Diversity and Trophic Relationships of Functional Groups of Bumblebees (Hymenoptera: Apidae, Bombus Latreille, 1802) in Urban Habitats

Diversity and Trophic Relationships of Functional Groups of Bumblebees (Hymenoptera: Apidae, Bombus Latreille, 1802) in Urban Habitats

Hindawi Psyche: A Journal of Entomology Volume 2020, Article ID 5182146, 14 pages https://doi.org/10.1155/2020/5182146 Research Article Diversity and Trophic Relationships of Functional Groups of Bumblebees (Hymenoptera: Apidae, Bombus Latreille, 1802) in Urban Habitats Hanna Yu Honchar Institute for Evolutionary Ecology of the National Academy of Sciences of Ukraine, Lebedeva Str. 37, 03143 Kyiv, Ukraine Correspondence should be addressed to Hanna Yu Honchar; [email protected] Received 11 February 2020; Revised 20 August 2020; Accepted 11 November 2020; Published 7 December 2020 Academic Editor: Jacques Hubert Charles Delabie Copyright © 2020 Hanna Yu Honchar. (is is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. Species composition, distribution, and trophic relationships of bumblebees are studied in six types of urban habitat: urban parks, botanical gardens, least-disturbed areas within the city, residential areas, and roadsides. Twenty bumblebee species are recorded in the present study. (e species composition of bumblebees has changed from 1933 to 2017. Rare species have disappeared from the city—Bombus fragrans, B. cullumanus, and B. jonellus. (e core of urban bumblebee communities consists of ecologically plastic species, most of which belong to the functional morphoecological “short-tongued” group (83%). (e more specialized “medium- tongued” and “long-tongued” species are less diverse. (eir populations make up 14% and 3% of the total bumblebee population. Five most common species, B. lucorum, B. terrestris, B. lapidarius, B. pascuorum, and B. hypnorum, are found at locations of the most noted categories of habitats. One of the main factors affecting the diversity of morphoecological groups of bumblebees in urban conditions is the state of floral resources. (e bumblebees are observed feeding on more than 60 plant species of the families Asteraceae, Fabaceae, Lamiaceae, Rosaceae, and Salicaceae in urban environment; however, the insects favored plants of 30 species. (e ornamental, ruderal, and some invasive species of plants are significant in bumblebees’ feeding in urban conditions. (e resources for bumblebee feeding and sustainable density of nesting sites are rich in quality and quantity only at a few of model urban sites. At these territories, the highest species diversity of bumblebee is recorded, including rare, protected, and vulnerable species. (e ecological potential of other studied urban sites is enough to sustain the most ecologically plastic bumblebee species. 1. Introduction bumblebee species because there are different plant asso- ciations providing successions of nesting habitats and (ere are almost 250 species of bumblebees worldwide, 42 of flowering plants [9, 17, 19–22]. However, the increasing which are found in Ukraine [1, 2]. (ese insects are very human impact forces the decrease of bumblebee species ecologically and economically important as the main pol- diversity [11, 16, 21, 23, 24]. linators of wild angiosperms and many food crops [3, 4]. In the course of evolution, bees adapted to collecting, Populations of many bumblebee species have drastically feeding, and transporting flower nectar and pollen using declined worldwide, particularly at Western Europe [5–11]. various functional morphological structures [24–27]. (e (us, 24% of the European species of bumblebees are proboscis, comprised of the maxillae and labium, serves to protected by the European Red List of Bees, and the density extract nectar from flowers [28] and affects flower choice of 46% of species declines [12]. [29]. (erefore, this morphological structure, in particular (e main reasons of the falling diversity of bumblebees the length of the tongue (� glossa), determines the depth and are thought to be the habitat losses and the decreasing the rate from which a bumblebee can obtain nectar [29]. density and diversity of plants [4–7, 10, 13–18]. Urban green Correlations between the depth of flowers visited by bees areas, such as parks, botanical gardens, remnants of natural and their tongue lengths have been reported frequently landscapes, green backyards, etc., can sustain various [26, 28–32]. Consequently, this morphological character can 2 Psyche: A Journal of Entomology predict the plant species that will be visited by a particular park, Babi Yar park, Sovki, M. M. Gryshko National Bo- bee. For example, “long-tongued” bumblebees are special- tanical Garden (GNBG), and Dnipro River islands; in ized to flowers with elongated corollae [32]. “Short-tongued” 2015—(eofania park, Nyvky park, Svyatoshins`kii forest bumblebees usually feed on flowers with shallow corollae; park, Vinogradar residential area, Teremki-1 residential also they can gnaw through walls of flowers with deep area, Lysa Hora regional landscape park, Peremoha park, corollae [32–34]. (e bumblebees with short and medium and Partizans`koi Slavy park; in 2016—(eofania park, length of tongues change environment by using various Nyvky park, KPI park, Teremki-1 residential area, Peremoha feeding resources [5, 24, 35, 36]. Based on this information, park, Partizans`koi Slavy park, and Dnipro River islands; in some studies have shown that diversity of bumblebee 2017—M. M. Gryshko National Botanical Garden, Lysa communities (including indicated parameter “ tongue Hora regional landscape park, Teremki-1 residential area, length”) is increasing with plant species enrichment and Vinogradar residential area. (e data obtained from [6, 14, 31, 37]. roadsides (five points: 17–21, Figure 1) are grouped into the In Ukraine, the bumblebee diversity was researched in “Roadsides” (Figure 2). some cities: Lviv, Lutsk, Ternopil, Uzhhorod, and Chernivtsi [38]. However, it was not studied in one of the largest cities of Ukraine, Kyiv. Nevertheless, Lebedev [39] in year 1933 2.2.FunctionalGroupsofBumblebees. (e functional (length conducted a survey of bumblebee diversity and specifics of of tongue) specifics were taken from [30, 31, 33, 34, 45–49]. ecology at the territory of Kyiv and surroundings. In that (e bumblebee species were collated by the length of tongue publication, the composition of wild bees in general and of (Table 2) into three functional morphoecological groups their host plants is given with the sampling locations in Kyiv with short (6–8 mm), medium (8-9 mm), and long tongues region. Findings of a number of bumblebee species were also (9 mm). Kleptoparasites species belong to the group of reported by Muzychenko [40, 41] and Nevkryta [42, 43]. “short-tongue” species. (e aim of the present work was to study the species composition of bumblebees in Kyiv, their density at different types of model urban habitats, their trophic relationships, 2.3. Sample Collection. Collection of samples and observa- and specifics of community structure by the morphoeco- tions were conducted according to Pesenko [50]: at each site, logical character “length of tongue.” 100 m2 of transect was chosen to analyze the composition of angiosperms and bumblebee species. Bees were collected by 2. Material and Methods net, while visiting flowers. (e visited plants and their bo- tanical family membership were recorded. 2.1. Study Area. (e city of Kyiv (the capital of Ukraine, its Individual specimens of workers and males’ castes, that geographical coordinates are 50°27′N, 30°31′E) is located in are impossible to identify in the field, were caught, eutha- the north of Ukraine, on the border of Polissya and the nized with ethyl acetate, and brought to the laboratory for forest-steppe zone. (e area of Kyiv within the adminis- species determination. Bumblebees were determined to trative boundaries reaches 836 km2. (e city’s built-up land species following by Løken, Edwards, and Jenner is 364.0 km2, and 115.0 km2 of which are under residential [45, 47, 48, 51]. (e female, male, and worker specimens of and public buildings. A significant amount of land is oc- rare species, including those protected by the Red Data Book cupied by industrial facilities—56.0 km2, objects of transport of Ukraine [52] were caught, identified immediately after and communication—22.0 km2. Most of the city lies on the that, and released (B. argillaceus, B. muscorum, B. sylvestris, high right bank of the Dnipro—the Kyiv plateau cut by a and several workers of C. pascuorum and B. hypnorum). thick net of ravines. (e smallest part is on the lower left As in other studies, Bombus terrestris L. workers have bank of the Dnipro [44]. been included in the B. lucorum worker totals since the two Study was conducted at 21 sampling locations divided species are not readily distinguishable in the field and have into several categories (urban parks, botanical gardens, close ecological preferences [5, 22, 26, 51, 53–55]. residential areas, remnants of natural landscapes, islands of the Dnipro River, and roadsides) in various districts of Kyiv from 2012 to 2017 (Figure 1, Table 1). 2.4. Statistical Analysis. (e relative density of bumblebees Some of the study locations were chosen in protected was calculated as the percentage of specimens of certain areas (such as M. M. Gryshko National Botanical Garden, species to all specimens in sample. (eofania, and Lysa Hora). Rarefaction curves for each collection site show the (e sites were visited during the hours of high bum- diversity detected compared with the predicted diversity for blebee activity and only under good weather conditions. this site. (e x-axis represents

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