Add BrightSurf on Google Email

Dr. Orlova explores how bumble bee queens coordinate chemical signals

08.31.26 | SUNY Polytechnic Institute
SAMSUNG T9 Portable SSD 2TB

SAMSUNG T9 Portable SSD 2TB transfers large imagery and model outputs quickly between field laptops, lab workstations, and secure archives.


New research by SUNY Polytechnic Institute (SUNY Poly) Assistant Professor of Biology Dr. Margarita Orlova is providing new insight into how bumble bee queens communicate through chemical signals and how those signals change throughout their lives.

Orlova collaborated with Dr. Etya Amsalem of Penn State University on the paper, “ A Common Regulatory Architecture Shapes Queen Chemical Signals Across Multiple Exocrine Sites ,” published in the Journal of Chemical Ecology .

Insects use chemicals produced by different glands and other sites throughout their bodies to communicate information such as identity, health, and reproductive status. While these chemical sources are typically studied individually, Orlova and Amsalem examined whether changes occurring across different sites within the same insect may actually be coordinated.

The researchers studied bumble bee queens across three key life stages: newly emerged unmated queens, young queens beginning to establish colonies, and older queens raising new queens and males. They analyzed chemical secretions from multiple sites to determine how their composition changed as queens aged and transitioned into reproduction.

The study found coordinated chemical changes across multiple sites as the queens aged. Among the most notable findings, older queens produced shorter hydrocarbons and esters, while several other components of their chemical profiles also changed with mating, age, and reproductive status. These patterns suggest that chemical signals produced in different parts of the body may be influenced by shared biological processes rather than operating independently.

The findings provide a broader perspective on insect chemical communication, suggesting that examining a bee's combined chemical profile may reveal more biologically meaningful information than studying individual glands in isolation. The research also opens opportunities for further study into the physiological mechanisms that coordinate these signals and how chemical communication has evolved across different insect species.

Journal of Chemical Ecology

10.1007/s10886-026-01750-2

Observational study

Animals

A Common Regulatory Architecture Shapes Queen Chemical Signals Across Multiple Exocrine Sites

14-Aug-2026

The authors declare no competing interests.

Keywords

Article Information

Contact Information

Matthew Sheiffer
Research Foundation for the State University of New York
matthew.sheiffer@rfsuny.org
Joseph Abraham
SUNY Polytechnic Institute
communications@sunypoly.edu

Source

This article is based on a news release from SUNY Polytechnic Institute. BrightSurf curates and republishes science news from research institutions worldwide; the original release is linked below.

How to Cite This Article

APA:
SUNY Polytechnic Institute. (2026, August 31). Dr. Orlova explores how bumble bee queens coordinate chemical signals. Brightsurf News. https://www.brightsurf.com/news/12DQ9RX1/dr-orlova-explores-how-bumble-bee-queens-coordinate-chemical-signals.html
MLA:
"Dr. Orlova explores how bumble bee queens coordinate chemical signals." Brightsurf News, Aug. 31 2026, https://www.brightsurf.com/news/12DQ9RX1/dr-orlova-explores-how-bumble-bee-queens-coordinate-chemical-signals.html.