Convergent evolution is when organisms from different evolutionary lines are exposed to similar conditions of survival over a long period of time and adapt in a similar way.
In the case of New Guinea's poisonous birds and the South American poison dart frogs, their common ancestor dates a long way back – around 300 million years. They also both have relatives without the trait. And mutations in these species have occurred in the same parts of sodium channels in skeletal muscle, but they are not identical.
Thus, the new research demonstrates that their resistance to Batrachtoxin has arisen in similar ways, but independently.
Other examples of convergent evolution include the shapes of sharks and dolphins or the similarity between human eyes and those of octopuses.
"So, it was natural to investigate whether the birds had mutations in the same genes. Interestingly enough, the answer is yes and no. The birds have mutations in the area that regulates sodium channels, and which we expect gives them this ability to tolerate the toxin, but not in the exact same places as the frogs," says Kasun Bodawatta.
He adds: "Finding these mutations that can reduce the binding affinity of Batrathotoxin in poisonous birds in similar places as in poison dart frogs, is quite cool. And it showed that in order to adapt to this Batrachotoxin lifestyle, you need some sort of adaptation in these sodium channels".
Therefore, these studies of the birds establish that while their neurotoxin is similar to that of the South American poison dart frogs, the birds developed their resistance and ability to carry it in the bodies independently of the frogs. This is an example of what biologists refer to as convergent evolution.
Applicability despite basic research
This basic research will primarily contribute to a better understanding of New Guinea’s birds and how different animal species not only acquire a resistance to toxins but use them as a defense mechanism.
Other aspects of the research have the potential to help ordinary people. The toxin conquered by the birds over time is closely related to other toxins, such as the one responsible for shellfish poisoning.
"Obviously, we are in no position to claim that this research has uncovered the holy grail of shellfish poisoning or similar poisonings, but as far as basic research, it is a small piece of a puzzle that can help explain how these toxins work in cells and in the body. And, how the bodies of certain animals have evolved to tolerate them," says Knud Jønsson.