Native bees pollinate tomato flowers and increase fruit production
DOI:
https://doi.org/10.26786/1920-7603(2013)4Abstract
The tomato plant has a specific relationship with native pollinators because the form of its flowers is adapted to buzz pollination carried out by some pollen-gatherer bees that vibrate their indirect flight muscles to obtain that floral resource. The absence and the low density of these bees in tomato fields can lead to pollination deficits for crop. The aim of this study is to demonstrate that open tomato flowers, probably visited by native pollinator, have greater pollen load on their stigma than unvisited flowers. Another objective is to show that this great pollen load increases fruit production. We selected crops of the Italian tomato cultivar in areas of the State of Goiás, Brazil. Thirty seven plants of three crops each had one inflorescence bagged in the field. Bagged and non-bagged flowers had their stigmas collected and the amount of pollen on their surfaces was quantified. For the comparison of fruit production, we monitored bagged and not-bagged inflorescences and after 40 days, their fruits were counted, weighed, measured and had their seeds counted. The amount of pollen grains on the stigma of flowers available to pollinators was higher than that on the stigma of bagged flowers. On average, fruit production was larger in not-bagged inflorescences than in bagged inflorescences. In addition, not-bagged flowers produced heavier fruits than did bagged flowers. There was a significant difference in the number of seeds between treatments, with significantly more seeds in the non-bagged fruit. Our results show that native bees buzz-pollinate tomato flowers, increasing the pollen load on their stigma and consequently fruit production and quality.
References
Bezerra ELS, Machado IC (2003) Biologia floral e sistema de polinização de Solanum stramonifolium Jacq. (Solanaceae) em remanescente de mata atlântica, Pernambuco. Acta botanica brasiliense 17(2): 247-257. DOI: https://doi.org/10.1590/S0102-33062003000200007
Bispo dos Santos SA, Roselino AC, Hrncir M, Bego LR (2009) Pollination of tomatoes by the stingless bee Melipona quadrifasciata and the honey bee Apis mellifera (Hymenoptera, Apidae). Genetics and Molecular Research 8(2): 751-757. DOI: https://doi.org/10.4238/vol8-2kerr015
Burkart A, Lunau K, Schlindwein C (2011) Comparative bioacoustical studies on flight and buzzing of neotropical bees. Journal of Pollination Ecology 6:118-124. DOI: https://doi.org/10.26786/1920-7603(2011)17
Centrais de Abastecimento - CEASA/GO – Histórico de Preços de Mercadorias e Produtos. URL: http://www.ceasa.goias.gov.br (accessed April 2013)
Chetelat RT, Pertuzé RA, Faúndez L, Graham EB, Jones CM (2009) Distribution, ecology and reproductive biology of wild tomatoes and related nightshades from the Atacama Desert region of northern Chile. Euphytica 167:77-93 DOI: https://doi.org/10.1007/s10681-008-9863-6
Dafni A, Pacini E, Nepi M (2005) Pollen and stigma biology. In: Dafni, A., Kevan, P., Husband, B., editors. Practical Pollination Biology. Ontario: Enviroquest Ltd. pp 83-142.
Delaplane KS, Mayer DF (2000) Crop Pollination by Bees. Cambridge: Cabi.CABI DOI: https://doi.org/10.1079/9780851994482.0000
De Marco P, Coelho FM (2004) Services performed by the ecosystem: forest remnants influence agricultural cultures’ pollination and production. Biodiversity and Conservation 13:1245-1255. DOI: https://doi.org/10.1023/B:BIOC.0000019402.51193.e8
Free JB (1993). Insect Pollination of Crops. Academic Press London.
Giannini TC, Acosta AL, Garófalo CA, Saraiva AM, Alves dos Santos I, Imperatriz-Fonseca VL (2012) Pollination services at risk: bee habitats will decrease owing to climate change in Brazil. Ecological Modelling 244:127-131. DOI: https://doi.org/10.1016/j.ecolmodel.2012.06.035
Greenleaf SS, Kremen C (2006a) Wild bee species increase tomato production and respond differently to surrounding land use in Northern California. Biological Conservation 13, 81-87. DOI: https://doi.org/10.1016/j.biocon.2006.05.025
Greenleaf SS, Kremen C (2006b) Wild bees enhance honey bees’ pollination of hybrid sunflower. Proceedings of the National Academy of Sciences 103:13890–13895 DOI: https://doi.org/10.1073/pnas.0600929103
Harter B, Leistikow C, Wilms W, Truylio B, Engels W (2002). Bees collecting pollen from flowers with poricidal anthers in a south Brazilian Araucaria forest: a community study. Journal of Apicultural Research 40 (1-2): 9:16. DOI: https://doi.org/10.1080/00218839.2002.11101063
Hogendoorn K, Gross CL, Sedgley M, Keller MA (2006). Increased tomato yield through pollination by native Australian Amegilla chlorocyanea (Hymenoptera: Anthophoridae). Journal of Economic Entomology 99(3):829-833. DOI: https://doi.org/10.1093/jee/99.3.828
Holzschuh A, Steffan-Dewenter I, Tscharntke T (2008). Agricultural landscapes with organic crops support higher pollinator diversity. Oikos 117: 354–361. DOI: https://doi.org/10.1111/j.2007.0030-1299.16303.x
Kevan PG, Gadawski RM, Kevan SD, Gadawski SE (1983). Pollination of cranberries, Vaccinium macrocarpon, on cultivated marshes in Ontario. Proceedings of the Entomological Society of Ontario 114:45-53.
Kevan PG, Clark AE, Thomas VG (1990). Insect pollinators and sustainable agriculture. American Journal of Alternative Agriculture 5:1322 DOI: https://doi.org/10.1017/S0889189300003179
Kevan PG, Straver WA, Offer M, Laverty TM (1991). Pollination of greenhouse tomatoes by bumblebees in Ontario. Proceedings of the Entomological Society of Ontario 122:15–19.
Kevan PG (1999). Pollinators as bioindicators of the state of the environment: species, activity and diversity. Agriculture, Ecosystems & Environment 74: 373-393. DOI: https://doi.org/10.1016/B978-0-444-50019-9.50021-2
Klein AM, Steffan-Dewenter I, Tscharntke T (2003). Fruit set of highland coffee increases with the diversity of pollinating bees. Proceeding Royal Society London B. 270:955–961. DOI: https://doi.org/10.1098/rspb.2002.2306
Klein AM, Vaissière B, Cane JH, Steffan-Dewenter I, Cunningham SA, Kremen C, Tscharntke T (2007). Importance of crop pollinators in changing landscapes for world crops. Proceeding Royal Society London B, Biological Sciences 274, 303-313. DOI: https://doi.org/10.1098/rspb.2006.3721
Kremen C, Ullman KS, Thorp RW (2011) Evaluating the Quality of Citizen-Scientist Data on Pollinator Communities. Conservation Biology 25: 607-617. DOI: https://doi.org/10.1111/j.1523-1739.2011.01657.x
Macias-Macias O, Chuc J, Ancona-Xiu P, Cauich O, Quezada-Euán JJG (2009) Contribution of native bees and Africanized honey bees (Hymenoptera:Apoidea) to Solanaceae crop pollination in tropical México. Journal of Applied Entomology 133(6). DOI: https://doi.org/10.1111/j.1439-0418.2009.01399.x
Malagodi-Braga KS, Kleinert AMP (2007) How bee behavior on strawberry flower (Fragaria ananassa Duchesne) can influence fruit development? Bioscience Journal 23(1): 76-81.
Montemor KA, Malerbo-Souza DT (2009) Biodiversidade de polinizadores e biologia floral em cultura de berinjela (Solanum melongena). Zootecnia Tropical 27: 97-103.
Morandin LA, Laverty TM, Kevan PG (2001a) Bumble bee (Hymenoptera: Apidae) activity and pollination levels in commercial tomato greenhouses. Journal of Economic Entomology 94(2): 462-467. DOI: https://doi.org/10.1603/0022-0493-94.2.462
Morandin LA, Laverty TM, Kevan PG (2001b) Effect of bumble bee (Hymenoptera: Apidae) pollination intensity on the quality of greenhouse tomatoes. Journal of Economic Entomology 94(1): 172-179. DOI: https://doi.org/10.1603/0022-0493-94.1.172
Morandin LA, Winston ML (2005) Wild bee abundance and seed production in conventional, organic, and genetically modified canola. Ecological Applications 15:871–881. DOI: https://doi.org/10.1890/03-5271
Murcia C (1996) Forest fragmentation and the pollination of neotropical plants. In: Schelhas, Greenberg R (Eds). Forest patches in tropical landscapes. Island Press, Washington, D.C., USA
Olmstead RG, Palmer JD (1997) Implications for the phylogeny, classification and biogeography of Solanum from cpDNA restriction site variation. Systematic Botany 22:19–29. DOI: https://doi.org/10.2307/2419675
Palma G, Quezada-Euán JJG, Reyes-Oregel V, Meléndez V, Moo-Valle H (2008) Production of greenhouse tomatoes (Lycopersicon esculentum) using Nannotrigona perilampoides, Bombus impatiens and mechanical vibration (Hymenoptera: Apoidea). Journal of Applied Entomology 132: 79–85. DOI: https://doi.org/10.1111/j.1439-0418.2007.01246.x
Paran I, van der Knaap E (2007) Genetic and molecular regulation of fruit and plant domestication traits in tomato and pepper. Journal of Experimental Botany 58:3841–3852 DOI: https://doi.org/10.1093/jxb/erm257
Raw A (2000) Foraging behaviour of wild bees at hot pepper flowers (Capsicum annuum) and its possible infuence on cross pollination. Annals of Botany 85: 487-492. DOI: https://doi.org/10.1006/anbo.1999.1090
Santos AB, Nascimento F S (2011) Diversidade de visitantes florais e potenciais polinizadores de Solanum lycopersicum (Linnaeus) (Solanales: Solanaceae) em cultivos orgânicos e convencionais. Neotropical Biology and Conservation 6(3):162-169. DOI: https://doi.org/10.4013/nbc.2011.63.03
Spears EE (1983) A direct measure of pollinator effectiveness. Oecologia 57: 196-199. DOI: https://doi.org/10.1007/BF00379581
Tanksley SD (2004) The genetic, developmental, and molecular basis of fruit size and shape variation in tomato. The Plant Cell 16:181-189. DOI: https://doi.org/10.1105/tpc.018119
Teppner H (2005) Pollinators of tomato, Solanum lycopersicum (Solanaceae), in. Central Europe. Phyton 45(2): 217.
Van der Valk H, Koomen I, Nocelli RCF, Ribeiro MF, Freitas BM, Carvalho SM, Kasina, Martins DJ, Maina G, Ngaruiya P, Gikungu M, Mutiso MN, Odhiambo C, Kinuthia W, Kipyab P, Blacquiera T, van der Steen J, Roessink I, Wassenberg J, Gemmill-Herren B (2013). Aspect determining the risk of pesticides to wild bees: Risk profiles for focal crops on three continents. Food and Agriculture Organization of the United Nations, Romes.
Vergara CH, Fonseca-Buendía P (2012) Pollination of greenhouse tomatoes by the Mexican bumblebee Bombus ephippiatus (Hymenoptera: Apidae). Journal Pollination Ecology 7:27–30. DOI: https://doi.org/10.26786/1920-7603(2012)1
Winfree R, Williams NM, Dushoff J, Kremen C (2007) Native bees provide insurance against ongoing honey bee losses. Ecology Letters 10 (11):1105–1113. DOI: https://doi.org/10.1111/j.1461-0248.2007.01110.x
Winfree R, Williams NM, Gaines H, Ascher JS, Kremen C (2007) Wild bee pollinators provide the majority of crop visitation across land-use gradients in New Jersey and Pennsylvania, USA. Journal of Applied Ecology 45:793–802. DOI: https://doi.org/10.1111/j.1365-2664.2007.01418.x
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Copyright (c) 2013 Edivani Villaron Franceschinelli, Carlos Melo Silva Neto, Flaviana Gomes Lima, Bruno Bastos Gonçalves, Leonardo Lima Bergamini, Barbara Araújo Ribeiro Bergamini, Marcos Antônio Elias

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