In short
- Requires constant, abundant moisture — it comes from marshy habitats.
- Needs deep, very humus-rich soil and regular fertilising.
- A long growing period — seedlings are raised early indoors.
- The stalks are blanched by earthing up or wrapping, so that they are crisp and mild.
- Cold after planting out can trigger premature bolting.
Botanical data
- Family
- Apiaceae (Apiaceae)
- Height
- 0.4–0.6 m
- Width
- 0.3–0.4 m
- Habit
- Upright
- Growth rate
- Moderate
- Position
- Full sun, Partial shade
- Soil
- Humus-rich, Loamy, Peaty
- pH reaction
- pH 6–7.5
- Moisture
- Moist
- Bloom
- June–July
- Hardiness
- USDA 6a–9b
- Propagation
- From seed
Characteristics
It forms a dense rosette of erect, thick, grooved leaf stalks with a strong, spicy aroma. In the second year it produces a flowering stem with small, white flowers arranged in umbels. The cultivars are divided into self-blanching ones and those that require blanching by earthing up.
Growing and care
Watering
It comes from moist habitats and requires constant, abundant moisture — drying out makes the stalks stringy, bitter and hollow inside.
Fertilizing
A hungry plant that likes very humus-rich soil; sensitive to boron deficiency, which causes cracking of the stalks.
Planting
Deep, humus-rich, constantly moist soil. Do not plant the seedlings too deep — the heart of the plant must remain above the ground. Planting out too early in the cold risks bolting.
Pruning
The stalks are blanched (blanching) by earthing up the plants with soil or wrapping them in paper or cardboard to cut off the light — they then become paler, crisper and milder in flavour.
Companion plants
Good companions
A classic, beneficial neighbourhood — the aroma of celery deters the cabbage white butterfly, and brassicas grow well next to celery.
Leek and celery have similar requirements (fertile, moist soil) and grow well in the same bed.
The low French bean enriches the soil with nitrogen and coexists well with celery, without strongly competing with it for light.
Bad companions
The carrot belongs to the same family (umbellifers) and shares pests with celery, including the carrot fly and leaf-mining flies — the neighbourhood facilitates their spread.
Maize is a hungry competitor for water and nutrients, which the demanding celery greatly needs.
The evidence level indicates whether the relationship is backed by research, observation, or gardening tradition.
Diseases and pests
Brown to dark-brown spots appear on the leaves with characteristic concentric, zoned rings resembling a "target board", often surrounded by a yellow halo. The spots enlarge and merge, and the leaves dry out and die, starting with the oldest, lower ones. On fruit, tubers and roots, dark, dry, sunken rot spots form, and the infected tissue becomes covered with a dark-olive, velvety coating of spores. The concentric rings within a spot are the most reliable diagnostic feature — they arise from the alternating, day-and-night growth of the mycelium and are best seen against the light. The picture depends on the host and the fungal species: on potato and tomato (Alternaria solani, "early blight") small dark specks on the lower leaves enlarge into oval, zoned necroses; on brassica vegetables (A. brassicae, A. brassicicola) the spots may be surrounded by a broad chlorotic halo and spread onto the seed pods; on carrot (A. dauci) infection begins at the margins of the older leaves, causing blackening and dieback of the foliage that hampers mechanical harvest. Older spots often die and crumble away in the centre, giving the blade a "shot-hole" appearance, and heavy infection leads to yellowing and premature defoliation, which exposes the fruit to sunscald. On stems and leaf stalks elongated, dark, sunken streaks form, and in seedlings the fungus can cause damping-off at the base of the shoot.
Grey mouldA grey-brown, fluffy coating of mycelium on flowers, fruit, leaves and shoots, preceded by watery, rotting spots. It attacks weakened and damaged tissue and develops rapidly in humidity and cool conditions and where air circulation is poor. Common on strawberries, begonias, peonies and roses. The coating is characteristically 'mousy' — fluffy and ashy grey, and when the infected tissue is knocked a visible cloud of spores (conidia) puffs up, which is a diagnostic feature of this disease. Infection usually starts in the weakest tissues: fading petals, wounds, hail marks or pest feeding damage, as well as pollen residue settled on the petals. Small, brown, watery spots appear on the flowers and quickly engulf the whole bloom ('flower blight'); from the infected flower the fungus often grows down into the shoot, causing it to constrict and die back. On soft fruit (strawberry, raspberry, grapes, tomato) a watery, browning rot develops, covered with a thick layer of grey, fluffy felt — the berry softens and 'dissolves'. On seedlings and cuttings Botrytis causes basal stem rot and the sudden collapse of plants. In older, dying mycelium and on plant debris hard, black, irregular lumps form — sclerotia (resting bodies), by which the pathogen overwinters in the soil and in plant debris. The disease also shows up after harvest, as a rapidly advancing storage rot of fruit and vegetables.
Slugs and snailsSlugs and shelled snails that feed at night and after rain. Symptoms: irregular holes in the leaves and young seedlings eaten off completely, silvery slime trails on leaves and soil. The greatest damage occurs in damp, shaded spots — particularly on lettuce, strawberries and hostas. The most damaging in gardens are the slugs (which lack an external shell): the Spanish slug (Arion vulgaris, formerly described as A. lusitanicus) and the grey field slug (Deroceras reticulatum). The leopard slug (Limax maximus) can be morphologically similar to them, but it feeds mainly on decaying organic matter and fungi and may even prey on other slugs, so it is of little importance as a pest of living plants. Shelled forms — grove snails (Cepaea) or the protected Roman snail (Helix pomatia) — usually cause less damage. The body is soft, elongated and permanently covered in slime; on the head there are two pairs of retractable tentacles — the longer upper pair bears the eyes, the shorter lower pair serves a tactile and olfactory function. Slugs and snails are hermaphrodites: they lay spherical, transparent or pearly eggs in clusters, hidden in damp soil, under stones and in leaf litter. A single Spanish slug can lay several hundred eggs; both eggs and young slugs overwinter, and feeding lasts from spring to late autumn, intensifying on warm, damp nights. The damage has smooth edges and often appears in the middle of the leaf blade, not only from the margin; seedlings and transplants are sometimes eaten down to bare soil, and on strawberries and ripening vegetables the slugs gnaw hollows into the fruit. The decisive diagnostic sign is the dried, silvery glistening slime trail — no insect leaves one.
AphidsSmall (1–3 mm) soft-bodied insects, green, black or pink, feeding in clusters on young shoots and the underside of leaves. They excrete sticky honeydew. The diagnostic feature that distinguishes aphids from other small sucking insects is the pair of siphunculi (tubular projections) at the rear of the abdomen together with a tail-like cauda; a single colony usually holds wingless forms (parthenogenetic females) alongside winged migrants that fly onto new plants in summer. In summer aphids reproduce parthenogenetically and viviparously over many generations, so the population builds up explosively; in autumn many species produce a sexual generation that lays overwintering eggs on the host, and host-alternating species move between a winter host (often a tree or shrub) and a summer host (a herbaceous plant). Feeding symptoms include curling, crinkling and distortion of young leaves, stunted growth, yellowing, and the shedding of buds and fruitlets. Abundant honeydew coats the leaves, and the sooty mould fungus that develops on it forms a black film which limits photosynthesis; the honeydew is fed on by ants, which in return defend the colony against predators. Aphids are also important vectors of plant viruses (mosaics among them), transmitting them from plant to plant even during a brief probing puncture.
Carrot flyA fly whose larvae tunnel through the roots of carrots (as well as parsley, celery and parsnip). Symptoms: rusty tunnels and galleries in the root, brownish-red discolouration of the foliage, a bitter taste and rotting of the roots in storage. Adults are attracted by the scent of damaged leaves. The adult carrot fly is a small fly, about 4-5 mm long, with a slender, glossy black abdomen, a rusty-yellow head, yellow legs and transparent, faintly iridescent wings - hence its Polish name 'polysnica' (the shiny one). The insect flies low over the ground and weakly, readily hiding in the shade of plants. The larva is legless, creamy-yellow and glossy, growing to 8-10 mm; it is the larva that causes the damage, mining shallow, winding galleries just beneath the skin of the root, which rust over and crack in time. Two generations usually develop during the season (locally a third): the first flights fall at the turn of April and May, while the most damaging, more numerous second generation feeds from August to September, injuring the roots just before harvest. The pest overwinters as a larva in roots left in the soil or as a puparium in the ground. The first sign is often a brownish-red, somewhat wilted discolouration of the foliage; once the root is lifted, rusty furrows and tunnels filled with dark droppings become visible. Damaged roots turn bitter, rot readily in store and become a gateway for secondary fungal and bacterial infections.
Toxicity
| For whom | Level | Notes |
|---|---|---|
| Humans | Mild | An edible vegetable, but it contains furanocoumarins that can cause sun sensitivity of the skin (photodermatosis) in susceptible people; it is also a food allergen. |
| Dogs | None | — |
| Cats | None | — |
History and origin
Wild marsh celery, growing in the moist, brackish habitats of Europe, was used medicinally and as a spice as early as ancient Greece and Rome. The mild, fleshy stalk variety was selected in Europe only in the 17th century.
Uses
The stalks are eaten raw as a snack and in salads, as well as cooked and braised; they are a classic component of soup greens and a vegetable base (together with carrot and onion). A demanding crop, mainly grown in the ground.
Trivia
- The wild ancestor of celery is bitter and intense — only selection produced the mild, juicy stalks known from cultivation.
- The water- and fibre-rich stalks, with a low energy content, are sometimes called a “negative-calorie” vegetable, though this is a simplification.
Frequently asked questions
Why are celery stalks stringy and bitter?
The most common cause is water shortage. Celery comes from moist habitats and, when dried out, forms fibrous, bitter, sometimes hollow stalks. The key is constant, abundant moisture and fertile soil.
How do you blanch celery?
A few weeks before harvest the plants are earthed up with soil or the stalks are wrapped in paper or cardboard, cutting off the light. The stalks then become paler, crisper and milder; self-blanching cultivars do not require this.
Why does celery bolt in the first year?
Celery is a biennial, but a longer cold spell just after planting out can “trick” it and trigger premature flowering already in the first year. That is why seedlings are planted out only once the risk of prolonged cold has passed.
Sources
- RHS — Growing celeryInstitution / botanical garden
- Plants of the World Online (POWO)Database (GBIF, POWO…)
My note
A private note for this plant — saved in your browser.