Showing posts with label Costa Rica. Show all posts
Showing posts with label Costa Rica. Show all posts

Thursday, July 02, 2026

Scientists have discovered only a tiny fraction of living insect species, but up to as many as 20 million insect species may exist

Amazing stuff!

"... according to a new study ... Using statistical methods borrowed from another field, a team of entomologists estimates there may be as many as 20 million insect species on our planet—more than three times the previous estimate. ...

Scientists have long debated exactly how many insect species there are, with the previous consensus being about 6 million

Over the past 3 centuries, entomologists have described about 1 million insect species, but finding and describing them all would be a daunting—if not impossible—task. ...

To obtain an improved estimate of insect diversity, Colwell and colleagues studied years of data from insect surveys in Costa Rica’s Guanacaste National Park and applied statistical methods borrowed from epidemiology. The researchers started by taking a closer look at a subfamily of parasitoid wasps known as Microgastrinae, which infamously lay their eggs inside living caterpillars. These wasps are extremely well-studied: Scientists have described about 3000 species of Microgastrinae, many of which are found in Costa Rica. So, the team decided to test how well insect surveys within the park have captured the diversity of the wasps living there.

Over the past several years, scientists conducting surveys of flying insects in the park have identified 388 species of Microgastrinae within a core set of traps and 578 within an additional set. Independently, when scientists looked at caterpillars that had been parasitized within the park, they identified 889 wasp species.

However, when Colwell and his colleagues examined these data sets, they were surprised to find little overlap in the species captured with traps and by examining caterpillars. That mismatch showed both methods must only be tallying a fraction of the total number of Microgastrinae species within the park. To estimate that total, the researchers used a statistical method developed by epidemiologists to estimate the size of a population affected by a disease based on incomplete tallies of the ill—as if the true number of wasp species was like the true number of sick people in an outbreak. The approach indicated the park is home to a whopping 2394 Microgastrinae species. ..."

From the significance and abstract:
"Significance
For more than 40 y, entomologists have attempted to estimate the number of insect species on Earth, with the current consensus—the figure most experts accept—at about six million. Using genetic information (DNA barcodes) for 1.6 million individual tropical insects, a deep census of a highly diverse group of parasitoid wasps, and powerful statistical strategies, we conservatively estimate that the true number of insect species is at least 14 to 20 million—two to three times higher than current estimates. Already known to be the most diverse group of animals, a doubling or tripling of estimated insect diversity has profound implications for our understanding of the scale, richness, and future of biodiversity on Earth.

Abstract
Estimating the number of insect species on Earth is a daunting challenge. The current consensus estimate—about six million species—is likely far too low, as we will show.
Our estimate of the global number of insect species rests on a sample of more than 1,600,000 DNA-barcoded insect specimens representing 53,945 species from 15 “core” Malaise traps deployed in dry forest, cloud forest, and rainforest ecosystems of the Área de Conservación Guanacaste (ACG) in Costa Rica. Even this massive sample fails to reveal the full extent of ACG insect species richness. To estimate total ACG insect richness, we adjust the observed count of insect species by an “undersampling ratio,” computed for a hyperdiverse subfamily of parasitoid wasps (Braconidae: Microgastrinae).
The ratio compares microgastrine richness from the core Malaise traps to a lower-bound estimate of true microgastrine richness—including undetected species—based on 21,669 specimens from three sources: the 15 core Malaise traps, 15 “peripheral” Malaise traps spanning all three ecosystems, and 11,373 DNA-barcoded specimens reared from some 1,500 species of microgastrine-parasitized caterpillars (Lepidoptera).
To estimate global insect richness, we apply Earth/ACG ratios for tree species and several animal taxa to upscale our estimate of ACG insect richness (nearly 333,000 species). Adopting conservative assumptions, we reach an estimate of 14 to 20 million insect species on Earth, depending on the upscaling group—two to three times the current consensus estimates. Upscaling instead from a point estimate of ACG richness with a wide CI, global estimates reach nearly 30 million species."

Scientists have discovered only a tiny fraction of living insect species | Science | AAAS "About 1 million insect species have been described, but a new analysis suggests tens of millions more may be out there"

Tuesday, April 07, 2026

When nature calls, diverse tree-dwelling mammals seek out the same latrine

Amazing stuff!

"All animals, regardless of habitat, must heed the call of nature. But where do wild critters go when they need to go?

Some terrestrial animals do their business in communal latrines—more rugged versions of a public bathroom. These sites can serve as communication hubs among and between species and often play an important role in shaping local ecosystems. Raccoon latrines, for example, may create an “ecology of fear” that scares off other species at risk of dying from roundworm parasites in racoon poop.

Scientists know comparatively little, meanwhile, about the habits of animals that dwell in forest canopies. Learning more would involve scaling large trees, which presents a number of dangers for researchers. ...

set up a camera trap at one latrine... the camera captured visits from an astonishing 17 mammal species , including porcupines, coatis, and several monkeys. ..."

From the abstract:
"We report the discovery of arboreal multi-species mammal latrines in montane cloud forests of Costa Rica. We surveyed 169 trees from 29 species.
Canopy multi-species latrines were only found in 11 individuals of a single tree species, Ficus tuerckheimii. Camera traps recorded 17 mammal species and a total of 181 visits over 60 days, indicating that some vertebrates frequently visit canopy latrines.
Among the most notable visitors was the two-toed sloth (Choloepus hoffmanni), a species long documented to descend to the ground exclusively to defecate.
Our findings suggest that sloths may also use arboreal latrines, challenging a long-standing assumption in sloth ecology and raising new questions about the drivers of their defecation behavior.
As with terrestrial latrines, canopy latrines may also play a role in interspecific communication, provide spatial cues, and affect nutrient dynamics in forest canopies. All these aspects highlight the potentially important role that Ficus tuerckheimii might have in these interaction points."

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Fig. 1 Canopy latrine in Ficus tuerckheimii. (A) Location of the canopy latrine used for this study, 30 m above ground. The circle indicates the latrine's position at the main branch union. (B) Feces from multiple species at the latrine. ...