Honeybee Pollination

Honeybee Pollination

We recently discussed that honeybees can make on-the-fly decisions individually and that they can also make group decisions by communicating with one another. Another important aspect of these remarkable insects is their role in honeybee pollination.

The flowers of various types of plants produce nectar. What is the purpose of nectar? Nectar is actually made up of two substances that are essential for plants—sugar and water. Flowers that produce nectar do so not for their direct benefit but to attract pollinators. Many plants depend on the wind to carry their pollen from one flower to another. However, this method is not very efficient because it requires a lot of pollen to fill the air, causing problems for allergy sufferers, while only a small amount will reach the intended target. A more efficient way to pollinate flowers is to attract pollinators, such as honeybees, to visit and collect pollen, either intentionally or accidentally.

Honeybees have pollen baskets on their legs to collect pollen for their use. Pollen contains protein, vitamins, minerals, and even fat, which benefits honeybees. But even more important is the nectar that honeybees use to produce honey. They accidentally collect pollen because their fuzzy bodies brush against the flower’s stamens. Honeybees even attract pollen without touching the stamens. The motion of the bees makes them positively charged, while the flowers have a negative charge, and static electricity pulls grains of pollen onto the bees’ fuzzy bodies. Honeybee pollination takes place when the bees visit another flower and deposit pollen on the sticky stamen. Ninety percent of the time, a honeybee will visit the same species of flower, which is helpful because pollen from one species would not aid a flower of a different species.

The bottom line is that 80% of the world’s most important crop plants are pollinated by insects. Two-thirds of North American crops depend on insects for pollination, and honeybees are the most vital pollinators for crops in North America. Honeybees are another part of the beautifully designed system that makes life possible in the world God created.

— Roland Earnst © 2026

Hummingbird Tongues

Hummingbird Tongues
Outside of my window in the summertime, I have a hummingbird feeder. It is a real distraction because I am just a few feet from birds that flap their wings up to 90 times a second and have a heart rate of 1200 beats per minute. As I watch them stick their beaks into the feeder, I can sometimes see their tongues. I assumed that hummingbird tongues suck up the fluid using capillary action. My friend Richard Hoyt informed me that I was over-simplifying the process and gave me an article to expose my ignorance.

The article tells of the work of Alejandro Rico-Guevara. He realized that capillary action wouldn’t work in sugar solutions above 40%, but some of the liquids consumed by hummingbirds are twice that level of concentration. Rico-Guevara has photographed hummingbird tongues as they get the nectar. Instead of drawing in the liquid, the hummingbird has tubes down the side of the tongue. When it reaches the nectar, the tongue pulls back, and those tubes zip closed carrying the nectar back into the beak.

Ornithologists still don’t understand how swallowing can take place once the nectar is in the beak. Because hummingbird tongues are so efficient, there are many uses of this process in industry. Fluid traps are the newest thing in fluid dynamics, and the Creator already had this complex device built into one of nature’s most amazing creatures. My old idea that the tongue was a capillary tube was much too limited.

To read the article click here.
–John N. Clayton © 2018