Consumption of Citric Acid by Bees Promotes the Gland Development and Enhances Royal Jelly Quality

Author:

Wang Xue1,Ji Quanzhi12,Zheng Xing1ORCID,Zhang Jun3,Wang Rongshen4,Wang Xinyu1,Peng Wenjun1,Guo Jun3,Zhao Yazhou1

Affiliation:

1. State Key Laboratory of Resource Insects, Institute of Apicultural Research, Chinese Academy of Agricultural Sciences, Beijing 100093, China

2. College of Bee Science, Fujian Agriculture and Forestry University, Fuzhou 350000, China

3. Faculty of Life Science and Technology, Kunming University of Science and Technology, Kunming 650500, China

4. Shijiazhuang Animal Disease Prevention and Control Center, Shijiazhuang 050026, China

Abstract

The glands of bees are responsible for generating and secreting various biologically active substances that significantly impact bee physiological health and adaptability. This study aimed to investigate the effects of adding citric acid (CA) to bee feed on gland development and royal jelly quality. By formulating feed with varying proportions of CA, evaluation was undertaken of pollen feeding by honeybees under laboratory conditions, along with the impact of CA on the development of major glands, to determine suitable addition proportions. Further optimization of the CA proportion involved feeding colonies and evaluating royal jelly production and quality. The results indicated that feed containing 0.75% CA significantly extended the lifespan of bees and increased their pollen consumption. Gland development in bees showed a positive correlation with CA addition within the range of 0.25% to 0.75%, especially at 0.50% and 0.75%, which notably accelerated the development of mandibular, hypopharyngeal, and cephalic salivary glands, with active proliferation and differentiation of glandular cells and maintenance of normal gland size and morphology. CA added to feed stimulated vigorous secretion of wax glands in worker bees, resulting in prolific wax construction. Colonies consuming feed containing 0.50% CA produced royal jelly with significantly reduced moisture and total sugar content and increased levels of 10-HDA, total phenolic acids, total proteins, and acidity. These findings demonstrate that CA consumption significantly prolongs bee lifespan, increases consumption, promotes gland development, and enhances royal jelly quality. This research provides theoretical guidance for beekeeping practices and feed development, contributing to the sustainable advancement of apiculture.

Funder

China Agriculture Research System-Bee

Science and Technology Innovation Project of Chinese Academy of Agricultural Sciences

Publisher

MDPI AG

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