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Beekeeping in Parts of the Levant Region

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Asian Beekeeping in the 21st Century

Abstract

Beekeeping in the Levant region, a historical geographic area that lies east of the Mediterranean Sea and now comprises several countries, has a very long and colorful apiculture history. In ancient times, bees were revered by humans. They have been included in hieroglyphic writings and were often found associated with royalty. A variety of Apis mellifera subspecies currently persist in the Levant region. Historically and presently, these bees have been tended by beekeepers using an assortment of ancient and modern home types. This relationship has allowed humans to reap the benefits of bees including honey, wax, and other valuable products, in addition to pollination services. Some of the subspecies in the region now appear to be locally adapted to harsh environmental conditions and may warrant conservation. Today, genetic introgression among subspecies, as well as the purchase of queens from outside of the region may facilitate the transmission of novel diseases to susceptible colonies and to new geographic regions. Preserving natural honey bee genetic assemblages across the region may prove beneficial not only from a conservation standpoint, but also from an evolutionary and ecological one, when considering the value of locally adapted traits, stable community structure, and species diversity. The reverence for this majestic creature may need to be rekindled if we are to continue to tend honey bees for the economic benefits they provide to our society. Otherwise, they may continue to decline in abundance, perhaps as a result of a disease, movement induced by humans, migration, queen importation, and a myriad of additional disruptive anthropogenic factors that negatively impact their health and welfare.

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References

  • Abass A, Shaher K, Al-Jorany R (2010) The abandance of American foul broad Paenibacillus larvae and European foul broad Melissococcus pluton on the honey bees colonies in the middle of Iraq. Al-Anbar J Agric Sci 8(4):425–437. (In Arabic)

    Google Scholar 

  • Abd Al-Wahed F (1985) Iraq civilization. Al Horia Publ. House

    Google Scholar 

  • Abu-Irmaileh B (2000) Weeds of cultivated fields. Publication of Jordan University, Deanship of Research

    Google Scholar 

  • Adjlane N, Doumandji SE, Haddad N (2012) Situation de l’apiculture en Algerie: facteurs menacant la survie des colonies d’abeilles locales Apis mellifera intermissa. Cah Agric 21:235–241

    Google Scholar 

  • Aizen MA, Garibaldi LA, Cunningham SA et al (2009) How much does agriculture depend on pollinators? Lessons from long-term trends in crop production. Ann Bot 103:1579–1588. https://doi.org/10.1093/aob/mcp076

    Article  PubMed  PubMed Central  Google Scholar 

  • Al-Abbadi A, Ghabeish I, Hassawi D (2014) Molecular detection of three viral diseases in honeybees (Apis mellifera L.) colonies infested with mite (Varroa destructor) in Jordan. J Biol Sci 14:446–451

    Article  CAS  Google Scholar 

  • Albaba I (2010) Status of bee keeping in Palestine. A paper presented at the first Arab countries conference on honey bee viral diseases, Amman–Jordan, 10–15 Oct 2010

    Google Scholar 

  • Alburaki M, Moulin S, Legout H et al (2011) Mitochondrial structure of Eastern honeybee populations from Syria, Lebanon and Iraq. Apidologie 42(5):628–641

    Article  CAS  Google Scholar 

  • Alburaki M, Bertrand B, Legout H et al (2013) A fifth major genetic group among honeybees revealed in Syria. BMC Genet 14:117

    Article  PubMed  PubMed Central  Google Scholar 

  • Al-Eisawi D (1998) Field guide to wild flowers of Jordan and neighbouring countries. Jordan Press Foundation “Al Rai”, Amman (In Arabic)

    Google Scholar 

  • Al-Ghamdi A, Adgaba N, Tadesse Y, Getachew A, Al-Maktary AA (2016) Comparative study on the dynamics and performances of Apis mellifera jemenitica and improved hybrid honeybee colonies in southwestern Saudi Arabia. Saudi J Biol Sci 24:1086–1093

    Article  Google Scholar 

  • Al-Ghzawi A, Zaitoun S, Mazary S et al (2006) Diversity of bees (Hymenoptera, Apiformes) in extensive orchards in the highlands of Jordan. Arxius de Miscel-lània Zoològica 4:42–48

    Google Scholar 

  • Al-Ghzawi A, Zaiyoun S, Shannag H (2009) Incidence and geographical distribution of honeybee (Apis mellifera L.) pests in Jordan. Ann Soc Entomol Fr (N.S.) 45(3):305–308

    Article  Google Scholar 

  • Alhissnawi M (2016) Spatial analysis of honeybee keeping and its products in the middle Euphrates governorates. Dissertation, Kufa University of Iraq

    Google Scholar 

  • Amer K (2015) Livestock annual report. Ministry of Agriculture, Jordan

    Google Scholar 

  • Amr SZ, Shehada SE, Abo-Shehada M et al (1998) Honeybee parasitic arthropods in Jordan. Apiacta 3:78–82

    Google Scholar 

  • AOAD (Arab Organization for Agricultural Development) (1995) Questionnaire of Arab Organization for Agricultural Development on the present and constrains of Beekeeping. Khartoum, Sudan (In Arabic)

    Google Scholar 

  • AOAD (Arab Organization for Agricultural Development) (1996) Technical report about the crawling honey bees in Iraq. Khartoum, Sudan (In Arabic)

    Google Scholar 

  • Banaszak J, Krzysztofiak A (1996) The natural wild bee resources (Apoidea, Hymenoptera) of the Wigry National Park. Pol Pismo Ent 65:33–51

    Google Scholar 

  • Bendahou N, Bournias M, Fleche C (1997) Acute toxicity of cypermethrin and fenitrothion on honeybees (Apis mellifera mellifera), according to age, formulations, and (chronic paralysis virus)/insecticide interaction. J Environ Biol 18:55–65

    CAS  Google Scholar 

  • Berthoud H, Imdorf A, Haueter H et al (2010) Virus infections and winter losses of honey bee colonies (Apis mellifera). J Apic Res 49(1):60–65

    Article  Google Scholar 

  • Bezabih G, Adgaba N, Hepburn HR, Pirk CWW (2014) The territorial invasion of Apis florea in Africa. Afr Entomol 22:888–890

    Article  Google Scholar 

  • Blum R (1956) The bees in the Near East. Proc Int Beekeep Congr, Apimondia Wien 16:28

    Google Scholar 

  • Bodenheimer S, Ben-Nerya A (1937) One–year study on the biology of the honeybee in Palestine. Ann Appl Biol 24:385–403

    Article  Google Scholar 

  • Brittain C, Williams N, Kremen C et al (2013) Synergistic effects of non-Apis bees and honey bees for pollination services. Proc R Soc B 280(1754):21212767. https://doi.org/10.1098/rspb.2012.2767

    Article  Google Scholar 

  • CBSSYR (2011) Poultry, beehives and boxes silk warms (2006–2010). 2011 Yearbook, Ch. 4. http://www.cbssyr.sy/yearbook/2011/Chapter4-EN.htm. Accessed 1 June 2017

  • Cheesman E (1920) Report on the mammals of mesopotamia. J Bombay Nat Hist Soc 27:323–346

    Google Scholar 

  • Cox-Foster DL, Conlan S, Holmes EC et al (2007) A metagenomic survey of microbes in honeybee colony collapse disorder. Science 318:283–287

    Article  CAS  PubMed  Google Scholar 

  • Dainat B, Evans JD, Chen YP et al (2012) Dead or alive: deformed wing virus and Varroa destructor reduce the lifespan of winter honeybees. Appl Environ Microbiol 78:981–987

    Article  CAS  PubMed  PubMed Central  Google Scholar 

  • de Miranda J, Cornman RS, Evans JD et al (2015) Genome characterization, prevalence and distribution of a Macula-like virus from Apis mellifera and Varroa destructor. Viruses 7(7):3586–3602

    Article  CAS  PubMed  PubMed Central  Google Scholar 

  • Desneuz NA, Decourtye A, Delpuech JM (2007) The sub lethal effects of pesticides on beneficial arthropods. Annu Rev Entomol 52:81–106

    Article  CAS  Google Scholar 

  • Duwwara M, Saa’b R, Taki K (2015) Study of reality of honey beekeeping and it’s economic feasibility in Sweida governorate, South Syria. Jordan J Agric Sci 11(3):827–838

    Google Scholar 

  • El-Obeid D (2015) Beekeeping course. Lebanese University Faculty of Agriculture and Veterinary Science, LU-Press

    Google Scholar 

  • Faucon JP (2002) Honey bee winter mortality in France in 1999 and 2000. Bee World 83:14–23

    Article  Google Scholar 

  • Franck P, Garnery L, Solignac M, Cornuet JM (2000) Molecular confirmation of a fourth lineage in honey beesfrom Near East. Apidologie 31:167–180

    Article  CAS  Google Scholar 

  • Franck P, Garnery L, Louiseau A, Oldroyd BP, Hepburn HR, Solignac CM, Cornu JM (2001) Genetic diversity of the honeybee in Africa: microsatellite and mitochondrial data. Heredity 86:420–430

    Article  CAS  PubMed  Google Scholar 

  • Ftayeh A, Meixner M, Fuchs S (1994) Morphometrical investigation in Syrian honeybees. Apidologie 25(4):396–401

    Article  Google Scholar 

  • Glaiim MK (1992) First definitive record of Apis florea in Iraq. Beekeep Dev 24:3

    Google Scholar 

  • Glaiim K (2009) Hunting behavior of the Oriental hornet, Vespa orientalis L., and defense behavior of the honey bee, Apis mellifera L. in Iraq. Bull Iraq Nat Hist Mus 10:17–30

    Google Scholar 

  • Glaiim MK (2010) On the common sharp decline in honey bee, Apis mellifera L., activity occurring during parts of summer and fall in central and southern Iraq, with a particular reference to the role of bee-eaters, Merops spp. J Kerbala Univ (Iraq) 8(1):244–268

    Google Scholar 

  • Glaiim K (2014) Occurrence and status of bee-eaters, Merops spp. (Coraciiformes: Meropidae), and their attacks on honey bee colonies in Kerbala Province, Iraq. J Apic Res 53(4):478–488

    Article  Google Scholar 

  • Haddad N (2011a) Bee losses and colony collapse disorder in the Middle East. Uludag Bee J 11(1):17–24

    Google Scholar 

  • Haddad N (2011b) Climatic changes and Jordanian food security. Aldastoor Press and Publishing House, Jordan. (In Arabic)

    Google Scholar 

  • Haddad N (2015) Mitochondrial genome of the Levant Region honeybee, Apis mellifera syriaca (Hymenoptera: Apidae). Mitochondrial DNA 27(6):4067–4068

    Article  CAS  PubMed  Google Scholar 

  • Haddad N (2016) Detection of honeybee viruses in samples from the Levant region. Annual Report of National Center for Agricultural Research and Extension Annual report of the year 2015

    Google Scholar 

  • Haddad N, Albaba I (2014) Example of some Middle East and North African countries quarantine requirements for the import of honey bees. In: Wolfgang (ed) The Bee health and veterinarians. Examples of regional and national regulations. Chapter 3. 24. – Standards and regulations. OIE, pp 285–289

    Google Scholar 

  • Haddad N, Fuchs S (2004) Honeybee agrobiodiversity: a project in conservation of Apis mellifera syriaca in Jordan. Uludag Bee J 2:166–120

    Google Scholar 

  • Haddad N, Dvořák L, Adwan O et al (2007) New data on Vespid wasp fauna of Jordan (H. Vespidae). Linzer Biol Beitr 39(1):137–142

    Google Scholar 

  • Haddad N, Brake M, Migdadi H et al (2008a) First detection of honeybee viruses in Jordan by RT-PCR. Jordan J Agric Sci 4(3):242–247

    Google Scholar 

  • Haddad N, De Miranda J, Batainh A (2008b) The discovery of Apis florea in Jordan. J Apic Res 47(2):172–173

    Article  Google Scholar 

  • Haddad N, Meixner MD, Fuchs S et al (2009a) Mitochondrial DNA support for genetic reserves of Apis mellifera syriaca in Jordan. J Apic Res Bee World 48(1):19–22

    Article  Google Scholar 

  • Haddad N, Fuchs S, Hepburn HR et al (2009b) Apis florea in Jordan: source of the founder population. Apidologie 40(4):508–512

    Article  Google Scholar 

  • Haddad N, Bataeneh A, Albaba I et al (2009c) Status of colony losses in the Middle East. Paper presented at in the 41st Apimondia Cong, Montpellier, France, 15–20 Sept 2009

    Google Scholar 

  • Haddad N, Adjlane N, Loucif-Ayad W et al (2015a) Presence and infestation rate of Senotainia tricuspis (Meigen) (Diptera, Sarcophagidae) on honey bees in the Mediterranean Region. J Apic Res 54(2):121–122

    Article  Google Scholar 

  • Haddad N, Al-tellawi A, Adjlane N et al (2015b) Diagnosis of Paenibacillus larvae honeybees disease in Jordan using microbiological and chemicals techniques. Asian J Anim Sci 9(6):318–329

    Article  CAS  Google Scholar 

  • Haddad N, Batainh MA, Migdadi SO et al (2015c) Next generation sequencing of Apis mellifera syriaca identifies genes for Varroa resistance and beneficial bee keeping traits. Insect Sci 23(4):579–590. https://doi.org/10.1111/1744-7917.12205

    Article  CAS  PubMed  Google Scholar 

  • Haddad N, Batainh A, Saini D et al (2016) Evaluation of Apis mellifera syriaca Levant region honeybee conservation using comparative genome hybridization. Genetica 144:279–287

    Article  CAS  PubMed  Google Scholar 

  • Haddad NJ, Noureddine A, Al-Shagour B et al (2017) Distribution and variability of deformed wing virus of honeybees (Apis mellifera) in the Middle East and North Africa. Insect Sci 24(1):103–113. https://doi.org/10.1111/1744-7917.12277

    Article  PubMed  Google Scholar 

  • Hatoom A (1996) Senotainia tricuspis a parasite at Syrian honey bees. Paper presented at The First Inter Arab Apic Cong, American University of Beirut, Lebanon, 17–20 Aug 1996

    Google Scholar 

  • Heithaus E (1974) The role of plant-pollinator interactions in determining community structure. Ann Mo Bot Gard 61:675–691

    Article  Google Scholar 

  • Henry M et al (2012) A common pesticide decreases foraging success and survival in honey bees. Science 336:348–350

    Article  CAS  PubMed  Google Scholar 

  • Hepburn HR, Radloff SE (1998) Honeybees of Africa. Springer, Berlin

    Book  Google Scholar 

  • Hermani H (ed) (2012). Social insects, vol 1. Elsevier

    Google Scholar 

  • Higes M, Martín-Hernández M, Garrido-Bailón E et al (2009) Honeybee colony collapse due to Nosema ceranae in professional apiaries. Environ Microbiol Rep 1:110–113. https://doi.org/10.1111/j.1758-2229.2009.00014.x

    Article  PubMed  Google Scholar 

  • Hussein MH (2000) A review of beekeeping in Arab countries, 2nd edn. Al-Rehab Press, Assiut, Egypt, 641 p (Arabic)

    Google Scholar 

  • Hussein MH (2012) Beekeeping in Arab countries. Al-Rehab Press, Assiut

    Google Scholar 

  • Kadamani S (2015) A picture of Lebanese beekeeping, development strategies for Lebanese and Mediterranean beekeeping. Beirut, Lebanon. (In Arabic)

    Google Scholar 

  • Kalman C (1973) Our formally very aggressive bee. Proc Int Beekeep Congr Apimondia Burkarest 24:306–307

    Google Scholar 

  • Kence M, Oskay D, Giray T et al (2013) Honeybee colonies from different races show variation in defenses against the varroa mite in a ‘common garden’. Entomol Exp Appl 149(1):36–43

    Article  Google Scholar 

  • Kramer SN (1988) History begins at Sumer. University of Pennsylvania Press, Philadelphia

    Google Scholar 

  • Lee K, Steinhauer N, Rennichet K et al (2015) A national survey of managed honey bee 2013–2014 annual colony losses in the USA. Apidologie 46(3):292–305

    Article  Google Scholar 

  • Lobell DB, Schlenker W, Costa-Roberts J (2011) Climate trends and global crop production since 1980. Science 333(6042):616–620

    Article  CAS  PubMed  Google Scholar 

  • Lord WG, Nagi SK (1987) Apis florea discovered in Africa. Bee World 68:39–40

    Article  Google Scholar 

  • Mazar A, Namdar D, Panitz-Cohen N et al (2008) The iron age beehives at Tel Rehov in the Jordan Valley. Antiquity 82:629–639

    Article  Google Scholar 

  • Mogga JB, Ruttner F (1988) Apis florea in Africa: source of the founder population. Bee World 69:100–103

    Article  Google Scholar 

  • Moritz R, Haddad N, Bataieneh A et al (2010) Invasion of the dwarf honeybee Apis florea into the near East. Biol Invasions 12:1093–1099

    Article  Google Scholar 

  • Nazer I, Rateb M (1991) Status of honey bee diseases and pests in Jordan. In: Ritter W (ed) Proceedings of the international symposium on recent research on bee pathology, Ghent, 5–7 Sept 1990. Rijksstation voor Neematologie en Entomologie on behalf of Apimondia; Merelbeke, Belgium, pp 210–212

    Google Scholar 

  • Neumann P, Carreck NL (2010) Honey bee colony losses. J Apic Res 49(1):1–6. https://doi.org/10.3896/IBRA.1.49.1.01s

    Article  Google Scholar 

  • O’toole C (1993) Diversity of native bees and agroecosystems. In: LaSalle J, Gauld ID (eds) Hymenoptera and biodiversity. Cab International, Wallingford, pp 169–195

    Google Scholar 

  • OIE (2009) World Animal Health Information Database—Version: 1.4. World Animal Health Information Database. Paris, France: World Organization for Animal Health. http://www.oie.int. Accessed 1 June 2017

  • OJEU (2013) Official Journal of the European Union—Commission Implementing Regulation (EU) 485/2013 139:12–23

    Google Scholar 

  • Özkan A, Gharleko M, Özden B, Kandemir I (2009) Multivariate morphometric study on Apis florea distributed in Iran. Turk J Zool 33:93–102

    Google Scholar 

  • Palmer MR, Smith DR, Kaftanoglu O (2000) Turkish honey bees: genetic variation and evidence for a fourth lineage of Apis mellifera mtDNA J. Heredity 91:42–46

    Article  CAS  Google Scholar 

  • PCBS (2014) Palestinian Central Bureau of Statistics-Announces the main results for Livestock Survey. http://www.pcbs.gov.ps. Accessed 1 June 2017

  • Pirk CWW, Human H, Crewe RM, vanEnglesdorp D (2014) A survey of managed honeybee colony losses in the Republic of South Africa—2009 to 2011. J Apic Res 53(1):35–42

    Article  Google Scholar 

  • Ransome HM (2004) The sacred bee in ancient times and folklore. The Hebrew and the Mohammedens. Dover Publications, pp 65–74

    Google Scholar 

  • Richards KW (1996) Comparative efficacy of bee species for pollination of legume seed crops. In: Matheson A, Buchmann S, O’Toole C, Westrich P, Williams IH (eds) The conservation of bees. Academic, London, pp 81–103

    Google Scholar 

  • Ruttner F (1988) Biogeography and taxonomy of honeybees. Springer, Berlin

    Book  Google Scholar 

  • Ruttner F, Tassencourt L, Louveaux J (1978) Biometrical-statistical analysis of the geographic variability of Apis mellifera. Apidologie 9:363–381

    Article  Google Scholar 

  • Saeed MS (2013) Selecting the best periods of spring, summer, and autumn months to use the wet and dry grafting method when queen rearing honeybees Apis mellifera L. (Apidae Hymenoptera) by Doolittle method for honey bee hives in the Ninevah region. J Tikrit Univ Agric Sci 13(2):329–335

    Google Scholar 

  • Sivaram V (2004) Apiculture development in Iraq. Paper presented at the 7th Asian apicultural association conference and 10th BEENET symposium and technofora, University of Philippines Los Banos, 20–22 Feb 2004

    Google Scholar 

  • Slabezki Y, Efrat H, Dag A, Kamer Y, Yakobson BA, Mozes-Koch R, Gerson U (2000) The effect of honey bee tracheal mite infestation on colony development and honey yield of Buckfast and Italian honey bee strains in Israel. Am Bee J 140(3):231–235

    Google Scholar 

  • Smith DR, Slaymaker A, Palmer M, Kaftanoglu O (1997) Turkish honey bees belong to the east Mediterranean mitochondrial lineage. Apidologie 28:269–274

    Article  CAS  Google Scholar 

  • Soroker V et al (2009) Colony losses in Israel: incidence of viral infection and beehive populations. Paper presented at the 41st Apimondia Congress, Montpellier, France, 15–20 Sept 2009

    Google Scholar 

  • VanEngelsdorp D, Underwood R, Caron D et al (2007) An estimate of managed colony losses in the winter of 2006-2007: a report commissioned by the apiary inspectors of America. Am Bee J 147:599–603

    Google Scholar 

  • VanEngelsdorp D, Frazier M, Frazier J et al (2009) Colony collapse disorder: a descriptive study. PLoS One 4:e6481. https://doi.org/10.1371/journal.pone.0006481

    Article  PubMed  PubMed Central  CAS  Google Scholar 

  • Wallberg A, Han F, Wellhagen G et al (2014) Worldwide survey of genome sequence variation provides insight into the evolutionary history of the honeybee Apis mellifera. Nat Genet 46:1081–1088

    Article  CAS  PubMed  Google Scholar 

  • Whitfield CW, Behura SK, Berlocher SH, Clark AG, Johnston JS, Sheppard WS, Smith DR, Suarez AV, Weaver D, Tsutsui ND (2006) Thrice out of Africa: ancient and recent expansions of the honey bee, Apis mellifera. Science 314:642–645

    Article  CAS  PubMed  Google Scholar 

  • Williams NM, Crone EE, Roulston TH, Minckley RL, Packer L, Potts SG (2010) Ecological and life-history traits predict bee responses to environmental disturbances. Biol Cons 143:2280–2291

    Article  Google Scholar 

  • Winston ML (1991) The biology of the honey bee. Harvard Univ Press, Cambridge, MA

    Google Scholar 

  • Zaitoun ST, AL-Ghzawi A-M, Shannag HK (2000) Population dynamics of the Syrian honeybee, Apis mellifera syriaca, under semi-arid Mediterranean conditions. Zool Middle East 21:129–132

    Article  Google Scholar 

  • Zakour M, Ehrhdardt K, Bienefeld K (2012) First estimate of genetic parameters for the Syrian honey bee Apis mellifera syriaca. Apidologie 43:600–607

    Article  Google Scholar 

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Haddad, N., Horth, L. (2018). Beekeeping in Parts of the Levant Region. In: Chantawannakul, P., Williams, G., Neumann, P. (eds) Asian Beekeeping in the 21st Century. Springer, Singapore. https://doi.org/10.1007/978-981-10-8222-1_3

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