Discovered in Lebanon, Oldest Mosquito Fossil Comes with a Bloodsucking Surprise

 An undated handout image of a view from above of the body of a fossilized male mosquito trapped in amber found in central Lebanon dating to about 130 million years ago. (Dany Azar/Handout via Reuters)
An undated handout image of a view from above of the body of a fossilized male mosquito trapped in amber found in central Lebanon dating to about 130 million years ago. (Dany Azar/Handout via Reuters)
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Discovered in Lebanon, Oldest Mosquito Fossil Comes with a Bloodsucking Surprise

 An undated handout image of a view from above of the body of a fossilized male mosquito trapped in amber found in central Lebanon dating to about 130 million years ago. (Dany Azar/Handout via Reuters)
An undated handout image of a view from above of the body of a fossilized male mosquito trapped in amber found in central Lebanon dating to about 130 million years ago. (Dany Azar/Handout via Reuters)

Hundreds of thousands of people worldwide are killed annually by malaria and other diseases spread through the bite of mosquitoes, insects that date back to the age of dinosaurs. All of these bites are inflicted by females, which possess specialized mouth anatomy that their male counterparts lack.

But it has not always been that way. Researchers said they have discovered the oldest-known fossils of mosquitoes - two males entombed in pieces of amber dating to 130 million years ago during the Cretaceous Period and found near the town of Hammana in Lebanon. To their surprise, the male mosquitoes possessed elongated piercing-sucking mouthparts seen now only in females.

"Clearly they were hematophagous," meaning blood-eaters, said paleontologist Dany Azar of the Chinese Academy of Sciences' Nanjing Institute of Geology and Paleontology and Lebanese University, lead author of the study published this week in the journal Current Biology. "So this discovery is a major one in the evolutionary history of mosquitoes."

The two fossilized mosquitoes, both representing the same extinct species, are similar in size and appearance to modern mosquitoes, though the mouthparts used for obtaining blood are shorter than in today's female mosquitoes.

"Mosquitoes are the most notorious blood-feeders on humans and most terrestrial vertebrates, and they transmit a certain number of parasites and diseases to their hosts," Azar said.

"Only fertilized female mosquitoes will suck blood, because they need proteins to make their eggs develop. Males and unfertilized females will eat some nectar from plants. And some males do not feed at all," Azar added.

Some flying insects - tsetse flies, for instance - have hematophagous males. But not modern mosquitoes.

"Finding this behavior in the Cretaceous is quite surprising," said paleontologist and study co-author André Nel of the National Museum of Natural History of Paris.

The delicate anatomy of the two mosquitoes was beautifully preserved in the fossils. Both displayed exceptionally sharp and triangle-shaped jaw anatomy and an elongated structure with tooth-like projections.

The researchers said they suspect that mosquitoes evolved from insects that did not consume blood. They hypothesize that the mouthparts that became adapted for obtaining blood meals originally were used to pierce plants to get access to nutritious fluids.

Plant evolution may have played a role in the feeding divergence between male and female mosquitoes. At the time when these two mosquitoes became stuck in tree sap that eventually became amber, flowering plants were beginning to flourish for the first time on the Cretaceous landscape.

"In all hematophagous insects, we believe that hematophagy was a shift from plant liquid sucking to bloodsucking," Azar said.

The fact that these earliest-known mosquitoes are bloodsucking males, Azar added, "means that originally the first mosquitoes were all hematophagous - no matter whether they were males or females - and hematophagy was later lost in males, maybe due to the appearance of flowering plants, which are contemporaneous with the formation of Lebanese amber."

Plenty of animals were present to provide blood meals: dinosaurs, flying reptiles called pterosaurs, other reptiles, birds and mammals.

The researchers said while these are the oldest fossils, mosquitoes probably originated millions of years earlier. They noted that molecular evidence suggests mosquitoes arose during the Jurassic Period, which ran from about 200 million to 145 million years ago.

There are more than 3,500 species of mosquitoes worldwide, found everywhere except Antarctica. Some become disease vectors transmitting malaria, yellow fever, Zika fever, dengue and other diseases. According to the World Health Organization, more than 400,000 people die annually from malaria - a parasitic infection - mostly children under age 5.

"On the other side, mosquitoes help to purify the water in ponds, lakes and rivers," Nel said. "In general, an animal can be a problem but also can be helpful."



Climate Change Causing More Change in Rainfall, Fiercer Typhoons, Scientists Say 

People and vehicles wade through the water along a street that was flooded by Typhoon Gaemi in Kaohsiung on July 25, 2024. (AFP)
People and vehicles wade through the water along a street that was flooded by Typhoon Gaemi in Kaohsiung on July 25, 2024. (AFP)
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Climate Change Causing More Change in Rainfall, Fiercer Typhoons, Scientists Say 

People and vehicles wade through the water along a street that was flooded by Typhoon Gaemi in Kaohsiung on July 25, 2024. (AFP)
People and vehicles wade through the water along a street that was flooded by Typhoon Gaemi in Kaohsiung on July 25, 2024. (AFP)

Climate change is driving changes in rainfall patterns across the world, scientists said in a paper published on Friday, which could also be intensifying typhoons and other tropical storms.

Taiwan, the Philippines and then China were lashed by the year's most powerful typhoon this week, with schools, businesses and financial markets shut as wind speeds surged up to 227 kph (141 mph). On China's eastern coast, hundreds of thousands of people were evacuated ahead of landfall on Thursday.

Stronger tropical storms are part of a wider phenomenon of weather extremes driven by higher temperatures, scientists say.

Researchers led by Zhang Wenxia at the China Academy of Sciences studied historical meteorological data and found about 75% of the world's land area had seen a rise in "precipitation variability" or wider swings between wet and dry weather.

Warming temperatures have enhanced the ability of the atmosphere to hold moisture, which is causing wider fluctuations in rainfall, the researchers said in a paper published by the Science journal.

"(Variability) has increased in most places, including Australia, which means rainier rain periods and drier dry periods," said Steven Sherwood, a scientist at the Climate Change Research Center at the University of New South Wales, who was not involved in the study.

"This is going to increase as global warming continues, enhancing the chances of droughts and/or floods."

FEWER, BUT MORE INTENSE, STORMS

Scientists believe that climate change is also reshaping the behavior of tropical storms, including typhoons, making them less frequent but more powerful.

"I believe higher water vapor in the atmosphere is the ultimate cause of all of these tendencies toward more extreme hydrologic phenomena," Sherwood told Reuters.

Typhoon Gaemi, which first made landfall in Taiwan on Wednesday, was the strongest to hit the island in eight years.

While it is difficult to attribute individual weather events to climate change, models predict that global warming makes typhoons stronger, said Sachie Kanada, a researcher at Japan's Nagoya University.

"In general, warmer sea surface temperature is a favorable condition for tropical cyclone development," she said.

In its "blue paper" on climate change published this month, China said the number of typhoons in the Northwest Pacific and South China Sea had declined significantly since the 1990s, but they were getting stronger.

Taiwan also said in its climate change report published in May that climate change was likely to reduce the overall number of typhoons in the region while making each one more intense.

The decrease in the number of typhoons is due to the uneven pattern of ocean warming, with temperatures rising faster in the western Pacific than the east, said Feng Xiangbo, a tropical cyclone research scientist at the University of Reading.

Water vapor capacity in the lower atmosphere is expected to rise by 7% for each 1 degree Celsius increase in temperatures, with tropical cyclone rainfall in the United States surging by as much as 40% for each single degree rise, he said.