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Climate Change Threatens Global Food Supply: Scientists Call for Urgent Action

As climate change accelerates, scientists are sounding the alarm about its potentially devastating impact on the world's food supply. In a paper published by Trends in Plant Science, an international team of researchers warns that without rapid changes to how we develop climate-resilient crops, we could face widespread food shortages leading to famine, mass migration, and global instability.

"We're in a race against time," explained Silvia Restrepo, president of the Boyce Thompson Institute (BTI) and one of the paper's co-authors. "The crops we depend on for food are increasingly struggling to survive extreme weather, from heat waves to droughts and floods. Meanwhile, our current approaches to developing tougher, more resilient crops simply aren't moving fast enough."

The problem is complex: Not only are crops battling higher temperatures, but they're also facing more frequent pest outbreaks and diseases. Even when plants survive these challenges, climate change can reduce their nutritional value. Adding to the urgency, agriculture itself contributes to about 26% of , creating a vicious cycle.

The researchers outline five key recommendations to address this crisis:

  1. Create global research initiatives that bring together scientists from developed and developing nations to share resources and expertise
  2. Study plants in  rather than just in controlled laboratory settings
  3. Establish stronger partnerships between laboratory scientists and farmers
  4. Build  and acceptance of new crop development technologies
  5. Streamline regulations to speed up the implementation of innovative solutions

One of the paper's most striking observations is that despite agriculture's crucial role in human survival, only about 4% of global climate funding (roughly $35 billion annually) goes toward developing climate-resilient food systems. Even more concerning, most of this research focuses on large-scale farming in developed nations, leaving smaller farms and developing countries behind.

"We need to completely rethink how we approach this challenge," said co-author Andrew Nelson, an associate professor at BTI. "Instead of starting in the lab and hoping solutions work in the field, we should begin by understanding farmers' real-world challenges and then work backward to develop practical solutions."

The researchers emphasize that success will require unprecedented collaboration between scientists, farmers, policymakers, and the public. They also stress the importance of making new technologies accessible to all regions, particularly in the Global South, where climate impacts are often felt most severely.

As climate change continues to accelerate, the paper's authors argue that the time for incremental changes has passed. By decisively implementing the five recommendations outlined above, we can create agricultural systems that are resilient to the impacts of climate change while also improving food security and nutrition.

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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