f | { | f | { |
| "author": "[{\"affiliation\": \"WSL\", \"affiliation_02\": \"ETH\", | | "author": "[{\"affiliation\": \"WSL\", \"affiliation_02\": \"ETH\", |
| \"affiliation_03\": \"\", \"data_credit\": [\"collection\", | | \"affiliation_03\": \"\", \"data_credit\": [\"collection\", |
| \"validation\", \"curation\", \"software\", \"publication\"], | | \"validation\", \"curation\", \"software\", \"publication\"], |
| \"email\": \"felix.neff@wsl.ch\", \"given_name\": \"Felix\", | | \"email\": \"felix.neff@wsl.ch\", \"given_name\": \"Felix\", |
| \"identifier\": \"0000-0001-7266-2589\", \"name\": \"Neff\"}, | | \"identifier\": \"0000-0001-7266-2589\", \"name\": \"Neff\"}, |
| {\"affiliation\": \"WSL\", \"affiliation_02\": \"\", | | {\"affiliation\": \"WSL\", \"affiliation_02\": \"\", |
| \"affiliation_03\": \"\", \"data_credit\": [\"collection\", | | \"affiliation_03\": \"\", \"data_credit\": [\"collection\", |
| \"validation\", \"curation\", \"software\", \"publication\"], | | \"validation\", \"curation\", \"software\", \"publication\"], |
| \"email\": \"carol.resch@wsl.ch\", \"given_name\": \"M. Carol\", | | \"email\": \"carol.resch@wsl.ch\", \"given_name\": \"M. Carol\", |
| \"identifier\": \"0000-0003-1067-1142\", \"name\": \"Resch\"}, | | \"identifier\": \"0000-0003-1067-1142\", \"name\": \"Resch\"}, |
| {\"affiliation\": \"WSL\", \"affiliation_02\": \"\", | | {\"affiliation\": \"WSL\", \"affiliation_02\": \"\", |
| \"affiliation_03\": \"\", \"data_credit\": [\"collection\", | | \"affiliation_03\": \"\", \"data_credit\": [\"collection\", |
| \"publication\"], \"email\": \"anja.marty@wsl.ch\", \"given_name\": | | \"publication\"], \"email\": \"anja.marty@wsl.ch\", \"given_name\": |
| \"Anja\", \"identifier\": \"\", \"name\": \"Marty\"}, | | \"Anja\", \"identifier\": \"\", \"name\": \"Marty\"}, |
| {\"affiliation\": \"WSL\", \"affiliation_02\": \"\", | | {\"affiliation\": \"WSL\", \"affiliation_02\": \"\", |
| \"affiliation_03\": \"\", \"data_credit\": [\"collection\", | | \"affiliation_03\": \"\", \"data_credit\": [\"collection\", |
| \"publication\"], \"email\": \"jacob.rolley@wsl.ch\", \"given_name\": | | \"publication\"], \"email\": \"jacob.rolley@wsl.ch\", \"given_name\": |
| \"Jacob D.\", \"identifier\": \"\", \"name\": \"Rolley\"}, | | \"Jacob D.\", \"identifier\": \"\", \"name\": \"Rolley\"}, |
| {\"affiliation\": \"WSL\", \"affiliation_02\": \"\", | | {\"affiliation\": \"WSL\", \"affiliation_02\": \"\", |
| \"affiliation_03\": \"\", \"data_credit\": [\"publication\", | | \"affiliation_03\": \"\", \"data_credit\": [\"publication\", |
| \"supervision\"], \"email\": \"martin.schuetz@wsl.ch\", | | \"supervision\"], \"email\": \"martin.schuetz@wsl.ch\", |
| \"given_name\": \"Martin\", \"identifier\": \"\", \"name\": | | \"given_name\": \"Martin\", \"identifier\": \"\", \"name\": |
| \"Sch\\u00fctz\"}, {\"affiliation\": \"WSL\", \"affiliation_02\": | | \"Sch\\u00fctz\"}, {\"affiliation\": \"WSL\", \"affiliation_02\": |
| \"\", \"affiliation_03\": \"\", \"data_credit\": [\"publication\", | | \"\", \"affiliation_03\": \"\", \"data_credit\": [\"publication\", |
| \"supervision\"], \"email\": \"anita.risch@wsl.ch\", \"given_name\": | | \"supervision\"], \"email\": \"anita.risch@wsl.ch\", \"given_name\": |
| \"Anita C.\", \"identifier\": \"0000-0003-0531-8336\", \"name\": | | \"Anita C.\", \"identifier\": \"0000-0003-0531-8336\", \"name\": |
| \"Risch\"}, {\"affiliation\": \"WSL\", \"affiliation_02\": \"\", | | \"Risch\"}, {\"affiliation\": \"WSL\", \"affiliation_02\": \"\", |
| \"affiliation_03\": \"\", \"data_credit\": [\"collection\", | | \"affiliation_03\": \"\", \"data_credit\": [\"collection\", |
| \"publication\", \"supervision\"], \"email\": | | \"publication\", \"supervision\"], \"email\": |
| \"martin.gossner@wsl.ch\", \"given_name\": \"Martin M.\", | | \"martin.gossner@wsl.ch\", \"given_name\": \"Martin M.\", |
| \"identifier\": \"0000-0003-1516-6364\", \"name\": \"Gossner\"}]", | | \"identifier\": \"0000-0003-1516-6364\", \"name\": \"Gossner\"}]", |
| "author_email": null, | | "author_email": null, |
| "creator_user_id": "e673d4bc-4054-4784-b885-4363a52a08aa", | | "creator_user_id": "e673d4bc-4054-4784-b885-4363a52a08aa", |
| "date": "[{\"date\": \"2017-07-01\", \"date_type\": \"collected\", | | "date": "[{\"date\": \"2017-07-01\", \"date_type\": \"collected\", |
| \"end_date\": \"2017-07-31\"}]", | | \"end_date\": \"2017-07-31\"}]", |
| "doi": "10.16904/envidat.142", | | "doi": "10.16904/envidat.142", |
| "funding": "[{\"grant_number\": \"31003A_166654 / | | "funding": "[{\"grant_number\": \"31003A_166654 / |
| 310030E-173542/1\", \"institution\": \"Swiss National Science | | 310030E-173542/1\", \"institution\": \"Swiss National Science |
| Foundation SNF\", \"institution_url\": \"http://www.snf.ch\"}]", | | Foundation SNF\", \"institution_url\": \"http://www.snf.ch\"}]", |
| "groups": [], | | "groups": [], |
| "id": "e4752eb3-24f1-48b5-a6c4-e0a4134af08d", | | "id": "e4752eb3-24f1-48b5-a6c4-e0a4134af08d", |
| "isopen": true, | | "isopen": true, |
| "language": "en", | | "language": "en", |
| "license_id": "odc-odbl", | | "license_id": "odc-odbl", |
| "license_title": "ODbL with Database Contents License (DbCL)", | | "license_title": "ODbL with Database Contents License (DbCL)", |
| "license_url": "https://opendefinition.org/licenses/odc-odbl", | | "license_url": "https://opendefinition.org/licenses/odc-odbl", |
| "maintainer": "{\"affiliation\": \"WSL\", \"email\": | | "maintainer": "{\"affiliation\": \"WSL\", \"email\": |
| \"felix.neff@wsl.ch\", \"given_name\": \"Felix\", \"identifier\": | | \"felix.neff@wsl.ch\", \"given_name\": \"Felix\", \"identifier\": |
| \"0000-0001-7266-2589\", \"name\": \"Neff\"}", | | \"0000-0001-7266-2589\", \"name\": \"Neff\"}", |
| "maintainer_email": null, | | "maintainer_email": null, |
| "metadata_created": "2020-03-18T08:15:00.220494", | | "metadata_created": "2020-03-18T08:15:00.220494", |
n | "metadata_modified": "2021-08-17T11:22:28.345739", | n | "metadata_modified": "2022-11-08T16:42:46.333769", |
| "name": "data_ecolappl_2020", | | "name": "data_ecolappl_2020", |
| "notes": "This dataset contains all data, on which the following | | "notes": "This dataset contains all data, on which the following |
| publication below is based.\r\n\r\n**Paper Citation**:\r\n\r\nNeff, | | publication below is based.\r\n\r\n**Paper Citation**:\r\n\r\nNeff, |
| F., Resch, M. C., Marty, A., Rolley, J. D., Sch\u00fctz, M., Risch, A. | | F., Resch, M. C., Marty, A., Rolley, J. D., Sch\u00fctz, M., Risch, A. |
n | C, Gossner, M. M. Accepted. Long-term restoration success of insect | n | C, Gossner, M. M. 2020. Long-term restoration success of insect |
| herbivore communities in semi-natural grasslands: a functional | | herbivore communities in semi-natural grasslands: a functional |
t | approach. Ecological Applications.\r\n\r\nPlease cite this paper | t | approach. Ecological Applications, 30, e02133. |
| | | 10.1002/eap.2133[https://doi.org/10.1002/eap.2133]\r\n\r\nPlease cite |
| together with the citation for the datafile.\r\n\r\n# | | this paper together with the citation for the datafile.\r\n\r\n# |
| Methods\r\n\r\n## Study site\r\nThe study area is situated within and | | Methods\r\n\r\n## Study site\r\nThe study area is situated within and |
| nearby to Eigental nature reserve (47\u00b027\u201936\u201d to | | nearby to Eigental nature reserve (47\u00b027\u201936\u201d to |
| 47\u00b029\u201906\u201d N, 8\u00b037\u201912\u201d to | | 47\u00b029\u201906\u201d N, 8\u00b037\u201912\u201d to |
| 8\u00b037\u201944\u201d E, 461 to 507 m a.s.l.) in the vicinity of | | 8\u00b037\u201944\u201d E, 461 to 507 m a.s.l.) in the vicinity of |
| Zurich airport (Canton Zurich, Switzerland). Mean annual precipitation | | Zurich airport (Canton Zurich, Switzerland). Mean annual precipitation |
| and temperature is 903 \u00b1 136 mm and 9.14\u00b0C \u00b1 | | and temperature is 903 \u00b1 136 mm and 9.14\u00b0C \u00b1 |
| 0.50\u00b0C (mean \u00b1 SD for 2007-2017 (*MeteoSchweiz 2018*)). In | | 0.50\u00b0C (mean \u00b1 SD for 2007-2017 (*MeteoSchweiz 2018*)). In |
| 1967, the Eigental nature reserve was established to protect small and | | 1967, the Eigental nature reserve was established to protect small and |
| isolated remnants of species-rich, semi-natural grasslands (roughly 12 | | isolated remnants of species-rich, semi-natural grasslands (roughly 12 |
| ha), which were embedded in an otherwise intensively managed | | ha), which were embedded in an otherwise intensively managed |
| landscape. It is characterized by oligo- to mesotrophic Molinion | | landscape. It is characterized by oligo- to mesotrophic Molinion |
| (semi-wet, matrix species *Molinia caerulea*) and Mesobromion | | (semi-wet, matrix species *Molinia caerulea*) and Mesobromion |
| (semi-dry, matrix species *Bromus erectus*) meadows (*Delarze et al. | | (semi-dry, matrix species *Bromus erectus*) meadows (*Delarze et al. |
| 2015*), reflecting small-scale habitat heterogeneity, mainly due to | | 2015*), reflecting small-scale habitat heterogeneity, mainly due to |
| site-specific groundwater levels and slope inclination. As in most | | site-specific groundwater levels and slope inclination. As in most |
| Central European grasslands, management is necessary to prevent shrub | | Central European grasslands, management is necessary to prevent shrub |
| and tree invasions as well as to secure low levels of available soil | | and tree invasions as well as to secure low levels of available soil |
| nutrients and thus to maintain these species-rich habitats ([*Poschlod | | nutrients and thus to maintain these species-rich habitats ([*Poschlod |
| and WallisDeVries | | and WallisDeVries |
| 2002*](https://doi.org/10.1016/S0006-3207(01)00201-4)).\r\nIn 1990, | | 2002*](https://doi.org/10.1016/S0006-3207(01)00201-4)).\r\nIn 1990, |
| the government of the Canton Zurich decided to enlarge the Eigental | | the government of the Canton Zurich decided to enlarge the Eigental |
| nature reserve as a counter measure against degradation and | | nature reserve as a counter measure against degradation and |
| biodiversity loss in semi-natural grasslands due to overutilization | | biodiversity loss in semi-natural grasslands due to overutilization |
| and the excessive input of nutrients (mostly nitrogen). Eleven patches | | and the excessive input of nutrients (mostly nitrogen). Eleven patches |
| of adjacent intensively managed grassland (in total roughly 20 ha) | | of adjacent intensively managed grassland (in total roughly 20 ha) |
| were targeted to be transformed into semi-natural grasslands. As a | | were targeted to be transformed into semi-natural grasslands. As a |
| first restoration measure, fertilization was ceased, and biomass | | first restoration measure, fertilization was ceased, and biomass |
| harvested three times to remove excessive soil nutrients from the | | harvested three times to remove excessive soil nutrients from the |
| original system and thus benefit plant species with low competitive | | original system and thus benefit plant species with low competitive |
| ability on the long run. In 1995, the restoration efforts were | | ability on the long run. In 1995, the restoration efforts were |
| increased and a large-scale experiment comprising three restoration | | increased and a large-scale experiment comprising three restoration |
| measures with increasing intervention intensities was | | measures with increasing intervention intensities was |
| implemented:\r\n\r\n- **Harvest only**: Initial restoration measures | | implemented:\r\n\r\n- **Harvest only**: Initial restoration measures |
| were continued with mowing and removing of the aboveground biomass two | | were continued with mowing and removing of the aboveground biomass two |
| times a year (early summer and autumn).\r\n- **Topsoil**: Removal of | | times a year (early summer and autumn).\r\n- **Topsoil**: Removal of |
| topsoil, depending on the thickness of the A horizon the upper 10 to | | topsoil, depending on the thickness of the A horizon the upper 10 to |
| 20 cm, in four randomly selected areas within the eleven patches in | | 20 cm, in four randomly selected areas within the eleven patches in |
| late autumn 1995. The size of the restoration area depended on | | late autumn 1995. The size of the restoration area depended on |
| individual patch size (2700 to 7000 m2).\r\n- **Topsoil + | | individual patch size (2700 to 7000 m2).\r\n- **Topsoil + |
| Propagules**: Plant propagules were added on half of the area where | | Propagules**: Plant propagules were added on half of the area where |
| topsoil was removed via application of fresh, seed-containing hay and | | topsoil was removed via application of fresh, seed-containing hay and |
| hand-collected propagules of target species originating from semi-dry | | hand-collected propagules of target species originating from semi-dry |
| and semi-wet species-rich grasslands with local and regional | | and semi-wet species-rich grasslands with local and regional |
| provenance (within radius of 7 to 30 km) (1995, 1996, | | provenance (within radius of 7 to 30 km) (1995, 1996, |
| 1997).\r\n\r\nManagement of *Topsoil* and *Topsoil + Propagules* | | 1997).\r\n\r\nManagement of *Topsoil* and *Topsoil + Propagules* |
| started five years after treatment implementation and included yearly | | started five years after treatment implementation and included yearly |
| mowing and removing of aboveground biomass (late summer or early | | mowing and removing of aboveground biomass (late summer or early |
| autumn). The experiment was complemented with intensively managed | | autumn). The experiment was complemented with intensively managed |
| grassland sites that share the same agricultural history as the | | grassland sites that share the same agricultural history as the |
| restored sites (**Initial**; swards dominated by *Lolium perenne*, *L. | | restored sites (**Initial**; swards dominated by *Lolium perenne*, *L. |
| multiflorum* and *Trifolium repens*): mowing and subsequent | | multiflorum* and *Trifolium repens*): mowing and subsequent |
| fertilizing (manure) up to five times a year, as well as different | | fertilizing (manure) up to five times a year, as well as different |
| tillage regimes. Finally, sites were selected in target semi-dry and | | tillage regimes. Finally, sites were selected in target semi-dry and |
| semi-wet grasslands (**Target**) located within the Eigental nature | | semi-wet grasslands (**Target**) located within the Eigental nature |
| reserve and another nature reserve nearby (Altl\u00e4ufe der Glatt; | | reserve and another nature reserve nearby (Altl\u00e4ufe der Glatt; |
| 47\u00b028\u201929\u201d to 47\u00b027\u201941\u201d N, | | 47\u00b028\u201929\u201d to 47\u00b027\u201941\u201d N, |
| 8\u00b031\u201956\u201d to 8\u00b032\u201926\u201d E, 418 to 420 m | | 8\u00b031\u201956\u201d to 8\u00b032\u201926\u201d E, 418 to 420 m |
| a.s.l.). The selected target sites are mown and aboveground biomass | | a.s.l.). The selected target sites are mown and aboveground biomass |
| removed once a year in late summer or early autumn. For each of the | | removed once a year in late summer or early autumn. For each of the |
| five treatments, we selected eleven plots (5 m \u00d7 5 m) spread | | five treatments, we selected eleven plots (5 m \u00d7 5 m) spread |
| across the sites. Altogether, the experiment included 55 | | across the sites. Altogether, the experiment included 55 |
| plots.\r\n\r\n## Arthropod sampling\r\nAboveground arthropods were | | plots.\r\n\r\n## Arthropod sampling\r\nAboveground arthropods were |
| sampled using suction sampling on four consecutive days in early July | | sampled using suction sampling on four consecutive days in early July |
| 2017 before the grasslands were mown. Arthropods were sampled in two | | 2017 before the grasslands were mown. Arthropods were sampled in two |
| locations on each 5 m \u00d7 5 m plot, once in the south-western and | | locations on each 5 m \u00d7 5 m plot, once in the south-western and |
| once in the north-eastern corner to account for possible spatial | | once in the north-eastern corner to account for possible spatial |
| heterogeneity within the plots. Arthropods were sorted to order or | | heterogeneity within the plots. Arthropods were sorted to order or |
| lower taxonomic levels and individuals were identified to species | | lower taxonomic levels and individuals were identified to species |
| level. We focused on three groups (Hemiptera: Auchenorrhyncha, | | level. We focused on three groups (Hemiptera: Auchenorrhyncha, |
| Hemiptera: Heteroptera, Orthoptera),\r\n\r\n## Functional traits\r\nWe | | Hemiptera: Heteroptera, Orthoptera),\r\n\r\n## Functional traits\r\nWe |
| used two sets of functional traits in this study. | | used two sets of functional traits in this study. |
| \r\n\r\n**Morphometric traits**: \r\nBody volume, body shape, hind | | \r\n\r\n**Morphometric traits**: \r\nBody volume, body shape, hind |
| femur shape, hind/front leg ratio, wing length, leg length, antenna | | femur shape, hind/front leg ratio, wing length, leg length, antenna |
| length and eye width. We used trait measurements from [*Simons et al. | | length and eye width. We used trait measurements from [*Simons et al. |
| (2016)*](http://dx.doi.org/10.1890/15-0616.1) and [*Neff et al. | | (2016)*](http://dx.doi.org/10.1890/15-0616.1) and [*Neff et al. |
| (2019)*](https://doi.org/10.1007/s10980-019-00872-1) and complemented | | (2019)*](https://doi.org/10.1007/s10980-019-00872-1) and complemented |
| them with measurements on study specimens. These measurements were | | them with measurements on study specimens. These measurements were |
| conducted using a high-resolution measuring stereo microscope (Leica | | conducted using a high-resolution measuring stereo microscope (Leica |
| DVM6, Leica Microsystems) including automated high-resolution photo | | DVM6, Leica Microsystems) including automated high-resolution photo |
| stacking with the software Leica Application Suite X (LAS X, \u00a9 | | stacking with the software Leica Application Suite X (LAS X, \u00a9 |
| 2018 Leica Microsystems CMS GmbH) and Leica Map Premium (Leica | | 2018 Leica Microsystems CMS GmbH) and Leica Map Premium (Leica |
| Microsystems, \u00a9 1996-2017 Digital Surf) at WSL Birmensdorf. The | | Microsystems, \u00a9 1996-2017 Digital Surf) at WSL Birmensdorf. The |
| eight morphometric traits were calculated from direct measurements of | | eight morphometric traits were calculated from direct measurements of |
| body parts on specimens of all sampled species. From each species, we | | body parts on specimens of all sampled species. From each species, we |
| measured at least one female and one male specimen. Additionally, for | | measured at least one female and one male specimen. Additionally, for |
| species that show wing dimorphism, we included the different wing | | species that show wing dimorphism, we included the different wing |
| morphs and weighted them by their prevalence reported in literature. | | morphs and weighted them by their prevalence reported in literature. |
| For few species, of which not all wing morphs were available for | | For few species, of which not all wing morphs were available for |
| measurements (10 cases), we estimated relative wing length from | | measurements (10 cases), we estimated relative wing length from |
| congeneric species or from the literature. \r\n\r\n**Life-history | | congeneric species or from the literature. \r\n\r\n**Life-history |
| traits** \r\nBased on an existing data set collected by [*Gossner et | | traits** \r\nBased on an existing data set collected by [*Gossner et |
| al. (2015)*](http://dx.doi.org/10.1890/14-2159.1). We included traits | | al. (2015)*](http://dx.doi.org/10.1890/14-2159.1). We included traits |
| describing different life-history characteristics of herbivore insect | | describing different life-history characteristics of herbivore insect |
| species, namely: feeding specialization, feeding tissue, hibernation | | species, namely: feeding specialization, feeding tissue, hibernation |
| stage and number of generations per year, which are related to insect | | stage and number of generations per year, which are related to insect |
| species\u2019 vulnerability to changes in plant community composition, | | species\u2019 vulnerability to changes in plant community composition, |
| microhabitat use and disturbance tolerance. To represent potential | | microhabitat use and disturbance tolerance. To represent potential |
| changes in habitat moisture with abandonment of intensive land use | | changes in habitat moisture with abandonment of intensive land use |
| (e.g., change in ground-water level), we also included two traits | | (e.g., change in ground-water level), we also included two traits |
| related to preferred habitat moisture of the study species: moisture | | related to preferred habitat moisture of the study species: moisture |
| preference, describing species\u2019 optimum habitat moisture, and | | preference, describing species\u2019 optimum habitat moisture, and |
| moisture range, which describes the species\u2019 range of preferable | | moisture range, which describes the species\u2019 range of preferable |
| moisture conditions. \r\n\r\n\r\n### References\r\n\r\nDelarze, R., | | moisture conditions. \r\n\r\n\r\n### References\r\n\r\nDelarze, R., |
| Y. Gonseth, S. Eggenberg, and M. Vust. 2015. Lebensr\u00e4ume der | | Y. Gonseth, S. Eggenberg, and M. Vust. 2015. Lebensr\u00e4ume der |
| Schweiz: \u00d6kologie - Gef\u00e4hrdung - Kennarten. 3rd ed. Ott, | | Schweiz: \u00d6kologie - Gef\u00e4hrdung - Kennarten. 3rd ed. Ott, |
| Bern. \r\n\r\nGossner, M. M., N. K. Simons, R. Achtziger, T. Blick, | | Bern. \r\n\r\nGossner, M. M., N. K. Simons, R. Achtziger, T. Blick, |
| W. H. O. Dorow, F. Dziock, F. K\u00f6hler, W. Rabitsch, and W. W. | | W. H. O. Dorow, F. Dziock, F. K\u00f6hler, W. Rabitsch, and W. W. |
| Weisser. 2015. A summary of eight traits of Coleoptera, Hemiptera, | | Weisser. 2015. A summary of eight traits of Coleoptera, Hemiptera, |
| Orthoptera and Araneae, occurring in grasslands in Germany. Scientific | | Orthoptera and Araneae, occurring in grasslands in Germany. Scientific |
| Data 2:150013. \r\n\r\nMeteoSchweiz. 2018. Klimabulletin Jahr 2017. | | Data 2:150013. \r\n\r\nMeteoSchweiz. 2018. Klimabulletin Jahr 2017. |
| MeteoSchweiz, Z\u00fcrich. \r\n\r\nNeff, F., N. Bl\u00fcthgen, M. N. | | MeteoSchweiz, Z\u00fcrich. \r\n\r\nNeff, F., N. Bl\u00fcthgen, M. N. |
| Chist\u00e9, N. K. Simons, J. Steckel, W. W. Weisser, C. Westphal, L. | | Chist\u00e9, N. K. Simons, J. Steckel, W. W. Weisser, C. Westphal, L. |
| Pellissier, and M. M. Gossner. 2019. Cross-scale effects of land use | | Pellissier, and M. M. Gossner. 2019. Cross-scale effects of land use |
| on the functional composition of herbivorous insect communities. | | on the functional composition of herbivorous insect communities. |
| Landscape Ecology 34:2001\u20132015. \r\n\r\nPoschlod, P., and M. F. | | Landscape Ecology 34:2001\u20132015. \r\n\r\nPoschlod, P., and M. F. |
| WallisDeVries. 2002. The historical and socioeconomic perspective of | | WallisDeVries. 2002. The historical and socioeconomic perspective of |
| calcareous grasslands\u2014lessons from the distant and recent past. | | calcareous grasslands\u2014lessons from the distant and recent past. |
| Biological Conservation 104:361\u2013376. \r\n\r\nSimons, N. K., W. | | Biological Conservation 104:361\u2013376. \r\n\r\nSimons, N. K., W. |
| W. Weisser, and M. M. Gossner. 2016. Multi-taxa approach shows | | W. Weisser, and M. M. Gossner. 2016. Multi-taxa approach shows |
| consistent shifts in arthropod functional traits along grassland | | consistent shifts in arthropod functional traits along grassland |
| land-use intensity gradient. Ecology 97:754\u2013764. ", | | land-use intensity gradient. Ecology 97:754\u2013764. ", |
| "num_resources": 3, | | "num_resources": 3, |
| "num_tags": 8, | | "num_tags": 8, |
| "organization": { | | "organization": { |
| "approval_status": "approved", | | "approval_status": "approved", |
| "created": "2019-09-12T13:05:17.879759", | | "created": "2019-09-12T13:05:17.879759", |
| "description": "Our group Forest Entomology investigates forest | | "description": "Our group Forest Entomology investigates forest |
| insects in their broadest sense: ecology of potential forest pests, | | insects in their broadest sense: ecology of potential forest pests, |
| natural enemies, diversity of forest insects.\r\n\r\nResearch | | natural enemies, diversity of forest insects.\r\n\r\nResearch |
| topics\r\n\r\n- Infestation dynamics of bark beetles, effect of | | topics\r\n\r\n- Infestation dynamics of bark beetles, effect of |
| natural enemies.\r\n- Interactions between host trees and bark | | natural enemies.\r\n- Interactions between host trees and bark |
| beetles\r\n- Recolonization of windthrow and wildfire areas by insect | | beetles\r\n- Recolonization of windthrow and wildfire areas by insect |
| communities.\r\n- Dependency of dead wood (saproxylic) insects on tree | | communities.\r\n- Dependency of dead wood (saproxylic) insects on tree |
| and stand characteristics.", | | and stand characteristics.", |
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| "name": "forest-entomology", | | "name": "forest-entomology", |
| "state": "active", | | "state": "active", |
| "title": "Forest Entomology", | | "title": "Forest Entomology", |
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| "publication_state": "published", | | "publication_state": "published", |
| "related_datasets": "M. Carol Resch; Martin Sch\u00fctz; Anita C. | | "related_datasets": "M. Carol Resch; Martin Sch\u00fctz; Anita C. |
| Risch (2019). Grassland restoration: nematodes and plant communities. | | Risch (2019). Grassland restoration: nematodes and plant communities. |
| EnviDat. doi: | | EnviDat. doi: |
| [10.16904/envidat.65](https://doi.org/10.16904/envidat.65).", | | [10.16904/envidat.65](https://doi.org/10.16904/envidat.65).", |
| "related_publications": "* wsl:23144", | | "related_publications": "* wsl:23144", |
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| Insect species name (following [Fauna Europaea](https://fauna-eu.org)) | | Insect species name (following [Fauna Europaea](https://fauna-eu.org)) |
| \r\n- **Author**: Author and year of species' description (following | | \r\n- **Author**: Author and year of species' description (following |
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| as used in the analyses \r\n- **Number_Adults**: Number of adult | | as used in the analyses \r\n- **Number_Adults**: Number of adult |
| individuals recorded \r\n- **Herbivore**: Logical indicating whether | | individuals recorded \r\n- **Herbivore**: Logical indicating whether |
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| "description": "Functional traits of all herbivorous insect | | "description": "Functional traits of all herbivorous insect |
| species sampled in the study.\r\n \r\n- **Species**: Insect species | | species sampled in the study.\r\n \r\n- **Species**: Insect species |
| name (following [Fauna Europaea](https://fauna-eu.org)) \r\n- | | name (following [Fauna Europaea](https://fauna-eu.org)) \r\n- |
| **Author**: Author and year of species' description (following [Fauna | | **Author**: Author and year of species' description (following [Fauna |
| Europaea](https://fauna-eu.org)) \r\n- **Group**: Insect group as | | Europaea](https://fauna-eu.org)) \r\n- **Group**: Insect group as |
| used in the analyses \r\n- **Body volume**: Body volume determined by | | used in the analyses \r\n- **Body volume**: Body volume determined by |
| body length, body width and body height (in mm$^3$) \r\n- | | body length, body width and body height (in mm$^3$) \r\n- |
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| length (leg length = femur length + tibia length) \r\n- | | length (leg length = femur length + tibia length) \r\n- |
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| **Leg_length_rel**: Ratio of front-leg length to body length (leg | | **Leg_length_rel**: Ratio of front-leg length to body length (leg |
| length = femur length + tibia length) \r\n- **Antenna_length_rel**: | | length = femur length + tibia length) \r\n- **Antenna_length_rel**: |
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| specialization on food source (*m*: monophagous, *o*: oligophagous, | | specialization on food source (*m*: monophagous, *o*: oligophagous, |
| *p*: polyphagous) \r\n- **Feeding_tissue**: Feeding tissue used for | | *p*: polyphagous) \r\n- **Feeding_tissue**: Feeding tissue used for |
| feeding (*c*: chewers, *x*: xylem, *p*: phloem, *m*: mesophyll, | | feeding (*c*: chewers, *x*: xylem, *p*: phloem, *m*: mesophyll, |
| *m-p/r*: mesophyll as well as phloem and/or reproductive organs, *r*: | | *m-p/r*: mesophyll as well as phloem and/or reproductive organs, *r*: |
| reproductive organs, *se*: ripe seeds) \r\n- **Hibernation**: | | reproductive organs, *se*: ripe seeds) \r\n- **Hibernation**: |
| Hibernation stage (*e*: egg, *e/n*: egg and nymph, *n*: nymph, *a*: | | Hibernation stage (*e*: egg, *e/n*: egg and nymph, *n*: nymph, *a*: |
| adult) \r\n- **Generations**: Number of generations per year (*1.5* | | adult) \r\n- **Generations**: Number of generations per year (*1.5* |
| stands for *1-2* generations per year) \r\n- **Moisture_pref_mean**: | | stands for *1-2* generations per year) \r\n- **Moisture_pref_mean**: |
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| xerophilous, *3*: moderately mesohygrophilous, *4*: mesohygrophilous, | | xerophilous, *3*: moderately mesohygrophilous, *4*: mesohygrophilous, |
| *5*: moderately hygrophilous, *6*: hygrophilous, *7*: moderately | | *5*: moderately hygrophilous, *6*: hygrophilous, *7*: moderately |
| hydrophilous, *8*: hydrophilous) \r\n- **Moisture_pref_range**: range | | hydrophilous, *8*: hydrophilous) \r\n- **Moisture_pref_range**: range |
| of preferred habitat moistures (indicating degree of specialization) | | of preferred habitat moistures (indicating degree of specialization) |
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| treatment \r\n- **Landuse_history**: recent agricultural use for | | treatment \r\n- **Landuse_history**: recent agricultural use for |
| Initial; agricultural use before restoration for all restored sites | | Initial; agricultural use before restoration for all restored sites |
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