Abstract

Simple SummaryBumblebees and honeybees are well known as the dominant and most important pollinators in natural and agricultural ecosystems. The quality characteristics of their colonies depend greatly on the reproductive ability/quality of the parents (queens and drones). Male bees, despite their exclusive reproductive role and ability to determine colony quality, have been less considered than female bees, especially bumblebees. We reviewed the current studies on environmental factors and inherent characteristics that affect the mating success and fecundity of male honeybees and bumblebees. Temperature, nutrients, pesticides, body size, weight and age affect reproduction in male bees and consequently the progeny colony quality. However, more studies, especially in male bumblebees, are still needed to address the impacts of these factors in detail to confront the requirements of agricultural pollination and declining wild bee pollinators worldwide.Bumblebees and honeybees are very important pollinators and play a vital role in agricultural and natural ecosystems. The quality of their colonies is determined by the queens and the reproductive drones of mother colonies, and mated drones transmit semen, including half of the genetic materials, to queens and enhance their fertility. Therefore, factors affecting drone fecundity will also directly affect progeny at the colony level. Here, we review environmental and bee-related factors that are closely related to drone reproductive ability. The environmental factors that mainly affect the sperm count and the viability of males include temperature, nutrients and pesticides. In addition, the inherent characteristics of male bees, such as body size, weight, age, seminal fluid proteins and proteins of the spermathecal fluid, contribute to mating success, sperm quality during long-term storage in the spermathecae and the reproductive behaviors of queens. Based on the results of previous studies, we also suggest that the effects of somatotype dimorphism in bumblebee males on sperm quality and queen fecundity and the indispensable and exploitable function of gland proteins in the fecundity of males and queens should be given more attention in further studies.

Highlights

  • A study of drones of twenty-one bumblebee species showed that male bumblebees tend to evolve larger body sizes in locations where rain occurs, mostly during summer, when the overall temperature is warmer [3]

  • An observation in our lab showed that males from the queenright colonies (QRCs) of B. terrestris have a distinctly larger body size than that produced by the workers

  • Body size is an important factor for breeding queens in both bumblebees and honeybees and should be given more attention in further research

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Summary

Reproductive Ability of Male Bees

Mating behavior is an aspect of the reproductive ability of male bees that influences the offspring of the colony. In B. terrestris, the ubiquitous and rather unspecific fatty acid linoleic acid composition of the male mating plug prevents females (queens) from further mating [24] Male characteristics such as age and weight influence the duration of copulation and mating success. In addition to mating behavior, sperm quality is a key factor influencing successful reproduction in bee colonies since semen will be stored for more than three years in the spermathecae of honeybee queens [1] and for several months in the spermathecae of bumblebee queens after insemination. Based on the species-specific characteristics of reproduction in bumblebees, more detailed and explicit studies on the influence of the nutrient dose, nutrient composition, nutrient ratio and feeding time point on drone quality attributes, such as the sperm count and viability, should be performed among different species in future research

Temperature
Pesticides
Body Size
Gland Proteins
Key Points
Findings
Further Research Directions
Full Text
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