By Ralph Danquah-Acquah, RegenPGC Graduate Student. Originally published on LinkedIn, Aug. 21, 2026. See this story in a video format
I went into the Perennial Ground Cover literature looking for answers to my own research.
Somewhere along the way, I realized I was following a much bigger story.
The idea sounds simple: keep a living perennial cover between the rows of an annual crop instead of leaving the soil exposed for much of the year.
But making two plants share the same field without compromising the main crop is anything but simple.
Early living-mulch experiments showed the promise of keeping the soil covered, but they also revealed one of the biggest challenges: competition.
And that challenge kept moving the science forward.
- Which perennial species are most compatible with the crop?
- How should the groundcover be managed?
- When should it be suppressed?
- Could plant traits and seasonal growth patterns help separate the demands of the two plants?
- Could a perennial grow when the annual crop needs it least, then slow down or become dormant when competition matters most?
As I moved from paper to paper, I began to see how the research evolved.
- From living mulch to species selection.
- From species selection to management.
- From management to plant traits, seasonal growth, and dormancy.
And eventually, from simply asking whether the system “works” to asking what it is doing to soil, water, nutrients, erosion, and crop productivity.
Soybean is part of this story too. Recent work suggests that, in some settings, soybean may be less sensitive than maize to an established perennial groundcover. Maize, however, has remained a more difficult compatibility challenge, which helps explain the strong research attention on maize management, plant traits, suppression, and breeding.
And the story is still moving.
The more I read, the more I found myself asking questions that are difficult to answer from a few field seasons alone.
- How stable are PGC outcomes from year to year?
- How does the system respond under different soils and weather conditions?
- What happens during dry, normal, and wet years?
- And what do these interactions look like over longer timescales?
That is where my own research enters the story.
As part of RegenPGC, with guidance from Dr. Amy Kaleita, I am working to establish the maize–PGC system in ALMANAC and use process-based modeling to investigate soil water, runoff, erosion, and maize productivity across different environmental conditions and longer periods of time.
Field experiments provide the evidence we need to understand these systems. Modeling gives us another way to extend those questions across combinations of soils, weather, management, and time that are difficult to examine experimentally.
I put this carousel together because I wanted to step away from my own results for a moment and follow the scientific journey that made my own research questions possible.
From living mulch
- To competition
- To species
- To management
- To plant traits and dormancy
- To ecosystem services
- To the questions still in front of us
Swipe through the story.






