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22,710 results for “Plants for planting”
Network analysis highlights increased generalisation and evenness of plant-pollinator interactions after conservation measures
<p><strong>DATASET used in the article entitled</strong> “Network analysis highlights increased generalisation and evenness of plant-pollinator interactions after conservation measures”.</p> <p>We supply weighted and binary matrices used for plant-pollinator network analyses, before and after the implementation of conservation measures.</p> <p>We also supply the list of plant and pollinator species recorded in this study.</p>
Plant health data from Belgian Plant Sentinel Network
<p>The enclosed files contain the questions (in Dutch, English & French) and the responses from tree surveys conducted under the Belgian Plant Sentinel Network.</p> <p>Background to the project</p> <p>Botanic gardens and arboreta possess outstanding scientific collections of a wide diversity of plants, frequently growing outside their natural geographical range. These can be used as sentinels for both early detection of emerging pests and for potentially invasive pests. This is why the International Plant Sentinel Network was launched by EUPHRESCO (EUropean PHytosanitary RESearch COordination), an international network of organisations funding research projects and coordinating national research programmes in the phytosanitary area. International Network developed a transnational network consisting of gardens, diagnostic laboratories and National Plant Protection Organisations, working together in order to provide an early warning system for new and emerging plant pests and diseases. It focused on developing tools and took place in a limited number of countries.</p> <p>Belgium did not participate in the first phase of International Plant Sentinel Network, even though there are many botanic gardens and arboreta in the country. The largest of them is Meise Botanic Garden, which is one of the largest botanic gardens in the world (92 ha). Besides Meise there are several gardens with diverse and unique collections spread all over the country. Among these gardens many have staff members with good knowledge of plant protection, which assure the control of pests and diseases in the collections of the gardens. On the other hand, up to now there have been only limited interactions between the gardens and the National Reference Laboratories for plant pests and diseases. It would be interesting to strengthen these interactions, both for the gardens and arboreta, for a better management and protection of their living collections, and for the Reference Laboratories, in order to gather more data on the presence of pests and diseases in the country.</p> <p>That is why we have created a Belgian network similar to international network, aiming at supporting national plant health policy by early warning of new pest threats, and meanwhile operating in the new transnational initiative of the international network. Together they can form a dense Belgian network to gather data and expand the surveillance of emerging pests over the entire national territory. They also hold most of the plant diversity present in the whole country.</p> <p>Standardized methods and tools for making the plant health surveys have been developed by the International Plant Sentinel Network during its first phase from 2013 to 2016. One of these tools is the Plant Health Checker, a form for making standardized surveys of trees. Two versions are available, one for surveying deciduous trees and one for conifers, as the symptoms to watch for differ between these two groups in some cases. Each form is available in English as a paper form with two sides. Moreover, a reference guide with instructions on how to use the checker had also been made with it, as well as a guide to taking photographs for diagnostic purposes.</p> <p>For the Belgian project we adapt these forms in order to facilitate their use. We translated them to French and Dutch, the two main languages of the country, so that all gardeners could use them. A second goal was to adapt them to the test cases selected for the project. Indeed, some symptoms that are important for these organisms are not included in the original plant heath checker, mainly concerning the symptoms on roots for the root-knot nematode and <em>Phytoplasma</em> case. A third aim was to investigate whether the forms could be simplified for making the surveys in the field. For the latter, however, it was decided to await the user experience of the first year, so as to make an evaluation and suggest eventual amendments.</p> <p>It is also planned to develop an electronic version of the checker form, so as to be able to input the survey data directly in digital format and thus skipping a second and tedious step of entering the data from paper forms into the computer. Moreover, it is preferable to have a system which can easily make the data available to a central data system. That is why we chose to use Google Forms within Google Drive, because it can be utilized as a central data system and flexible, and has many functionalities such as sharing the data. This system also allows the direct input of data with an internet connection.</p>
Fig. 1 in A comprehensive checklist and host plants of Aphididae (Aphidomorpha: Hemiptera) from Pakistan
Fig. 1. Species diversity in the different provinces/states of Pakistan. The number represents the known species in each province/territory in Pakistan.
Fig. 3 in Breeding Avifauna Of The Waste Water Treatment Plants, Located In Northern Left-Bank Part Of Ukraine
Fig. 3. Number of birds of ecological groups in zones: 1— landscape-biotopic characteristic; 2 — nests' location.
Figure 6 Asphondylia peploniae Maia, 2001 in A new species of Asphondylia Loew, 1850 (Diptera, Cecidomyiidae) on Hancornia speciosa (Apocynaceae), a native plant to Brazil
Figure 6 Asphondylia peploniae Maia, 2001: a) Larva, Prothoracic spatula, ventral view, b) Pupa, head, ventral view.
Figure 5 in A new species of Asphondylia Loew, 1850 (Diptera, Cecidomyiidae) on Hancornia speciosa (Apocynaceae), a native plant to Brazil
Figure 5 Asphondylia hancorniae, sp. n.: a) Larva, general aspect, ventral view, b) Prothoracic spatula, ventral view, c) Terminal segment, dorsal view, d) Gall, general aspect, e) Dehiscent gall, f) Gall, longitudinal section.
Figure 4 in A new species of Asphondylia Loew, 1850 (Diptera, Cecidomyiidae) on Hancornia speciosa (Apocynaceae), a native plant to Brazil
Figure 4 Asphondylia hancorniae, sp. n., pupa: a) General aspect, ventral view, b) Head, ventral view, c) Thoracic integument, lateral view, d) Prothoracic spiracle, e) 5th-8th abdominal segments, dorsal view.
Figure 3 in A new species of Asphondylia Loew, 1850 (Diptera, Cecidomyiidae) on Hancornia speciosa (Apocynaceae), a native plant to Brazil
Figure 3 Asphondylia hancorniae, sp. n., female: a) Pedicel, 1st and 2nd flagellomeres, b) 8th -12th flagellomeres, c) 5th flagellomere, d) Foreleg, tarsal claw and empodium, lateral view, e) Abdomen, lateral view.
Figure 2 in A new species of Asphondylia Loew, 1850 (Diptera, Cecidomyiidae) on Hancornia speciosa (Apocynaceae), a native plant to Brazil
Figure 2 Asphondylia hancorniae, sp. n., male: a) 3th abdominal segments to terminalia, lateral view,b) 4th abdominal segments to terminalia, ventral view,c) Terminalia,dorsal view.
Figure 1 in A new species of Asphondylia Loew, 1850 (Diptera, Cecidomyiidae) on Hancornia speciosa (Apocynaceae), a native plant to Brazil
Figure 1 Asphondylia hancorniae, sp. n., male: a) Head, frontal view, b) 9th-12th flagellomeres, c) 5rd flagellomere, d) Wing, e) Foreleg, first tarsomere, lateral view, f) Foreleg, tarsal claw and empodium, lateral view).
Figure 7 in A new species of gall midge (Diptera, Cecidomyiidae) on Ouratea cuspidata (A.St.-Hil.) Engl. (Ochnaceae), a plant endemic to Brazil
Figure 7. Cerciplanus maricaensis sp. n.: a) Galled leaf of Ouratea cuspidata (A.St.- Hil.) Engl. (Ochnaceae), general aspect; b) Galls on Ouratea cuspidata (A.St.-Hil.) Engl. (Ochnaceae), longitudinal section.
Figure 1 in A new species of gall midge (Diptera, Cecidomyiidae) on Ouratea cuspidata (A.St.-Hil.) Engl. (Ochnaceae), a plant endemic to Brazil
Figure 1. Cerciplanus maricaensis sp. n.: a) Female head, frontal view; b) Male scape, pedicel and 1st–4th flagellomeres; c) Male 5th flagellomere; d) Female 5th flagellomere; d) Male 12th flagellomere.
Figure 5 in A new species of gall midge (Diptera, Cecidomyiidae) on Ouratea cuspidata (A.St.-Hil.) Engl. (Ochnaceae), a plant endemic to Brazil
Figure 5. Cerciplanus maricaensis sp. n., pupal exuviae: a) Head and prothoracic spiracle, ventral view; b) Apical plate, dorsal view (apical seta broken); c) Last abdominal segments, dorsal view.
Figure 7 in A new species of Zalepidota Rübsaamen, 1908 (Diptera, Cecidomyiidae) on Piper vicosanum (Piperaceae), an endemic plant to Brazil
Figure 7 Zalepidota distincta new species, pupa: a) head, ventral view; b) antennal horns; c) upper frontal horns; d) lower frontal horn.
Figure 3 in A new species of Zalepidota Rübsaamen, 1908 (Diptera, Cecidomyiidae) on Piper vicosanum (Piperaceae), an endemic plant to Brazil
Figure 3 Zalepidota distincta new species, male: a) foreleg, 1st tarsomere; b) foreleg, tarsal claw and empodium, lateral view; c) abdomen, lateral view.
Figure 2 in A new species of Zalepidota Rübsaamen, 1908 (Diptera, Cecidomyiidae) on Piper vicosanum (Piperaceae), an endemic plant to Brazil
Figure 2 Zalepidota distincta new species, male: a) 12th flagellomere; b) 10th–12th flagellomeres; c) frontal setae, ventral view; d) palpus, ventral view; e) wing.
Figure 5 in Diversity and spatio-temporal variation of Anopheles (Diptera: Culicidae) before and after the construction of the Jirau hydroelectric plant, state of Rondônia, Brazil
Figure 5 Canonical correlation analysis (CCA) ordering diagram between environmental factors and Anopheles species in the pre (a) and post-construction (b) phases of the Jirau hydroelectric plant: Relative Humidity of the air (R. H%); Temp (Temperature ° C); Subtitle: Anopheles albit – An. albitarsis; Anopheles argyrit – An. argyritarsis; Anopheles benar – An. benarrochi; Anopheles braz – An. braziliensis; Anopheles darl – An. darlingi; Anopheles evan – An.evansae; Anopheles mattog – An. mattogrossensis; Anopheles mediop – An. mediopunctatus; Anopheles osw – An. oswaldoi; Anopheles per – An. peryassui; Anopheles rang – An. rangeli; Anopheles trian – An. triannulatus.
Figure 6 in A new species of Zalepidota Rübsaamen, 1908 (Diptera, Cecidomyiidae) on Piper vicosanum (Piperaceae), an endemic plant to Brazil
Figure 6 Zalepidota distincta new species, female: a) abdomen, lateral view; b) last abdominal segments, ventrolateral view; c) abdominal 7th segment to ovipositor,ventrolateral view.
Figure 3 in Diversity and spatio-temporal variation of Anopheles (Diptera: Culicidae) before and after the construction of the Jirau hydroelectric plant, state of Rondônia, Brazil
Figure 3 Density of Anopheles species (x) in the sampled months (January to August) before (a) and after (March to October) the construction (b) of the Jirau hydroelectric w plant, in Rondônia, Brazil.
Figure 11 in Immature stages, phenology, distribution and host plants of the Andean Moon Moth Cercophana frauenfeldii Felder, 1862 (Lepidoptera: Saturniidae)
Figure 11 Larvae of C. frauenfeldii occurring on two host plants. (A) Last instar larva feeding on Cryptocarya alba (peumo). (B) Second instar larva feeding on Gomortega keule (queule) leaves.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.