What Is Biodiversity and How are We Protecting It?

The United Nations has declared Sunday to be the International Day for Biodiversity to raise awareness of the extinction risk facing animals and plants. Nearly a third of all species are now endangered due to human activities.

Later this year governments will meet to come up with a long-term plan to reverse the threat to life on Earth – in all its varieties – at the United Nations Biodiversity Conference in China.

What is biodiversity and why is it important?

Biodiversity is the variety of all life on Earth – animals, plants, fungi and micro-organisms like bacteria. Animals and plants provide humans with everything needed to survive – including fresh water, food, and medicines. However, we cannot get these benefits from individual species – we need a variety of animals and plants to be able to work together and thrive. In other words, we need biodiversity.

Plants are also very important for improving our physical environment – by cleaning the air we breathe, limiting rising temperatures and providing protection against climate change.

Mangrove swamps and coral reefs can act as a barrier to erosion from rising sea levels. And common trees found in cities such as the London plane or the tulip tree, are excellent at absorbing carbon dioxide and removing pollutants from the air.

How many species are at risk of extinction?

It is normal for species to evolve and become extinct over time – 98% of all species that have ever lived are now extinct. However, the extinction of species is now happening between 1,000 and 10,000 times more quickly than scientists would expect to see.

The International Union for Conservation of Nature (IUCN) has kept a “red list” of threatened species since 1964. More than 142,000 species have been assessed and 29% are considered endangered, which means they have a very high risk of extinction.

graphic showing how one in four species of those assessed by the IUCN Red List are at risk of extinction, including 40% of amphibians and 14% of birds
graphic showing how one in four species of those assessed by the IUCN Red List are at risk of extinction, including 40% of amphibians and 14% of birds

What are countries trying to agree in China?

It is hoped an agreement can be reached to stop what scientists are calling the “sixth mass extinction” event.

For many people living in towns and cities, wildlife is often something you watch on television. But the reality is that the air you breathe, the water you drink and the food you eat all ultimately rely on biodiversity. Some examples are obvious: without plants there would be no oxygen and without bees to pollinate there would be no fruit or nuts.

Others are less obvious – coral reefs and mangrove swamps provide invaluable protection from cyclones and tsunamis for those living on coasts, while trees can absorb air pollution in urban areas.

Others appear bizarre – tropical tortoises and spider monkeys seemingly have little to do with maintaining a stable climate. But the dense, hardwood trees that are most effective in removing carbon dioxide from the atmosphere rely on their seeds being dispersed by these large fruit-eaters.

When scientists explore each ecosystem, they find countless such interactions, all honed by millions of years of evolution. If undamaged, this produces a finely balanced, healthy system which contributes to a healthy sustainable planet.

The sheer richness of biodiversity also has human benefits. Many new medicines are harvested from nature, such as a fungi that grows on the fur of sloths and can fight cancer. Wild varieties of domesticated animals and crops are also crucial as some will have already solved the challenge of, for example, coping with drought or salty soils.

If money is a measure, the services provided by ecosystems are estimated to be worth trillions of dollars – double the world’s GDP. Biodiversity loss in Europe alone costs the continent about 3% of its GDP, or €450m (£400m), a year.

From an aesthetic point of view, every one of the millions of species is unique, a natural work of art that cannot be recreated once lost. “Each higher organism is richer in information than a Caravaggio painting, a Bach fugue, or any other great work,” wrote Prof Edward O Wilson, often called the “father of biodiversity”, in a seminal paper in 1985.

Just how diverse is biodiversity?

Mind-bogglingly diverse. The simplest aspect to consider is species. About 1.7 million species of animals, plants and fungi have been recorded, but there are likely to be 8-9 million and possibly up to 100 million. The heartland of biodiversity is the tropics, which teems with species. In 15 hectares (37 acres) of Borneo forest, for example, there are 700 species of tree – the same number as the whole of North America.

Recent work considering diversity at a genetic level has suggested that creatures thought to be a single species could in some cases actually be dozens. Then add in bacteria and viruses, and the number of distinct organisms may well be in the billions. A single spoonful of soil – which ultimately provides 90% of all food – contains 10,000 to 50,000 different types of bacteria. The concern is that many species are being lost before we are even aware of them, or the role they play in the circle of life.

How bad is it?

Very. The best studied creatures are the ones like us – large mammals. Tiger numbers, for example, have plunged by 97% in the last century. In many places, bigger animals have already been wiped out by humans – think dodos or woolly mammoths.

The extinction rate of species is now thought to be about 1,000 times higher than before humans dominated the planet, which may be even faster than the losses after a giant meteorite wiped out the dinosaurs 65m years ago. The sixth mass extinction in geological history has already begun, according to some scientists.

Lack of data means the “red list”, produced by the International Union for Conservation of Nature, has only assessed 5% of known species. But for the best known groups it finds many are threatened: 25% of mammals, 41% of amphibians and 13% of birds.

Species extinction provides a clear but narrow window on the destruction of biodiversity – it is the disappearance of the last member of a group that is by definition rare. But new studies are examining the drop in the total number of animals, capturing the plight of the world’s most common creatures.

The results are scary. Billions of individual populations have been lost all over the planet, with the number of animals living on Earth having plunged by half since 1970. Abandoning the normally sober tone of scientific papers, researchers call the massive loss of wildlife a “biological annihilation” representing a “frightening assault on the foundations of human civilisation”.

What about under the sea?

Humans may lack gills but that has not protected marine life. The situation is no better – and perhaps even less understood – in the two-thirds of the planet covered by oceans. Seafood is the critical source of protein for more than 2.5 billion people but rampant overfishing has caused catches to fall steadily since their peak in 1996 and now more than half the ocean is industrially fished.

What about bugs – don’t cockroaches survive anything?

More than 95% of known species lack a backbone – there are about as many species in the staphylinidae family of beetles alone as there are total vertebrates, such as mammals, fish and birds. Altogether, there are at least a million species of insect and another 300,000 spiders, molluscs and crustaceans.

But the recent revelation that 75% of flying insects were lost in the last 25 years in Germany – and likely elsewhere – indicates the massacre of biodiversity is not sparing creepy crawlies. And insects really matter, not just as pollinators but as predators of pests, decomposers of waste and, crucially, as the base of the many wild food chains that support ecosystems.

“If we lose the insects then everything is going to collapse,” says Prof Dave Goulson of Sussex University, UK. “We are currently on course for ecological Armageddon.”

Even much-loathed parasites are important. One-third could be wiped out by climate change, making them among the most threatened groups on Earth. But scientists warn this could destabilise ecosystems, unleashing unpredictable invasions of surviving parasites into new areas.

What’s destroying biodiversity?

We are, particularly as the human population rises and wild areas are razed to create farmland, housing and industrial sites. The felling of forests is often the first step and 30m hectares – the area of the Britain and Ireland – were lost globally in 2016.

Poaching and unsustainable hunting for food is another major factor. More than 300 mammal species, from chimpanzees to hippos to bats, are being eaten into extinction.

Pollution is a killer too, with orcas and dolphins being seriously harmed by long-lived industrial pollutants. Global trade contributes further harm: amphibians have suffered one of the greatest declines of all animals due to a fungal disease thought to be spread around the world by the pet trade. Global shipping has also spread highly damaging invasive species around the planet, particularly rats.

The hardest hit of all habitats may be rivers and lakes, with freshwater animal populations in these collapsing by 81% since 1970, following huge water extraction for farms and people, plus pollution and dams.

Locating the tipping point that moves biodiversity loss into ecological collapse is an urgent priority. Biodiversity is vast and research funds are small, but speeding up analysis might help, from automatically identifying creatures using machine learning to real-time DNA sequencing.

There is even an initiative that aims to create an open-source genetic database for all plants, animals and single-cell organisms on the planet. It argues that by creating commercial opportunities – such as self-driving car algorithms inspired by Amazonian ants – it could provide the incentive to preserve Earth’s biodiversity.

However, some researchers say the dire state of biodiversity is already clear enough and that the missing ingredient is political will.

A global treaty, the Convention on Biological Diversity (CBD), has set many targets. Some are likely to be reached, for example protecting 17% of all land and 10% of the oceans by 2020. Others, such as making all fishing sustainable by the same date are not. The 196 nations that are members of the CBD next meet in Egypt in November.

In his 1985 text, Prof E O Wilson, concluded: “This being the only living world we are ever likely to know, let us join to make the most of it.” That call is more urgent than ever.

Source: What is biodiversity and how are we protecting it?

Further reading

The Biological Diversity Crisis (1985). Edward O Wilson. BioScience (Vol 35)

The Sixth Extinction: An Unnatural History (2014). Elizabeth Kolbert (Bloomsbury)

What Has Nature Ever Done for Us? (2013) Tony Juniper (Profile)

The Economics of Ecosystems and Biodiversity (2010). Pushpam Kumar et al. (Earthscan)

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Irish Teen Wins 2019 Google Science Fair For Removing Microplastics From Water

An Irish teenager just won $50,000 for his project focusing on extracting micros-plastics from water.

Google launched the Google Science Fair in 2011 where students ages 13 through 18 can submit experiments and their results in front of a panel of judges. The winner receives $50,000. The competition is also sponsored by Lego, Virgin Galactic, National Geographic and Scientific American.

Fionn Ferreira, an 18-year-old from West Cork, Ireland won the competition for his methodology to remove microplastics from water.

Microplastics are defined as having a diameter of 5nm or less and are too small for filtering or screening during wastewater treatment. Microplastics are often included in soaps, shower gels, and facial scrubs for their ability to exfoliate the skin. Microplastics can also come off clothing during normal washing.

These microplastics then make their way into waterways and are virtually impossible to remove through filtration. Small fish are known to eat microplastics and as larger fish eat smaller fish these microplastics are concentrated into larger fish species that humans consume.

Ferreira used a combination of oil and magnetite powder to create a ferrofluid in the water containing microplastics. The microplastics combined with the ferrofluid which was then extracted.

After the microplastics bound to the ferrofluid, Ferreira used a magnet to remove the solution and leave only water.

After 1,000 tests, the method was 87% effective in removing microplastics of all sorts from water. The most effective microplastic removed was that from a washing machine with the hardest to remove being polypropylene plastics.

With the confirmation of the methodology, Ferreira hopes to scale the technology to be able to implement at wastewater treatment facilities.

This would prevent the microplastics from ever reaching waterways and the ocean. While reduction in the use of microplastics is the ideal scenario, this methodology presents a new opportunity to screen for microplastics before they are consumed as food by fish.

At 18 Ferreira has an impressive array of accomplishments. He is the curator at the Schull Planetarium, speaks 3 languages fluently, won 12 previous science fair competitions, plays the trumpet in an orchestra and has a minor planet named after him by MIT.

Follow me on Twitter or LinkedIn. Check out my website.

I am a geologist passionate about sharing Earth’s intricacies with you. I received my PhD from Duke University where I studied the geology and climate of the Amazon.

 

Source: Irish Teen Wins 2019 Google Science Fair For Removing Microplastics From Water

A.I. Is Helping Scientists Predict When and Where the Next Big Earthquake Will Be – Thomas Fuller & Cade Metz

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Countless dollars and entire scientific careers have been dedicated to predicting where and when the next big earthquake will strike. But unlike weather forecasting, which has significantly improved with the use of better satellites and more powerful mathematical models, earthquake prediction has been marred by repeated failure. Some of the world’s most destructive earthquakes China in 2008, Haiti in 2010 and Japan in 2011, among them……..

Read more: https://www.nytimes.com/2018/10/26/technology/earthquake-predictions-artificial-intelligence.html

 

 

 

 

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Protect the high seas from harm | Coastal Restoration

Discussions on a United Nations treaty to safeguard the open ocean offer an opportunity for scientists.

Source: Protect the high seas from harm | Coastal Restoration

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