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Tracking invasive species? Follow the people
By Marlowe HOOD
Paris (AFP) June 12, 2017


Scientists capture, suspend individual cells in tiny drops of gel
(UPI) Jun 12, 2017 - A new method for isolating cells promises to prolong the amount of time scientists can study individual cells in the lab.

Currently, only way to study individual cells is to cultivate and capture them in microgels, tiny hydrogel droplets. Unfortunately, most cells escape from the droplets within a few days.

In order to study the biochemical mechanics of disease -- as well as the promise of new drug and stem cell therapies -- researchers need to monitor individual cells for longer periods of time.

Researchers at the University of Twente in the Netherlands decided to take a closer look at escaping cells and found most were located near the edges of the hydrogel droplets. The scientists developed a chip capable of trapping individual cells in the exact center of the drops of hydrogel.

The new method allowed scientists to keep single cells alive and isolated for as many as 28 days.

Water-based polymers like hydrogels mimic natural tissue, making them an ideal medium in which to study cell cultures. Researchers can use the isolated cells to test new drug therapies or observe the biomechanics of disease.

In addition to improving cell-capturing techniques, researchers showed stem cells can encourage the transformation into different specialized cell types by altering the composition of the microgel.

As reported in the new study -- published in the journal Small -- the hydrogel droplets can be used as building blocks for the construction of more complex synthetic tissue -- tissue that could be used to conduct different types of experiments or employed in implant devices.

Islands and populated coastal areas are the world's "hotspots" for invasive species, which can upend entire ecosystems and drive local animals and plants to extinction, a study reported Monday.

The first global census of non-native fauna and flora found the highest concentrations in Hawaii, New Zealand's North Island, and the Lesser Sunda Islands of Indonesia.

The 50th US state is beset with alien species -- including rats, feral pigs, and the firetree, which crowds out indigenous plants -- in each of eight categories that include reptiles, fish, ants, spiders, mammals and amphibians.

Disease-bearing mosquitos that arrived in the early 19th century have wiped out half the island chain's tropical birds, with several other species on the brink.

Florida is the top hotspot among mainland regions, boasting a rogues' gallery of invaders: walking catfish, giant iguanas, mammal-crushing pythons, and monster African land snails that gobble up native plants and carry a parasite that causes meningitis in humans.

The California coast and northern Australia are also rife with uninvited guests.

The new map of intruder species points unmistakably to how they got there, said Wayne Dawson, a biologist at Durham University in northeastern England and lead author of the study published in Nature Ecology and Evolution.

"We have shown that regions with higher human population density, and greater wealth, have more established alien species," he told AFP.

Not all living things that take root in foreign soils or waters cause harm.

But those that do are among the main drivers -- along with habitat loss, hunting for food, pollution and climate change -- of wildlife decline around the world, experts say.

Creatures that have evolved in isolation may find themselves helpless against unfamiliar predators or pathogens.

Forests in Guam are eerily silent, for example, because the brown tree snake has devoured most of the island's birds (or their eggs) over the last half century.

Newcomers often marginalise native species: Asian carp now dominate some US rivers, grey squirrels have replaced red ones in London parks, and kudzu (aka Japanese arrowroot) -- a perennial vine introduced to the US 150 years ago as an ornamental bush -- has crowded out many plants.

- Altered ecosystems -

Benign or not, the overwhelming majority of invasive species are brought to new places by humans.

Sometimes it happens on purpose, for pest control. But attempts to engineer nature can backfire.

Plantation owners in Hawaii imported mongooses to eat the rats that had infested sugar cane fields. But rats are nocturnal, and thus continued to thrive. The diurnal mongooses ate ground-nesting birds instead.

More often, invasive critters spread by hitching rides with cargo. The deadly Asian hornet is thought to have landed in Europe a dozen years ago in a shipment of pottery from China.

Ballast water in cargo ships pumped in and out of huge tanks to keep vessels balanced is also a major conduit, transporting thousands of aquatic species -- including bacteria and viruses -- unnoticed across the globe every day.

Under the terms of an international treaty going into effect in September, all big ships will be required to have equipment to treat their ballast water.

"We are arguably creating a new 'Pangaea'," said Dawson, referring to the super-continent that joined most of Earth's land masses some 335 million years ago.

"The consequences of such a virtual continent are profound: the creation of novel communities with mixtures of species from around the world, altered ecosystems, and extinctions of some species," he told AFP.

There are also financial impacts.

A study led by French scientists, published last year, concluded that invasive insects alone cause at least $77 billion (69 billion euros) in damage every year, a figure they described as a "gross underestimate".

For the new study, Dawson and an international team of two dozen researchers looked at data on invasive species across 186 islands and more than 400 mainland regions.

The Centre for Agriculture and Biosciences International has catalogued more than 8,000 invasive species, though the true figure is no doubt higher, he said.

FLORA AND FAUNA
Dogs and wolves have an innate sense of inequity
Washington (UPI) Jun 8, 2017
Humans and primates have a finely tuned sense of inequity. New research suggests dogs and wolves also possess a sense of fairness - or lack there of. Previously, researchers have hypothesized dogs gained a sense of inequity through domestication. But the latest study - published in the journal Current Biology - shows the sense is equally strong in dogs and wolves, suggesting a sense ... read more

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