Tracking the movement of plants
en-GBde-DEes-ESfr-FR

Tracking the movement of plants


The flora of the Alps is changing: species are moving to higher elevations, new plants are appearing and others are disappearing. In the Flora Raetica project, the WSL Institute for Snow and Avalanche Research SLF, together with partner organisations and assisted by volunteer citizen scientists, is investigating how climate change is affecting plant diversity in Graubünden – and comparing present-day findings with records from almost a century ago.

“Here we have mat-grass,” says Christian Rixen, “and this is alpine vernal grass, which is responsible for the lovely smell of hay.” He holds the plant in his hand. The root gives off a faint scent of turpentine. Further down the slope, cows are grazing. Their bells jingle on this Wednesday morning in August. The sun is slowly rising above the ridge. A hot day lies ahead. But Rixen has eyes only for the flora around him: “Oh, mountain buttercup – that hasn’t been recorded here for three years. And the alpine sedge over there hasn’t been observed here for 13 years. And alpine toadflax – we’ve never had that here before.”
Rixen is a botanist at the SLF, and this morning he is completely in his element. He is co-leader of the Flora Raetica project (see box). In the early 1930s, botanists Josias Braun-Blanquet and Eduard Rübel documented the flora of Graubünden. In this project, Rixen is investigating which species have appeared since then, which have disappeared and how their regional distribution has shifted.

A surprise at altitude
Today, he is working below the Jatzhorn near Davos. There, at between 2,400 and 2,500 metres above sea level, lies one of the project’s 1,104 ‘flash squares’. This is what he calls the 100x100-metre survey plots which project staff check between one and three times to see which plant species are growing there. Rixen points to some green leaves on the ground and explains the procedure: “You go to a square and write down everything you find. To give you an example, here’s a spotted gentian.” ‘Write down’ isn’t quite the right way to describe it, though. In fact, Rixen and project coordinator Ingrid Jansen, who is accompanying him today, log the plants they find in a smartphone app. Biodiversity can vary considerably from one flash square to another, depending on the location and the number of different habitats. Here, on the mountain, grassy areas alternate with rock. In other parts of Graubünden, there may be scree, or a stream may wind its way through the landscape.
At 2,520 metres above sea level, Rixen stops. A small spruce has taken root this high up – only 10 to 20 centimetres tall, but still... “For spruce trees, elevations above 2,500 metres are unusual,” says Rixen. He had already been surprised to find three larches at 2,450 metres. The increasingly warm summers caused by climate change have seen the treeline rise by around 400 metres in elevation over the past 50 years, explains the scientist: “But the trees are lagging behind, which is why it’s interesting when we find individual specimens further up.”

An early autumn
Climate change is making itself felt. By comparing the findings with historical data, researchers can determine the elevations at which certain plants occurred almost 100 years ago, which species are shifting upwards and whether incoming competitors are displacing them at lower elevations. “We can see where 2,500 plant species used to occur and where they’re found today,” says Rixen.
Not all plants benefit from warmer temperatures. Many need to accumulate a certain amount of warmth over the course of the year. When it’s hot, as it was this summer, they are unable to make use of all of that warmth. For them, autumn starts earlier. Rixen takes a deep breath: “You can already smell it here – that scent of valerian, which is typical when leaves start to decompose.”

Citizen scientists don’t need to know every plant
Not everyone taking part in Flora Raetica has such in-depth knowledge. It is a typical citizen science project, where volunteer members of the public actively support researchers in their work. This means that anyone can take part, although some basic botanical knowledge is helpful. Citizen scientists don’t need to know every plant, however. The InfoFlora app provides support and assistance with correctly identifying the plants. “Many people come along for a trial outing with us first, to see if they enjoy it,” says Rixen. Those who stay on become part of something bigger as Flora Raetica is part of InfoFlora, a project that looks at plant species across Switzerland.
Nor does everyone have to diligently survey the flash squares in their area. Besides the surveys of flash squares, there are other, less time-consuming tasks, which also make a vital contribution. All citizen scientists can choose for themselves how much effort they want to put into the project. “There are also individual missions, such as finding a rare species of strawberry on the Hohe Promenade in Davos,” says Rixen. Another task is searching for Red List species threatened with extinction.
By around 2.45 p.m., Rixen and Jansen have finished surveying their square. The botanist taps away on his smartphone: “We’re submitting our mission report now, and it’ll already be in the system tomorrow.” Last plant recorded: 2.42 p.m., Soldanella pusilla, the dwarf snowbell.

______________________________________________

Flora Raetica explained in five key facts
  • What? Flora Raetica is investigating how the flora of Graubünden has changed over the past 100 years or so.
  • Why? The comparison will show which plant species are appearing for the first time, disappearing or – partly as a result of climate change – shifting to higher elevations.
  • How? The plants found today are compared with botanical records from the 1930s.
  • Who? Researchers work together with volunteers. In this citizen science project, interested members of the public can also record plant species.
  • What is it for? The data will help to identify and better understand long-term changes in Alpine flora and biodiversity in Graubünden.
Attached files
  • Sometimes, only a magnifying glass can help determine exactly which plant is growing there. (Photo: Jochen Bettzieche/SLF)
  • SLF botanist Christian Rixen searching for plant species. (Photo: Jochen Bettzieche/SLF)
Regions: Europe, Switzerland
Keywords: Science, Life Sciences, Environment - science

Disclaimer: AlphaGalileo is not responsible for the accuracy of content posted to AlphaGalileo by contributing institutions or for the use of any information through the AlphaGalileo system.

Testimonials

For well over a decade, in my capacity as a researcher, broadcaster, and producer, I have relied heavily on Alphagalileo.
All of my work trips have been planned around stories that I've found on this site.
The under embargo section allows us to plan ahead and the news releases enable us to find key experts.
Going through the tailored daily updates is the best way to start the day. It's such a critical service for me and many of my colleagues.
Koula Bouloukos, Senior manager, Editorial & Production Underknown
We have used AlphaGalileo since its foundation but frankly we need it more than ever now to ensure our research news is heard across Europe, Asia and North America. As one of the UK’s leading research universities we want to continue to work with other outstanding researchers in Europe. AlphaGalileo helps us to continue to bring our research story to them and the rest of the world.
Peter Dunn, Director of Press and Media Relations at the University of Warwick
AlphaGalileo has helped us more than double our reach at SciDev.Net. The service has enabled our journalists around the world to reach the mainstream media with articles about the impact of science on people in low- and middle-income countries, leading to big increases in the number of SciDev.Net articles that have been republished.
Ben Deighton, SciDevNet

We Work Closely With...


  • The Research Council of Norway
  • SciDevNet
  • Swiss National Science Foundation
  • iesResearch
Copyright 2026 by AlphaGalileo Terms Of Use Privacy Statement