Farms.com Home   News

More Frequent Extreme Droughts Result in Significant Crop Losses, Say Researchers

By Liv Jorunn Hind

Climate change has resulted in increasingly extreme weather events worldwide. NIBIO research scientist Pål Thorvaldsen is among the many scientists who participated in a large international drought experiment initiated by the University of Michigan, U.S. He explains that climate change may lead to more frequent occurrences of short-term extreme drought.

"Previously, short-term extreme droughts could occur every 100 years. According to some , we can expect them to happen every five to 10 years in the future," the researcher says.

The scientists examined grass- and shrub-dominated ecosystems—both vital grazing areas for livestock. The results show that plant growth was reduced by a whopping 60% during short-term extreme drought in grasslands, compared to areas with moderate drought.

"It is concerning to witness such a drastic reduction in  in ecosystems that are so crucial for food production," Thorvaldsen remarks.

Important to prevent pastures from drying out

The scientists investigated 170 sites worldwide. The results revealed a significant reduction in plant production in the studied ecosystems after one year of extreme drought.

"After just one year, the results showed a decrease of almost 40% in biomass in the grass-dominated ecosystems. This is nearly double the reduction observed in the shrub-dominated ecosystems, which had a decrease of about 20%. This is quite serious for farmers relying on pasture for their animals," says Thorvaldsen.

"It seems to be beneficial to have an element of shrubs or trees in pastures. This affects the microclimate and reduces radiation."

Although extreme drought rarely occurs simultaneously in all of Norway's key agricultural regions, the research scientist believes access to watering systems could become important to ensure food supply in the future.

Preventing these ecosystems from drying out is crucial for global food production, but also for the climate accounts.

"Globally, the ecosystems we studied cover between 30% and 40% of the Earth's surface and store more than 30% of the Earth's carbon storage. Plant production is one of the key factors in the carbon cycle. When plant production is reduced, less CO2 is absorbed from the atmosphere," explains the researcher.

"Understanding how plants and ecosystems respond to  will be extremely important moving forward."

Norwegian coastal heathlands tolerate drought well

The Norwegian research team were responsible for six sites around the country. All were pasture areas with coastal heathland dominated by heather, an evergreen dwarf shrub. On each site, the researchers set up nine cages measuring 3.5 x 3.5 meters. Three of the cages were open control fields without roofs. The other six cages contained roofs with plastic panels with openings between each panel. In three cages the plastic panels covered 60% of the roof, and in three cages the panels covered 90% of the roof.

These transparent roofs were set up 80 cm above the ground to allow light and air to reach the plants. Due to infiltration of moisture from the surrounding area, soil moisture was measured using  meters.

Click here to see more...

Trending Video

From Students to Solutions | On The Brink: Season 2, Episode 14

Video: From Students to Solutions | On The Brink: Season 2, Episode 14

Ask Canada’s most decorated soybean breeder his favourite part of the job and he doesn’t name a single variety. He names the students.

Istvan Rajcan is a professor of soybean breeding and genetics in the Department of Plant Agriculture at the University of Guelph, where he has run the soybean breeding program for 28 and a half years. In that time he has developed 87 soybean cultivars, published 140 refereed papers and trained 51 graduate students. In 2025 he received the Public Sector Impact Award from the National Association for Plant Breeding.

He is also worried. In this episode he says Canada is at a crossroads, pointing to recent government cuts to plant breeding programs and to the facilities that support them. His prescription is structural. "Plant breeding funding formula has to be a long-term one," he says.

The formula he is defending is the public-private matching arrangement his program runs on. Private seed companies fund the work, provincial or federal money matches it, and the combined pool stretches each dollar further than either source could alone. At the National Association for Plant Breeding annual meeting in June, he says American public breeders were often surprised at how well that collaboration works in Canada.

He also describes how the people entering plant breeding have changed. His early graduate students came mostly from farms. More recently they include, in his words, "city kids who just became excited about genetics."

Topics covered:

Why public-private plant breeding funding in Canada needs a long-term

commitment rather than a larger one

How matching private seed company investment with provincial and federal

dollars multiplies research capacity

How the graduate student pipeline into plant breeding has shifted from

farm kids to city kids