HymenopteraHalictidae – Sweat, Furrow, Nomiine, and Short-faced Bees

Dufourea monardae

This record describes Dufourea monardae (species). Recorded family: Halictidae. Recorded order: Hymenoptera.

Identification and Appearance

Dufourea monardae - Dufourea monardae
Contributed by John S. Ascher; Additional contributions by Beatriz Moisset , hg , PaleoJon , Nathaniel Green

Classification

Kingdom
Animalia
Phylum
Arthropoda
Class
Insecta
Order
Hymenoptera (Ants, Bees, Wasps and Sawflies)
Superfamily
Trigonaloidea
Family
Halictidae (Sweat, Furrow, Nomiine, and Short-faced Bees)
Subfamily
Rophitinae
Genus
Dufourea (Short-faced Bees)

Imported taxonomy record. Source availability varies; see the source references and editorial policy below.

Habitat and Range

Geographic Range

Wisconsin and Tennessee. Although maps show wider distribution. Discover Life Map

Seasonal Activity

July and August

Diet and Behavior

Diet: Recorded only on Monarda. The Hosts section on its Discover Life species page lists known floral associations based on specimen records and images.

Additional species information

Species notes from the sources

Etymology: Dufourea monardae (Viereck, 1924)

About Flies: the wider group

Order-level background for Hymenoptera, the group containing Dufourea monardae. Species-specific details appear above.

Group overview

Hymenoptera includes over 150,000 described species of ants, bees, wasps, and sawflies. Earth harbors approximately 20 quadrillion (20×10^15) ants, with a combined biomass of ~12 megatons of dry carbon - exceeding the combined biomass of all wild birds and mammals (PNAS, 2022).

Ecological role of the group

About 35% of the world's food crops depend on animal pollinators. The chocolate industry, valued at over $100 billion, depends on pollinating flies and midges. Ants are the dominant soil engineers in most terrestrial ecosystems, turning more soil than earthworms in many habitats.

Economic and practical significance of the group

Pollinators contribute $235-577 billion worth of annual global food production (FAO). In the U.S., bee pollination alone benefits crops valued at $18 billion annually, and honey bees are responsible for $5.4 billion in agricultural productivity. Between April 2023-2024, 55.1% of managed honey bee colonies were lost. The U.S. bee population dropped from 5 million to 2.5 million.

Recorded sources for this group: FAO, USDA, EPA, PNAS (2022), US Fish & Wildlife Service. Imported estimates may describe particular regions or reporting periods.

Explore Hymenoptera families and species →

Photos of Dufourea monardae (5)

Dufourea monardae - photo 1
Contributed by John S. Ascher; Additional contributions by Beatriz Moisset , hg , PaleoJon , Nathaniel Green
Dufourea monardae - photo 2
Contributed by John S. Ascher; Additional contributions by Beatriz Moisset , hg , PaleoJon , Nathaniel Green
Dufourea monardae - photo 3
Contributed by John S. Ascher; Additional contributions by Beatriz Moisset , hg , PaleoJon , Nathaniel Green
Dufourea monardae - photo 4
Contributed by John S. Ascher; Additional contributions by Beatriz Moisset , hg , PaleoJon , Nathaniel Green
Dufourea monardae - photo 5
Contributed by John S. Ascher; Additional contributions by Beatriz Moisset , hg , PaleoJon , Nathaniel Green

Photo credits: Contributed by John S. Ascher; Additional contributions by Beatriz Moisset , hg , PaleoJon , Nathaniel Green

Frequently Asked Questions About Dufourea monardae

How big is Dufourea monardae?
FeatureDetails
Female7 mm.
Male6-7 mm.
Where is Dufourea monardae found?

Range: Wisconsin and Tennessee. Although maps show wider distribution. Discover Life Map

What does Dufourea monardae eat?

The diet of the Dufourea monardae includes Recorded only on Monarda. The Hosts section on its Discover Life species page lists known floral associations based on specimen records and images..

When is Dufourea monardae active?

Dufourea monardae: seasonal activity - July and August.

How we use and review source data. Source count does not imply independent verification.

Photo credits: Contributed by John S. Ascher; Additional contributions by Beatriz Moisset , hg , PaleoJon , Nathaniel Green. Contributors retain copyright over their individual contributions.