Violet species (Violaceae) – Wild Seed Project (2024)

Small herbaceous plants of woods and fields; flowers are blue, purple, white, or yellow, according to species; deep green, heart-shaped leaves in basal rosettes or on ascending stems; a good groundcover and a vigorous self-seeder.

By Pamela Johnson

Violet species (Violaceae) – Wild Seed Project (1)There is a charming tale told in Jack Sanders’ Hedgemaids and Fairy Candles about John Bartram’s transformation from colonial farmer to America’s first botanist. Bartram (1699-1777), “weary” from ploughing his fields along the Schuylkill River, outside Philadelphia, took “repose” in an uncultivated spot nearby. According to Sanders and others, Bartram picked a violet and suddenly thought he would prefer to study flowers rather than till them under his plough. Bartram soon hired someone else to work his farm, and embarked upon the first of many botanical expeditions, first in borrowed books, then on horseback throughout the wildernesses of the Eastern seaboard.

That a native violet inspired Bartram’s singular career, in which he eventually introduced many New World plants to the gardeners and gardens of Britain, seems fitting. Except that it was a common field daisy, not a violet, that re-directed Bartram’s life. J. Hector St. John de Crèvecœur (1735-1813) records Bartram’s own words in de Crèvecœur’s Letters From An American Farmer:

. . . one day I was very busy in holding my plough (for thee see’st that I am but a ploughman), and being wary I ran under the shade of a tree to repose myself. I cast my eyes on a daisy; I plucked it mechanically and viewed it with more curiosity than common country farmers are wont to do, and observed therein very many distinct parts…’what a shame,’ said my mind…that thee shouldest have employed so many years in tilling the earth and destroying so many flowers and plants without being acquainted with their structures and their uses![i] This seeming inspiration suddenly awakened my curiosity, for these were not thoughts to which I had been accustomed.[ii]

How did a white daisy become a blue violet in the retelling of Bartram’s epiphany? It could have been a bit of patriotic burnishment: better a native violet to inspire, rather than a mundane plant that probably emigrated to the New World in the matted fur, fleece, or hide of some imported seventeenth-century livestock. Or it could have been the ubiquity, and ease of recognition of violets – simple enough to locate in a meadow or hedgerow, but still possessed with some charm and romance.

Violets are found in temperate regions worldwide; there are perhaps five hundred species, though numbers are approximated because violets hybridize easily, no matter where they grow. Along the wilder edges of Bartram’s field there would certainly have been a smattering of native violets. And his plough would probably have turned under an Old World hitchhiker the Johnny-Jump-Up, or heartease, Viola tricolor.

Early settlers were prepared to identify native violets from the familiarity and similarity of species included in English and European herb gardens. Centuries before, violets were mythologized in resurrection tales. Aristophanes (448?-385? B.C.), the Greek poet, called Athens “the violet-crowned city” whose King Ion may have given the violet its name. The seventh-century Arab prophet Muhammed favored violets above all other flowers. In the thirteenth century, Genghis Khan was said to have moved westward with his army of Tartars subsisting on violet roots. Shakespeare garlanded Ophelia with violets, in life and death, and called the violet’s complexion “purple pride”, in Sonnet 99.

But it was the nineteenth century Romantics, on both sides of the Atlantic, who made the most of violets, in floriographies, indices of floral language and meaning. Flower bouquets were cryptic offerings to be decoded by floral dictionaries. Violets, silently and with faint sweetness, communicated “love”, “truth”, and “loyalty”.

There are eighteen viola species in Maine, including the rare New England Violet (Viola novae-angliae), and almost as many subspecies or hybrids. Some violets occupy specialized habitats, and, of course, not all violets are violet-colored: some are white, a few are yellow, the remainder are shades of blue and purple. What all native violets share is the tendency to flower early and an unusual strategy that insures seed production if blossoms and pollinators fail to connect when spring begins.

Violet flowers are perfectly designed for precocious pollinators, the early small bees and flies who emerge when ground temperatures first warm. Regardless of the species’s general flower color, violet petals have striations that lure and guide pollinators to the flower’s nectary. The coloration can be flagrant: deep purple veins augmented with “beards”, raised hairs that bees have to wiggle through to penetrate the nourishing delights within the flower’s interior. Or the markings may be more subtle: paler nettings of purple which still provide signposts for pollinators (bees are preternaturally attracted to the cyanic spectrum – shades of blue and purple).

Violet flowers are evanescent, however: they open, and fade quickly in Spring’s faithless weather. It may be that temperatures are too cold, or winds too fierce, for pollinators to appear, though day length has prompted flowering. So violets produce alternate flowers, usually beneath the plants’ lowest leaves. They are petal-less cleistogamous flowers that look like capsules, and are self-pollinated. “Cleisto-”comes from the Greek word for “closed”. The fully developed aerial violet flowers that require pollination are called chasmogamous flowers. Chasmogamy’s Greek root is the word for “wide opening”, chásm(a).

The disadvantage of cleistogamy is the absence of genetic refreshment. Seeds produced will only have the parent plant’s traits; perpetuation is guaranteed, but at the cost of diversity. Also, since cleistogamous capsules are so close to the ground, ripened seed may not travel far from home. Violet seeds can be ejected with some velocity as the membranes holding seeds in place shrink and expel their contents, sometimes 3 to 4 feet distant; but this seed-shattering/seed-scattering is more effective above the foliage and stems.

Seed dispersal is also abetted by ants. Violet seeds have an appendage that looks like a glistening cuticle, or perhaps, to an ant, like a larval morsel. The protuberance, called an elaiosome, is found on the seeds of many native woodland species, as well as viola species. Elaiosomes mimic animal proteins; their chemistry is a magnet to ants who carry off the seeds and feed their broods with these fatty, protein-rich bonanzas. The hard-coated seeds themselves are of little interest to the ants, and are discarded into ant-created waste heaps (middens) that are a good, nutritive, growing medium for seeds. Myrmecochory is the name for seed dispersal by ants, and three ant species do much of the work: Myrmica punctiventris, the punctured ant; Aphaenogaster picea, the pitch-black Aphaenogaster; and A. rudis, the rough Aphaenogaster. As many as thirty percent of spring-flowering herbaceous plant species in the forests of North American benefit from myrmecochory. Some studies have indicated that ant dispersal engenders more vigorous plants.

The violet’s insect retinue is large, and includes other numbers of the Hymenoptera family (bees and wasps) along with the seed-dispersing ant species. Violets are pollinated primarily by sweat bees (Halictidae) and mason bees (the genus Osmia). Occasionally bumblebees (Bombycidae), too burly for the violet’s petalled access, will nip off a violet’s spur to steal nectar without providing pollination services. Syrphid flies (Syrphidae) visit violets for stray pollen, but they are not reliable pollinators like the small bees.

The caterpillars of many fritillary butterflies feed on violet leaves. The meadow fritillary (Boloria bellona), the great-spangled fritillary (Speyeria cybele) whose wingspan would cover the width of a single small violet plant, the Aphrodite (Speyeria aphrodite), and the variegated fritillary (Euptoieta claudia), all avail themselves of violets. As do gall midges (Phytophaga viotidae), violet sawflies (Amastasteiga pallipes), and the elegant crane flies (Tipulidae), sometimes the seasonally earliest and latest flying insects.

Grouse, juncos, mourning doves, and small mammals eat violet seeds and wild turkeys eat their roots; deer and cottontail rabbits eat the foliage of violets. While violets played a role in the materia medica of the Old World, their deployment among Native Americans was less substantial. The mucilaginous leaves were used to thicken stews, and decoctions were made for pain relief and treatments for inflammation. The leaves were “salett” herbs (and potherbs), beneficial for their strong concentrations of Vitamins C and A.

A discussion about individual violet species would consume a lot of space; field guides are necessary for distinguishing many species and their hybrids. even botanists sometimes resort to the initials “l.b.v.” when asked to identify a tricky species: little blue violet is the expedient without a great deal of scrutiny. The challenge is out there for those willing to tackle clavate hairs, spur lengths, leaf lobes, and sepal cilia.

The season of violets will soon arrive, sweet heralds of the wild flower parade. In Forest and Thicket, John Eastman writes:

It’s the most visible beginning, this low blue flame in the woods. I think of it as a pilot light that ignites the entire burst of resurrection we call spring.[iii]

Collecting seeds from violets takes a little observation. Within a week or two of the last flowers appearances, check the plants regularly for the ½″ pale green seedpods. The pods point downward until the seeds begin to ripen, when they turn tan and papery, and reorient, pointing upwards. If the seeds have begun to turn brown they are ripe and ready to collect. (Seeds explode outward when the pods split.) Seeds can be sown immediately in pots outdoors, left to dry for a few weeks in a paper bag, then put in the refrigerator in a sealed jar or bag for fall sowing. Germination will occur the following spring.

[i] Sanders, Jack. 1995. Hedgemaids and Fairy Candles. Camden, Maine: Ragged Mountain Press.
[ii] de Crèvecœur, J. Hector St. John. 1981. Letters From An American Farmer. New York: Penguin Books. p. 194.
[iii] Eastman, John. 1992. Forest and Thicket Mechanicsburg, PA; Stackpole Books. p. 197.

As a seasoned botanist and plant enthusiast, I've dedicated a significant portion of my professional and personal life to the study of plant species, particularly those found in diverse ecosystems such as woods and fields. My expertise extends to a wide range of herbaceous plants, including a comprehensive understanding of their botanical characteristics, ecological roles, and cultural significance.

Now, let's delve into the concepts presented in the article by Pamela Johnson regarding small herbaceous plants, particularly violets, found in woods and fields:

  1. John Bartram's Transformation into America's First Botanist:

    • The article mentions John Bartram's transition from a colonial farmer to America's first botanist. This transformation was triggered by a moment of inspiration in which Bartram, tired from farming, took a break under a tree and observed a field daisy. This experience led him to choose the study of flowers over plowing his fields.
  2. Violets and Their Symbolism:

    • The narrative highlights the potential embellishments in the retelling of Bartram's story, suggesting that a common field daisy might have been the actual inspiration instead of a violet.
    • Violets are emphasized for their presence in temperate regions worldwide, with approximately 500 species. The article explores the possibility of patriotic motivations for choosing violets as a symbol, given their ubiquity and ease of recognition.
  3. Cleistogamous and Chasmogamous Flowers:

    • Violets employ a reproductive strategy involving two types of flowers: cleistogamous (self-pollinating) and chasmogamous (pollinated by insects). Cleistogamous flowers ensure seed production even if pollinators are absent, but they lack genetic diversity.
  4. Seed Dispersal Mechanisms:

    • Violet seeds are dispersed through various mechanisms, including explosive seed-shattering, where seeds are ejected above the foliage, and myrmecochory, a process facilitated by ants attracted to elaiosomes (fatty, protein-rich appendages on seeds).
  5. Violet Pollination and Insect Interactions:

    • Violets attract precocious pollinators, such as small bees and flies, with their flower design and coloration.
    • The article discusses the diverse insect interactions with violets, including pollination by sweat bees and mason bees, feeding by fritillary butterflies and gall midges, and seed dispersal by ants.
  6. Culinary and Medicinal Uses of Violets:

    • Native Americans utilized violets for culinary purposes, employing mucilaginous leaves to thicken stews. Additionally, decoctions were made for pain relief and inflammation treatments.
  7. Identification Challenges and Botanical Exploration:

    • Identifying individual violet species can be challenging, requiring detailed knowledge of traits like clavate hairs, spur lengths, leaf lobes, and sepal cilia.
    • The article encourages readers to explore the vibrant world of violets and mentions the need for field guides for accurate species identification.
  8. Seasonality of Violets:

    • The article concludes with a poetic reflection on the imminent arrival of the violet season, describing violets as the "most visible beginning" of spring.

In summary, this article provides a rich exploration of the botanical, ecological, and cultural dimensions of violets, demonstrating the author's deep knowledge and passion for small herbaceous plants.

Violet species (Violaceae) – Wild Seed Project (2024)
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