Honey bees dance faster for pollen that complements colony essential fatty acid deficiency

Honey bee colonies require adequate pollen for maintenance and growth. Pollens vary in nutritional value, and a balanced diet is achieved by mixing pollens with complementary essential nutrients. We tested subjective evaluation of pollens by foragers in colonies deprived of one of two essential fatt...

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Published in:Behavioral ecology and sociobiology Vol. 71; no. 12; pp. 1 - 11
Main Authors: Zarchin, Shlomi, Dag, Arnon, Salomon, Mor, Hendriksma, Harmen P., Shafir, Sharoni
Format: Journal Article
Language:English
Published: Berlin/Heidelberg Springer 01-12-2017
Springer Berlin Heidelberg
Springer Nature B.V
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Abstract Honey bee colonies require adequate pollen for maintenance and growth. Pollens vary in nutritional value, and a balanced diet is achieved by mixing pollens with complementary essential nutrients. We tested subjective evaluation of pollens by foragers in colonies deprived of one of two essential fatty acids (eFAs), alpha-linolenic acid (omega-3) or linoleic acid (omega-6). We used four pollens, two rich in omega-3 and two rich in omega-6. A colony in an observation hive was allowed to forage for 2-5 days on a single pollen source. The following day, we repeatedly presented one of three pollens: the same pollen that the bees had been collecting the previous days, a novel pollen that was similarly deficient in omega-3 or omega-6, and a novel pollen that complemented their eFA deficiency. We measured the rate of waggle dances, which reflects on the strength of recruitment effort, of foragers returning to the observation hive from each of the pollens. Dance rates did not differ between the four pollens, but they were the highest to the "complementary" pollen and the lowest to the "same" pollen. Furthermore, this effect was greater for pollen combinations with greater eFA disparity between the same and the complementary pollens. Our findings support the ability of bees to balance colony eFA intake. Conditioning of the proboscis extension response (PER) tests showed that pollen foragers discriminated well between the four pollen odors, but the mechanisms by which bees assess pollen eFA composition remain to be elucidated. Differential dancing would recruit foragers to pollens that balance colony nutritional needs.
AbstractList Honey bee colonies require adequate pollen for maintenance and growth. Pollens vary in nutritional value, and a balanced diet is achieved by mixing pollens with complementary essential nutrients. We tested subjective evaluation of pollens by foragers in colonies deprived of one of two essential fatty acids (eFAs), alpha-linolenic acid (omega-3) or linoleic acid (omega-6). We used four pollens, two rich in omega-3 and two rich in omega-6. A colony in an observation hive was allowed to forage for 2–5 days on a single pollen source. The following day, we repeatedly presented one of three pollens: the same pollen that the bees had been collecting the previous days, a novel pollen that was similarly deficient in omega-3 or omega-6, and a novel pollen that complemented their eFA deficiency. We measured the rate of waggle dances, which reflects on the strength of recruitment effort, of foragers returning to the observation hive from each of the pollens. Dance rates did not differ between the four pollens, but they were the highest to the “complementary” pollen and the lowest to the “same” pollen. Furthermore, this effect was greater for pollen combinations with greater eFA disparity between the same and the complementary pollens. Our findings support the ability of bees to balance colony eFA intake. Conditioning of the proboscis extension response (PER) tests showed that pollen foragers discriminated well between the four pollen odors, but the mechanisms by which bees assess pollen eFA composition remain to be elucidated. Differential dancing would recruit foragers to pollens that balance colony nutritional needs.Significance statementHoney bee foragers use dance communication to recruit nestmates to floral sources, with higher dance rates representing greater subjective evaluation of the floral source by the dancer. We fed colonies for a few days with a single pollen source, which was poor in one eFA (omega-3 or omega-6) and rich in the other. We then recorded the dances of foragers that collected each of the three pollens: the same pollen that the bees had been collecting the previous days, a novel pollen that was similarly deficient in omega-3 or omega-6, and a novel pollen that complemented their eFA deficiency. Dance rates were the highest to the “complementary” pollen and the lowest to the “same” pollen, showing that a colony could differentially recruit foragers to pollens that balance its nutritional needs.
Honey bee colonies require adequate pollen for maintenance and growth. Pollens vary in nutritional value, and a balanced diet is achieved by mixing pollens with complementary essential nutrients. We tested subjective evaluation of pollens by foragers in colonies deprived of one of two essential fatty acids (eFAs), alpha-linolenic acid (omega-3) or linoleic acid (omega-6). We used four pollens, two rich in omega-3 and two rich in omega-6. A colony in an observation hive was allowed to forage for 2–5 days on a single pollen source. The following day, we repeatedly presented one of three pollens: the same pollen that the bees had been collecting the previous days, a novel pollen that was similarly deficient in omega-3 or omega-6, and a novel pollen that complemented their eFA deficiency. We measured the rate of waggle dances, which reflects on the strength of recruitment effort, of foragers returning to the observation hive from each of the pollens. Dance rates did not differ between the four pollens, but they were the highest to the “complementary” pollen and the lowest to the “same” pollen. Furthermore, this effect was greater for pollen combinations with greater eFA disparity between the same and the complementary pollens. Our findings support the ability of bees to balance colony eFA intake. Conditioning of the proboscis extension response (PER) tests showed that pollen foragers discriminated well between the four pollen odors, but the mechanisms by which bees assess pollen eFA composition remain to be elucidated. Differential dancing would recruit foragers to pollens that balance colony nutritional needs. Significance statement Honey bee foragers use dance communication to recruit nestmates to floral sources, with higher dance rates representing greater subjective evaluation of the floral source by the dancer. We fed colonies for a few days with a single pollen source, which was poor in one eFA (omega-3 or omega-6) and rich in the other. We then recorded the dances of foragers that collected each of the three pollens: the same pollen that the bees had been collecting the previous days, a novel pollen that was similarly deficient in omega-3 or omega-6, and a novel pollen that complemented their eFA deficiency. Dance rates were the highest to the “complementary” pollen and the lowest to the “same” pollen, showing that a colony could differentially recruit foragers to pollens that balance its nutritional needs.
Honey bee colonies require adequate pollen for maintenance and growth. Pollens vary in nutritional value, and a balanced diet is achieved by mixing pollens with complementary essential nutrients. We tested subjective evaluation of pollens by foragers in colonies deprived of one of two essential fatty acids (eFAs), alpha-linolenic acid (omega-3) or linoleic acid (omega-6). We used four pollens, two rich in omega-3 and two rich in omega-6. A colony in an observation hive was allowed to forage for 2-5 days on a single pollen source. The following day, we repeatedly presented one of three pollens: the same pollen that the bees had been collecting the previous days, a novel pollen that was similarly deficient in omega-3 or omega-6, and a novel pollen that complemented their eFA deficiency. We measured the rate of waggle dances, which reflects on the strength of recruitment effort, of foragers returning to the observation hive from each of the pollens. Dance rates did not differ between the four pollens, but they were the highest to the "complementary" pollen and the lowest to the "same" pollen. Furthermore, this effect was greater for pollen combinations with greater eFA disparity between the same and the complementary pollens. Our findings support the ability of bees to balance colony eFA intake. Conditioning of the proboscis extension response (PER) tests showed that pollen foragers discriminated well between the four pollen odors, but the mechanisms by which bees assess pollen eFA composition remain to be elucidated. Differential dancing would recruit foragers to pollens that balance colony nutritional needs.
ArticleNumber 172
Author Dag, Arnon
Shafir, Sharoni
Zarchin, Shlomi
Salomon, Mor
Hendriksma, Harmen P.
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  givenname: Sharoni
  surname: Shafir
  fullname: Shafir, Sharoni
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Issue 12
Keywords Social insects
Nutrient balancing
Choice
Waggle dance
PER
Language English
LinkModel DirectLink
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ORCID 0000-0002-9068-1078
PQID 1962125047
PQPubID 54055
PageCount 11
ParticipantIDs proquest_journals_1962125047
crossref_primary_10_1007_s00265_017_2394_1
springer_journals_10_1007_s00265_017_2394_1
jstor_primary_44857262
PublicationCentury 2000
PublicationDate 2017-12-01
PublicationDateYYYYMMDD 2017-12-01
PublicationDate_xml – month: 12
  year: 2017
  text: 2017-12-01
  day: 01
PublicationDecade 2010
PublicationPlace Berlin/Heidelberg
PublicationPlace_xml – name: Berlin/Heidelberg
– name: Heidelberg
PublicationTitle Behavioral ecology and sociobiology
PublicationTitleAbbrev Behav Ecol Sociobiol
PublicationYear 2017
Publisher Springer
Springer Berlin Heidelberg
Springer Nature B.V
Publisher_xml – name: Springer
– name: Springer Berlin Heidelberg
– name: Springer Nature B.V
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Snippet Honey bee colonies require adequate pollen for maintenance and growth. Pollens vary in nutritional value, and a balanced diet is achieved by mixing pollens...
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SubjectTerms Animal behavior
Animal Ecology
Bees
Behavioral Sciences
Biomedical and Life Sciences
Colonies
Dance
Essential nutrients
Fatty acids
Forage
Foraging behavior
Honey
Life Sciences
Linoleic acid
Linolenic acid
Nutrients
Nutritive value
Odors
Original Article
Pollen
Proboscis
Recruitment
Zoology
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Title Honey bees dance faster for pollen that complements colony essential fatty acid deficiency
URI https://www.jstor.org/stable/44857262
https://link.springer.com/article/10.1007/s00265-017-2394-1
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