Apologies for the nerdy subject matter in this post. I’m guessing it might be interesting to about 3% of you. For the rest of you, I tried to at least include a few pretty plant photos. I’ll try to write about something more universally interesting next time.
This is a post about the disparate ways coefficients of conservatism (C values) are assigned to plants in different places across the Central U.S. It’s not really a criticism of those variations, but more of a rumination about what those variations might tell us and a cautionary note about how to interpret floristic quality.

If you’re not familiar with C values, you can read more about them and floristic quality assessment (FQA) in this reprint of a 1997 publication that proposed FQA as a useful tool in Illinois. The 1997 publication by John Taft, Gerould Wilhelm, Doug Ladd, and Linda Masters built on from work by Floyd Swink and Gerould Wilhelm to build a floristic quality index. Taft et al. proposed FQA as a way to help assess “floristic integrity” or “floristic quality” in natural areas and to evaluate the effectiveness of stewardship work.
Floristic Quality Assessment has been much used and much criticized over the years. I am both a user and a critic. I appreciate it as a way to add some nuance/context to pure assessments of plant species richness (richness = the # of species present) and have applied it to some long-term monitoring efforts. In my monitoring data, though, I calculate floristic quality within a number of square meter quadrats and average those values across a site. As a result, I can look at change over time in both plant species richness and mean floristic quality (at the m2 scale) as two of many ways to evaluate a prairie and our stewardship efforts. (In case you’re wondering, the trends of the two metrics are nearly identical.)
One of my biggest concerns with FQA is that C values are assigned by botanists and there’s a lot of (necessary) subjectiveness in that process. That’s far from a unique take. However, I think the way plants are categorized highlight interesting regional/cultural differences about how we interpret “high-quality natural areas”, the effects of ecological disturbances, and how we define ecological degradation – and that’s actually what this post is about.

If you look at the differences in the C values assigned to plant species in different states you can see what I mean. The figure below shows C values for nine plants and how broad the range of C values is between states (North and South Dakota have a combined list). These values are all publicly accessible, by the way, at universalfqa.org.

I’ll dive into those differences shortly. First, let’s look at the way C values are supposed to be assigned, based on the criteria in the Taft et al. publication linked above:
C value 0-1: Taxa adapted to severe disturbances, particularly anthropogenic disturbances, occurring so frequently that often only brief periods are available for growth and reproduction.
C value 2-3: Associated with somewhat more stable, though degraded, environments.
C values 4-6: These include many dominant or matrix species for several habitats; they have a high consistency of occurrence within given community types.
C values 7-8: Taxa we associate mostly with natural areas, but that can be found persisting where the habitat has been degraded somewhat.
C values 9-10: Restricted to high-quality natural areas.
Ok, now let’s consider the varying c values across states for the species listed above. Black-eyed Susan and sand dropseed are categorized by some states as, essentially, weeds that can grow anywhere there’s dirt (adapted to frequent severe disturbances). In others, they’re seen as “dominant or matrix species” and almost qualify as taxa associated “mostly with natural areas”. Is that because those two plants act differently in some states than others? Maybe. Or it could be that botanists are seeing them through very different lenses.

Silver-leaf scurfpea and prairie violet are both easy to find at my family prairie. Most of that prairie was farmed until the early 1960s when it was planted back to (just) grasses. There are little patches of unplowed prairie scattered throughout, which lay unburned and surrounded by rowcrops for many years. After the farmed portions were planted to grass, the entire site was annually grazed, starting about 1964. That grazing wasn’t particularly conservation-focused until the last 20 years or so when I started to take over the management (which now has shifted to the open gate rotational grazing I’ve written about before).
Despite that, silver-leaf scurfpea and prairie violet are thriving at our family prairie (both are far more abundant than black-eyed Susan, interestingly). They did well in those unplowed, but grazed areas and have been moving into the adjacent grass plantings (scurfpea moved fast, violets are slower). Given that example (and I’ve seen both species in similar situations elsewhere in Nebraska) I’d argue they should both be given C values of 2 or 3 based on the above criteria. Nebraska, though, has them both at 6, which I guess I can live with, but Missouri gave the scurfpea a 9 and the violet a 10, meaning they are species found only in high quality natural areas.

I want to be clear that I’m not saying the botanists that assigned these C values were dumb, or even wrong. Instead, I’m hoping to provoke some thought and discussion about this topic and point out that C values appear to be assigned very differently by different groups of botanists. That should give us great pause when trying to compare scores between states, including scores like mean C (average C value of the plants at a site) or FQA. In addition, even within a state, I think we should be looking closely and thinking carefully about how to interpret and use those scores.
Let’s see a couple more demonstrations of how differently C values are assigned between states. The graph below shows the percent of native plant species that are assigned a c value of 10 by different states across the Great Plains and Midwest.

There seem to be two very different approaches – states that have given 1/5 to 1/4 of those native species a 10 and states that restrict that top value to 8% or less of those species. Why the stark difference in approach? It’s not really split between the Midwest and Great Plains, but I’m guessing it’s tied to local culture among botanists and conservationists in general.
As a final comparison, I graphed out the distribution of assigned C values across native plant species so we can compare two states – Indiana and Nebraska. Nebraska has a pretty regular bell curve to its distribution. Indiana does too, if you ignore the 24% of native species (!) with a C value of 10. It appears Nebraska considers a lot of their plants to be “matrix species” and Indiana has a lot of species they consider to be strongly tied to high quality natural areas.

I’m curious to hear what others think about this, but my suspicion is that botanists can slip into assigning values based on how easy it is to find certain plant species in the landscapes they know best. For example, soapweed/yucca is very common across much of Nebraska and Kansas, including in a lot of “degraded” prairies that have been chronically overgrazed. Cows don’t particularly like to eat it except during the winter or after a burn. So in Nebraska, it’s certainly not restricted to “high quality natural areas”. It is a species that can be difficult to eradicate – just ask some ranchers who have tried to do that.

In Iowa and Missouri, the same yucca species is assigned a C value of 10. Is that because the kind of soil/topography conditions that favor yucca are really uncommon or because it has been extirpated from lots of sites because of poor management or other disturbances? In other words, is it sensitive to disturbances and missing from “degraded” sites? Or is it just rare because there aren’t many places with the topography and soils it needs? (These are earnest questions, by the way – I don’t know the answers.)
More to the point, the assignment of C values is based on some very loaded terminology. In particular, the words “anthropogenic disturbances”, “degraded” and “high quality” are prominent. In the paper by Taft and colleagues, there’s not much definition of either disturbance or degradation. It seems to be a “you know it when you see it” approach. That’s fine for people who see things the same way as the authors, but might be part of the reason we see such variation in c value assignment across different geographies.

Also, of course, applying “anthropogenic disturbance” as a negative metric is super problematic – especially in Midwest and eastern Great Plains grasslands that originated and persist primarily because of people and their stewardship. In other words, “anthropogenic disturbance” is an integral part of those prairies, not an automatic cause of degradation. How do you think most of those fires happened prior to European colonization? (Spoiler: it wasn’t lightning.)
I could write a lot more about the conflicting and challenging criteria used to assign c values and the ways in which floristic quality can be used well and poorly, but most of that has already been covered very well by Greg Spyreas in an excellent overview. Instead, I’ll just say this: I worry that C values have sometimes been assigned to plants based, at least partly, on how excited a botanist would be to find them. We should keep that in mind as we interpret floristic quality scores.
Obviously, the way people feel about this topic and about the “quality” of habitats or species is related to how they view conservation success. Personally, I focus most on ecological resilience and how to grow and sustain that. Resilience is built on habitat size and species diversity. I’ve spent much of my career honing and popularizing restoration strategies that enlarge and reconnect habitat patches. I’ve also focused heavily on fire, grazing, and other stewardship practices that create habitat heterogeneity, and thus species diversity (of plants, animals, and other taxa).
While related, my focus is different from someone whose top priority is preventing rare species from going extinct. I don’t spend a lot of my time worrying about how to save any particular species. That’s not because I don’t care about them, but rather because I’m focused on the broader system that supports the long-term viability of all species.

My particular attention toward resilience likely comes from the fact that I work mostly in Nebraska, where we still have a lot of prairie (about half of the state is in some kind of grassland cover). We have rare and at-risk species, but we also have a lot of prairie habitat to work with, especially compared to places like Illinois, for example, or some other states in the Midwest. That gives us a different perspective from each other, which understandably leads to different objectives and strategies.
And that brings us back to C values and how they’re assigned, used, and interpreted.
There are lots of people doing terrific conservation work, and among us, we represent a broad variety of perspectives and biases. Because of that, we vary in the way we view and measure conservation success. We also vary in the way we assign value to species and habitats. None of that is bad. It does, however, mean we shouldn’t work in silos.
I’ve learned a tremendous amount from site visits and/or discussions with friends and colleagues in all the states I’ve discussed here. Their perspectives have influenced mine, and I hope the reverse has been true as well. I think that assigning conservatism values to plant species can be a helpful way to interpret what we see in our respective prairies. Let’s just be careful not to rely on any single metric too much, especially metrics that are heavily influenced by cultural bias.
Goodness, Chris, when I read the words “coefficients of conservatism” I at first thought you were getting political on us! But, it turned out to be an interesting article. LOL.
Thank you for challenging and informing us!
Very thoughtful presentation, Chris. I hope it makes others think about how we estimate conservatism as much as it did me.
Chris: Wonderful post that explains the coefficients of conservatism and floristic quality assessment (FQA). It likely brings a new concept to many readers. Your point about relying on the overall diversity observed at a site providing nearly the same insights to the effects of recent management is a really good one, and apparently both metrics reveal whether your building resilience or not. Does having both sets of data tell you more? Does one measurement reveal changes quicker than the other?
The differences in coefficients assigned to the same species in different states is an eye opener. Looks like native prairie plants get higher C values in states with less prairie. so cultural bias is likely at work. Are C values too “coarse” when one number is applied and used over a larger area?
I’m heading off to do more reading–thanks for making me think.
Hi, What do you mean by this “we shouldn’t work in silos?” Suzanne
Thanks for asking. I just mean that we shouldn’t work in isolation. We should collaborate and share ideas between regions and sites so we are all learning from each other and using all information and perspectives to push our work forward.
ThanksOn Sep 2, 2026,
Great discussion of a tricky concept. I find “disturbance” less problematic because fire in a fire-maintained ecosystem is a stabilizing process. The disturbance that causes a shift is lack of fire. What I struggle with more is species, often annuals, that are only found in remnant grasslands but readily respond to soil disturbance (the ruderal conservatives?). A Tennessee G1 endemic, spring creek bladderpod, can be found in tilled row crop fields but has been given a C-value of 8. How excited we are to find it I think plays into it but fidelity to high-quality habitat usually works as a definition, except for when it doesn’t.
Lack of fire as disturbance! That is gold. I’m going to use it next time I get push back on wanting to do burns.
I’d like to see how the C values are considered through the lens of how difficult they are to restore to formerly cultivated land, but I recognize that can also be very site-dependent. Somehow I think the highly conservative plant designation is probably closely tied to soil biota. When the needed biota are present (like in unplowed remnants) the plants can multiply, but when they are absent due to how the ground has been treated (tilled, chemically treated, etc), high C plants have great difficulty becoming established.
Thanks for bringing up this vitally important topic. The fact that the same plant may have different C values in different states is because plants respond to growing conditions differently; it would be unusual for the same plant to have the same C value across the country. I have never heard of conservationists using C values to compare plants across states, and that is not the purpose of this conservation tool.
As an example, three species you discuss that occur in Nebraska also occur in the rare loess hill prairies in Missouri: Silverleaf scurf pea, soapweed yucca, and dotted blazing star. These are essentially restricted to the most xeric expression of prairies in Missouri. The easy answer here is that plants act differently in different places (because they are exposed to different climates, soils, geology, etc). These species are weedy in Nebraska because Nebraska prairies are generally drier, overall, than prairies in Missouri. In Missouri, these plants are survivors, not competitors, because they get eliminated in most soil conditions. Hairy grama is another example. It also does well in the loess hills under grazing conditions, but on average, most of Missouri is just too moist for it to compete against essentially anything else.
“Managing for resilience” can mean different things to different people. Plants respond to management. If management of a site results in a dominance of ragweed, does that make ragweed resilient, and a dominance of ragweed on a prairie its ideal state? Many prairie managers in Missouri and beyond think that “managing for biodiversity” is the goal–we manage so that the full expression of prairie biodiversity is perpetuated–and when it is perpetuated on a landscape, with all of the functions that the biodiversity supports, is that not ecosystem resilience? We also monitor results of management, and change it as needed. The plants (and other species) should dictate the management, not the other way around.
The important, careful work of botanists to assign C values to plants is very helpful to our work. Learn more about the work of the Missouri Prairie Foundation to protect priceless, irreplaceable prairie biodiversity and prairie ecosystem function at moprairie.org.
Well said Carol. I started using FQA in the middle 80’s at Lake Ozark State Park. Most other states didn’t have these lists and if they had I don’t think I would have found differences to be problematic since as you said “it would be unusual for the same plant to have the same C value across the country”.
Really interesting to think about how these ratings develop. Back in a previous lifetime when I was getting paid to think about this (before FQA was a thing outside of IL?), probably the first factor considered was effect on soils: stability, decompaction, fertility/buffer capacity, etc. Everything else was sort of downstream of the soil (but not far). So all that is to say it feels to me like C value should take into account a plant’s effect on the soil? I wonder how that would effect some of the coefficient values.
This is really interesting and useful, thanks. In assessing floral diversity in our grasslands (Victorian Volcanic Plain, Australia) we sometimes use a very simple approach like this, which is that some species may be flagged as symptomatic of high quality grassland. Having them in your quadrats then shows that you should (probably) consider your grassland high quality. There’s no quantitative score, just a binary indicator. Similarly, weeds can have an indicator, for example, those that are symptomatic of historic fertiliser application. I wonder if we could construct C scores for our taxa. But even our VVP bioregion has a fair bit of variation in rainfall, altitude etc so I’ll take your caveats seriously!
Thanks for the reminder that assessment metrics cannot completely capture ecosystem complexity, but are useful when their limitations are understood. I don’t know if this is scientifically accurate, but the way I use C values is if one high value species is present, it could be a fluke, but if there are multiple such species, that indicates habitat where management should be a high priority.
Such a thought-provoking post, Chris! The regional variation in C values really highlights how much local context—and local botanical culture—shapes how we define ‘habitat quality.’ It’s a great reminder to evaluate the broader ecological function rather than getting hung up on a single score. 🌿📊 As a Botany undergraduate, I really appreciate you for this post 😊😊
Pingback: Complications of Comparing Coefficients of Conservatism – durgesh53
Very interesting read and nice photos.
“That’s not because I don’t care about them, but rather because I’m focused on the broader system that supports the long-term viability of all species.” Keep up the great work, plants are so important for the survival of our species
It doesn’t make sense to divide up ecological systems by states which are usually arbitrary lines (though we do have the Mississippi to give us our border with Illinois). Yes, I know that funding and paperwork and politics are how you can get the statistics, but still it seems ridiculous…and all the more reason to knock down those “silos.”
Knock down these silos, indeed. Blessings 🙌
Thanks to all.