneri. In the present time the name is used for indicating | 72 | the Monte Ceneri. In the present time the name is used for indicating | ||
73 | the region extending from Lago d'Orta in the West, to Lago di Garda in | 73 | the region extending from Lago d'Orta in the West, to Lago di Garda in | ||
74 | the East, which is characterized by a mild and wet climate. Due to its | 74 | the East, which is characterized by a mild and wet climate. Due to its | ||
75 | particular biogeographical position, this region does not only host a | 75 | particular biogeographical position, this region does not only host a | ||
76 | highly diverse flora and fauna with important endemisms, but also a | 76 | highly diverse flora and fauna with important endemisms, but also a | ||
77 | great cultural and historical diversity. In the recent past, the area | 77 | great cultural and historical diversity. In the recent past, the area | ||
78 | has been exposed to important socio-cultural changes with dramatic | 78 | has been exposed to important socio-cultural changes with dramatic | ||
79 | effects on the land use and on the cultural and biological diversity | 79 | effects on the land use and on the cultural and biological diversity | ||
80 | in space and time. For these reasons, Insubria can be considered an | 80 | in space and time. For these reasons, Insubria can be considered an | ||
81 | ideal model region to assess the effects of global change on cultural | 81 | ideal model region to assess the effects of global change on cultural | ||
82 | and biotic diversity and ecosystem function.\r\n\r\nThe Insubric | 82 | and biotic diversity and ecosystem function.\r\n\r\nThe Insubric | ||
83 | Ecosystems Group aims understanding the ecological and cultural | 83 | Ecosystems Group aims understanding the ecological and cultural | ||
84 | component of such biogeographic transition regions and their role in | 84 | component of such biogeographic transition regions and their role in | ||
85 | driving biological and cultural diversity. Dynamics and changes are | 85 | driving biological and cultural diversity. Dynamics and changes are | ||
86 | investigated from geo-historical perspectives and at different biotic | 86 | investigated from geo-historical perspectives and at different biotic | ||
87 | levels (from the species, to the population and community composition) | 87 | levels (from the species, to the population and community composition) | ||
88 | and interpreted in the light of different socio-cultural | 88 | and interpreted in the light of different socio-cultural | ||
89 | context.\r\n\r\nMain research topics are the chestnut forests and | 89 | context.\r\n\r\nMain research topics are the chestnut forests and | ||
90 | cultivation, forest fire history and ecology, neophytes, biodiversity | 90 | cultivation, forest fire history and ecology, neophytes, biodiversity | ||
91 | in disturbed and urban ecosystems.", | 91 | in disturbed and urban ecosystems.", | ||
92 | "id": "23509083-845f-43f9-8aae-67cdd2800779", | 92 | "id": "23509083-845f-43f9-8aae-67cdd2800779", | ||
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94 | "is_organization": true, | 94 | "is_organization": true, | ||
95 | "name": "insubric-ecosystems", | 95 | "name": "insubric-ecosystems", | ||
96 | "state": "active", | 96 | "state": "active", | ||
97 | "title": "Insubric Ecosystems", | 97 | "title": "Insubric Ecosystems", | ||
98 | "type": "organization" | 98 | "type": "organization" | ||
99 | }, | 99 | }, | ||
100 | "owner_org": "23509083-845f-43f9-8aae-67cdd2800779", | 100 | "owner_org": "23509083-845f-43f9-8aae-67cdd2800779", | ||
101 | "private": false, | 101 | "private": false, | ||
102 | "publication": "{\"publication_year\": \"2023\", \"publisher\": | 102 | "publication": "{\"publication_year\": \"2023\", \"publisher\": | ||
103 | \"EnviDat\"}", | 103 | \"EnviDat\"}", | ||
t | 104 | "publication_state": "pub_pending", | t | 104 | "publication_state": "approved", |
105 | "related_datasets": "", | 105 | "related_datasets": "", | ||
106 | "related_publications": "", | 106 | "related_publications": "", | ||
107 | "relationships_as_object": [], | 107 | "relationships_as_object": [], | ||
108 | "relationships_as_subject": [], | 108 | "relationships_as_subject": [], | ||
109 | "resource_type": "dataset", | 109 | "resource_type": "dataset", | ||
110 | "resource_type_general": "dataset", | 110 | "resource_type_general": "dataset", | ||
111 | "resources": [ | 111 | "resources": [ | ||
112 | { | 112 | { | ||
113 | "cache_last_updated": null, | 113 | "cache_last_updated": null, | ||
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115 | "created": "2023-03-16T08:56:18.190979", | 115 | "created": "2023-03-16T08:56:18.190979", | ||
116 | "description": "Plot characteristics in terms of type of | 116 | "description": "Plot characteristics in terms of type of | ||
117 | experiment (M = molecular analysis; T = traps for adult insects; H = | 117 | experiment (M = molecular analysis; T = traps for adult insects; H = | ||
118 | hatching experiment), coordinates, region, mean slope, distance from | 118 | hatching experiment), coordinates, region, mean slope, distance from | ||
119 | nearest vineyard (DV), last year in which plot was registered as | 119 | nearest vineyard (DV), last year in which plot was registered as | ||
120 | vineyard (Last_T); symptomatic expression of Grapevine Yellows (GY); | 120 | vineyard (Last_T); symptomatic expression of Grapevine Yellows (GY); | ||
121 | result of molecular analysis for FDp detection on gone-wild grapevines | 121 | result of molecular analysis for FDp detection on gone-wild grapevines | ||
122 | (pos = positive detection with Cq < 35; neg = negative detection); | 122 | (pos = positive detection with Cq < 35; neg = negative detection); | ||
123 | number (nr.) of yellow sticky traps (if applicable) and Scaphoideus | 123 | number (nr.) of yellow sticky traps (if applicable) and Scaphoideus | ||
124 | titanus and Orientus ishidae captures per single trap; absolute (N) | 124 | titanus and Orientus ishidae captures per single trap; absolute (N) | ||
125 | and specific (N / kg wood) hatching events of S. titanus and O. | 125 | and specific (N / kg wood) hatching events of S. titanus and O. | ||
126 | ishidae per plot.", | 126 | ishidae per plot.", | ||
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135 | "name": "Table 1. Plot characteristics and results of molecular | 135 | "name": "Table 1. Plot characteristics and results of molecular | ||
136 | analysis, trap captures, and total hatchings.", | 136 | analysis, trap captures, and total hatchings.", | ||
137 | "package_id": "911cc06e-c61b-41c7-ac77-4bcc27de0eda", | 137 | "package_id": "911cc06e-c61b-41c7-ac77-4bcc27de0eda", | ||
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154 | "created": "2023-03-16T08:57:14.643065", | 154 | "created": "2023-03-16T08:57:14.643065", | ||
155 | "description": "Embryonic development time expressed as | 155 | "description": "Embryonic development time expressed as | ||
156 | degree-days and days for gone-wild grapevines (GWGV) and the control. | 156 | degree-days and days for gone-wild grapevines (GWGV) and the control. | ||
157 | N = number of hatched nymphs; EDdd_min and EDdd_max = degree-days | 157 | N = number of hatched nymphs; EDdd_min and EDdd_max = degree-days | ||
158 | accumulated at the first and last hatching, respectively; EDdd_mean = | 158 | accumulated at the first and last hatching, respectively; EDdd_mean = | ||
159 | mean accumulated degree-days; DDA = degree-days accumulated between | 159 | mean accumulated degree-days; DDA = degree-days accumulated between | ||
160 | first and last hatching; EDt_min and EDt_max = minimal and maximal | 160 | first and last hatching; EDt_min and EDt_max = minimal and maximal | ||
161 | time (days) of embryonic development, respectively; EDt_mean = mean | 161 | time (days) of embryonic development, respectively; EDt_mean = mean | ||
162 | time (days) of embryonic development; SE = standard error; HD = | 162 | time (days) of embryonic development; SE = standard error; HD = | ||
163 | hatching period duration in days.", | 163 | hatching period duration in days.", | ||
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220 | "description": "Results of molecular analysis on sampled leaf | 220 | "description": "Results of molecular analysis on sampled leaf | ||
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