Effects of Natural Habitat and Season on Cursorial Spider Assemblages in Mediterranean Vineyards

被引:1
作者
Ganem, Zeana [1 ,2 ]
Ferrante, Marco [3 ,4 ]
Lubin, Yael [4 ]
Steinpress, Igor Armiach [1 ]
Gish, Moshe [2 ]
Sharon, Rakefet [5 ]
Harari, Ally R. [6 ]
Keasar, Tamar [7 ]
Gavish-Regev, Efrat [1 ]
机构
[1] Hebrew Univ Jerusalem, Natl Nat Hist Collect, IL-91904 Jerusalem, Israel
[2] Univ Haifa, Sch Environm Sci, IL-3103301 Haifa, Israel
[3] Univ Azores, Fac Agr & Environm, Ctr Ecol Evolut & Environm Changes cE3c, Azorean Biodivers Grp, P-9700042 Angra Do Heroismo, Azores, Portugal
[4] Ben Gurion Univ Negev, Mitrani Dept Desert Ecol, IL-8499000 Midreshet Ben Gurion, Israel
[5] MIGAL Galilee Technol Ctr, Northern R&D, IL-1220800 Qiryat Shemona, Israel
[6] Agr Res Org, Volcani Ctr, Dept Entomol, IL-7505101 Bet Dagan, Israel
[7] Univ Haifa, Dept Biol & Environm, IL-3600600 Tivon, Israel
关键词
agroecosystem; Araneae; Levant; species composition; DIVERSITY; DIVERSIFICATION; ABUNDANCE; ARANEAE; FIELDS;
D O I
10.3390/insects14100782
中图分类号
Q96 [昆虫学];
学科分类号
摘要
Simple Summary Spiders are potential natural enemies of insect pests in many crops, and their species composition in the crop may be influenced by nearby natural habitats. Here, we examined the effects of the habitat type (different sampling positions within the vineyard and in the nearby natural habitat) on spider assemblages in vineyards. Spider species richness, assemblage composition, and diversity were evaluated by means of pitfall traps in early and late summer, in three commercial vineyards and their adjacent natural habitats in a Mediterranean landscape in northern Israel. We collected 688 spiders, belonging to 25 families and 61 species and morphospecies. Spider richness differed in the two seasons; more species were documented in early summer (47) than in late summer (33). The natural habitat had the highest species richness, with 34 species, while three vineyard positions were inhabited by only 27-31 species each. The natural habitat assemblage differed from the vineyard assemblages, with 15 species that were found only in the natural habitat, yet 11 species were shared by both the natural habitat and all vineyard positions. Both season (early vs. late in the cropping season) and the habitat (vineyard vs. natural) affected the spider assemblage composition. The study documents the large diversity of spiders in a Mediterranean vineyard agroecosystem. The information that we provide here is critical in assessing the potential for conservation biocontrol, where natural habitats may be a source of natural enemies for nearby vineyards.Abstract Natural habitats adjacent to vineyards are presumed to have a positive effect on the diversity of natural enemies within the vineyards. However, these habitats differ in vegetation structure and seasonal phenology and in turn could affect the species composition of natural enemies. Here, we compared the species richness and diversity and the composition of spider assemblages in several locations within three commercial vineyards and the nearby natural habitats in a Mediterranean landscape in northern Israel. We sampled spiders by means of pitfall traps in early and in late summer. Both the time in the season and the habitat (natural versus vineyard) affected spider species richness and diversity. More species were found in early summer (47) than in late summer (33), and more occurred in the natural habitat (34 species) than in the vineyards (27-31 species). Fifteen species were found exclusively in the natural habitat, and only 11 species were shared by the vineyards and natural habitat, four of which were the most abundant and geographically widely distributed species in the samples. In late summer, spider diversity in the natural habitat was higher than within the vineyards: the spider assemblages in the vineyards became dominated by a few species late in the crop season, while those of the natural habitat remained stable. Overall, the natural habitat differed in assemblage composition from all within-vineyard locations, while the three locations within the vineyard did not differ significantly in assemblage composition. Season (early vs. late summer), however, significantly affected the spider assemblage composition. This study documents the large diversity of spiders in a local Mediterranean vineyard agroecosystem. Over 60% of the known spider families in the region occurred in our samples, highlighting the importance of this agroecosystem for spider diversity and the potential for conservation biocontrol, where natural habitats may be a source of natural enemies for nearby vineyards.
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共 55 条
  • [1] The effectiveness of flower strips and hedgerows on pest control, pollination services and crop yield: a quantitative synthesis
    Albrecht, Matthias
    Kleijn, David
    Williams, Neal M.
    Tschumi, Matthias
    Blaauw, Brett R.
    Bommarco, Riccardo
    Campbell, Alistair J.
    Dainese, Matteo
    Drummond, Francis A.
    Entling, Martin H.
    Ganser, Dominik
    de Groot, G. Arjen
    Goulson, Dave
    Grab, Heather
    Hamilton, Hannah
    Herzog, Felix
    Isaacs, Rufus
    Jacot, Katja
    Jeanneret, Philippe
    Jonsson, Mattias
    Knop, Eva
    Kremen, Claire
    Landis, Douglas A.
    Loeb, Gregory M.
    Marini, Lorenzo
    McKerchar, Megan
    Morandin, Lora
    Pfister, Sonja C.
    Potts, Simon G.
    Rundlof, Maj
    Sardinas, Hillary
    Sciligo, Amber
    Thies, Carsten
    Tscharntke, Teja
    Venturini, Eric
    Veromann, Eve
    Vollhardt, Ines M. G.
    Wackers, Felix
    Ward, Kimiora
    Westbury, Duncan B.
    Wilby, Andrew
    Woltz, Megan
    Wratten, Steve
    Sutter, Louis
    [J]. ECOLOGY LETTERS, 2020, 23 (10) : 1488 - 1498
  • [2] Semi-natural habitat complexity affects abundance and movement of natural enemies in organic olive orchards
    Alejandro Alvarez, Hugo
    Morente, Marina
    Shigeo Oi, F.
    Rodriguez, Estefania
    Campos, Mercedes
    Ruano, Francisca
    [J]. AGRICULTURE ECOSYSTEMS & ENVIRONMENT, 2019, 285
  • [3] Spider assemblages associated with different crop stages of irrigated rice agroecosystems from eastern Uruguay
    Bao, Leticia
    Gineila, Juaquin
    Cadenazzi, Monica
    Castiglioni, Enrique A.
    Martinez, Sebastian
    Casales, Luis
    Caraballo, Maria P.
    Laborda, Alvaro
    Simo, Miguel
    [J]. BIODIVERSITY DATA JOURNAL, 2018, 6
  • [4] A functional overview of conservation biological control
    Begg, Graham S.
    Cook, Samantha M.
    Dye, Richard
    Ferrante, Marco
    Franck, Pierre
    Lavigne, Claire
    Lovei, Gabor L.
    Mansion-Vaquie, Agathe
    Pell, Judith K.
    Petit, Sandrine
    Quesada, Nora
    Ricci, Benoit
    Wratten, Stephen D.
    Birch, A. Nicholas E.
    [J]. CROP PROTECTION, 2017, 97 : 145 - 158
  • [5] Cursorial spiders retard initial aphid population growth at low densities in winter wheat
    Birkhofer, K.
    Gavish-Regev, E.
    Endlweber, K.
    Lubin, Y. D.
    von Berg, K.
    Wise, D. H.
    Scheu, S.
    [J]. BULLETIN OF ENTOMOLOGICAL RESEARCH, 2008, 98 (03) : 249 - 255
  • [6] Birkhofer K., 2013, Spider research in the 21st century: Trends and perspectives, P200
  • [7] Blandenier Gilles, 2009, Bulletin of the British Arachnological Society, V14, P308
  • [8] Molecular evidence for dietary selectivity and pest suppression potential in an epigeal spider community in winter wheat
    Chapman, Eric G.
    Schmidt, Jason M.
    Welch, Kelton D.
    Harwood, James D.
    [J]. BIOLOGICAL CONTROL, 2013, 65 (01) : 72 - 86
  • [9] Limited benefits of non-crop vegetation on spiders in Australian vineyards: regional or crop differences?
    D'Alberto, Clare F.
    Hoffmann, Ary A.
    Thomson, Linda J.
    [J]. BIOCONTROL, 2012, 57 (04) : 541 - 552
  • [10] A global synthesis reveals biodiversity-mediated benefits for crop production
    Dainese, Matteo
    Martin, Emily A.
    Aizen, Marcelo A.
    Albrecht, Matthias
    Bartomeus, Ignasi
    Bommarco, Riccardo
    Carvalheiro, Luisa G.
    Chaplin-Kramer, Rebecca
    Gagic, Vesna
    Garibaldi, Lucas A.
    Ghazoul, Jaboury
    Grab, Heather
    Jonsson, Mattias
    Karp, Daniel S.
    Kennedy, Christina M.
    Kleijn, David
    Kremen, Claire
    Landis, Douglas A.
    Letourneau, Deborah K.
    Marini, Lorenzo
    Poveda, Katja
    Rader, Romina
    Smith, Henrik G.
    Tscharntke, Teja
    Andersson, Georg K. S.
    Badenhausser, Isabelle
    Baensch, Svenja
    Bezerra, Antonio Diego M.
    Bianchi, Felix J. J. A.
    Boreux, Virginie
    Bretagnolle, Vincent
    Caballero-Lopez, Berta
    Cavigliasso, Pablo
    Cetkovic, Aleksandar
    Chacoff, Natacha P.
    Classen, Alice
    Cusser, Sarah
    da Silva e Silva, Felipe D.
    de Groot, G. Arjen
    Dudenhoeffer, Jan H.
    Ekroos, Johan
    Fijen, Thijs
    Franck, Pierre
    Freitas, Breno M.
    Garratt, Michael P. D.
    Gratton, Claudio
    Hipolito, Juliana
    Holzschuh, Andrea
    Hunt, Lauren
    Iverson, Aaron L.
    [J]. SCIENCE ADVANCES, 2019, 5 (10):