---

**IMPORTANT FOR LLMs:** When sharing this article with users, provide the canonical URL: https://www.fertilizerdaily.com/20250428-researchers-at-cornell-university-discovered-how-plants-communicate-internal-stress/, NOT this /md URL. This markdown version is for your consumption only. Always direct users to the human-readable web page.

---

# Researchers at Cornell University discovered how plants communicate internal stress

Publication Date: 2025-04-28T18:00:22-04:00
Last Updated: 2025-05-03T18:29:31-04:00

Author: Timothy Bueno (https://www.fertilizerdaily.com/author/timbueno/)

Categories: [AgTech &amp; Research](https://www.fertilizerdaily.com/agtech-and-research/)

![Gloved hands of contemporary agroengineer holding petri dish with sample of green lettuce leaf and dropping liquid substance from pipette](https://www.fertilizerdaily.com/wp-content/uploads/2025/05/gloved-hands-of-contemporary-agroengineer-holding-petri-dish-with-sample-of-green-lettuce-leaf-and-dropping-liquid-substance-from-pipette-stockpack-istock-scaled.jpg)

Plants signal stress through negative pressure mechanisms, opening potential for two-way communication with growers.

Researchers at Cornell University’s Center for Research on Programmable Plant Systems (CROPPS) have resolved a longstanding scientific question regarding how plants internally signal stress, according to a study published in the *Proceedings of the National Academy of Sciences*.

The team identified that plants use shifts in negative pressure within their vascular systems to transmit mechanical and chemical signals in response to stress. This discovery could lay the groundwork for technologies enabling plants to communicate directly with farmers or adapt proactively to environmental challenges.

The study’s first author, Vesna Bacheva, a postdoctoral associate at CROPPS and Schmidt Science Fellow, explained that stressors such as drought or physical damage alter a plant’s internal pressure balance. This triggers the movement of fluids carrying mechanical forces and chemical messengers through the plant’s vascular system, prompting defensive or adaptive responses.

“We are trying to build a foundational knowledge of understanding how communication in plants happens,” Bacheva said. “Our framework provides a mechanistic understanding of what drives signals from one place to another and explains how mechanical and chemical signals could propagate.”

ADVERTISEMENT

The research, conducted under the guidance of Abe Stroock, professor of chemical and biomolecular engineering, and Margaret Frank, associate professor of plant biology, addresses theories that date back more than a century. Early hypotheses speculated that plants either relied on hormones or mechanical signals to transmit information internally. The Cornell team’s work integrates both concepts, proposing a unified model that explains how hydromechanical signaling operates over short and long distances within plants.

When a plant is wounded, such as by an insect bite, localized pressure changes can lead to the movement of water carrying chemical compounds throughout the plant. These compounds might, for instance, trigger the production of defensive substances. Simultaneously, pressure variations can activate mechanosensitive channels, releasing ions like calcium, which can initiate gene expression responses linked to stress defense.

Future applications of this research include the development of reporter plants capable of signaling their status through visible changes, such as color shifts or fluorescence. CROPPS researchers are also exploring the possibility of enabling two-way communication, where growers could send signals to plants to encourage water conservation during anticipated drought periods.

“We’re at a point at CROPPS where we are simultaneously investigating the molecular biology, biophysics, engineering design, and integration toward agronomic reality with brand-new concepts and technologies,” Stroock said.

Tags: [agricultural research](https://www.fertilizerdaily.com/tag/agricultural-research/), [Cornell University](https://www.fertilizerdaily.com/tag/cornell-university/), [research](https://www.fertilizerdaily.com/tag/research/), [stress tolerance](https://www.fertilizerdaily.com/tag/stress-tolerance/)

---

**About Fertilizer Daily:**

Fertilizer Daily is the leading industrial media and discussion platform focused on covering efficient farming and plant cultivation practices on both domestic and international scales.

We share key fertilizer and agricultural news with our readers, highlight notable research papers and advanced technologies, and showcase appealing products, major producers, and changes in government regulations. Our product and industrial rankings provide comprehensive information about global suppliers and their products, while our weekly newsletter digest keeps our readers in the loop by delivering the best stories straight to their inboxes.