In short
- Grown for the globular swelling at the base of the shoot, not for the stalks (as in stalk celery).
- A very long growing season (about 180-200 days) - seedlings are sown as early as February-March.
- Needs constant moisture and fertile, deep soil; sensitive to boron deficiency (a hollow, brown centre of the swelling).
- Planted shallowly; the swelling is neither earthed up nor blanched.
- Tolerates light frosts - it is harvested late, in October, before hard frosts set in.
Botanical data
- Family
- Apiaceae (Apiaceae)
- Height
- 0.3–0.6 m
- Width
- 0.3–0.5 m
- Habit
- Upright
- Growth rate
- Moderate
- Position
- Full sun, Partial shade
- Soil
- Humus-rich, Loamy, Peaty
- pH reaction
- pH 6.5–7.2
- Moisture
- Moist
- Bloom
- June–July
- Hardiness
- USDA 6a–9b
- Propagation
- From seed
Characteristics
A biennial plant grown as an annual. In the first year it forms a ground-level rosette of erect, grooved leaf stalks with a strong, spicy aroma and, above all, at the base of the shoot, a large, almost globular swelling 8-15 cm in diameter and usually weighing 0.3-1 kg. This swelling is not a true root but an enlarged hypocotyl together with the upper section of the taproot; its pale cream flesh has a dense, mealy texture and a nutty, celery-like flavour. From the lower and lateral sides of the bulb grows a dense beard of lateral roots, the stronger the older the cultivar. The leaves are pinnately compound, dark green and glossy, borne on shorter and stouter stalks than those of stalk celery. In the second year, after overwintering, the plant bolts into a flowering stem up to a metre tall, with small white flowers gathered in compound umbels - in vegetable cultivation this stage is skipped, as the bulbs are harvested in the first season. The root system works shallower than the size of the swelling would suggest, which is why the plant is markedly sensitive to drying out. The growing season is very long: from sowing to harvest usually 180-200 days pass, making celeriac one of the longest-growing vegetables of the Polish garden.
Popular cultivars
- ‘Praski’
- An old, classic cultivar (also known as Prager Riesen / Giant Prague) with a large, globular swelling. The flesh is white and tasty, but the skin can be uneven, and a strong beard of lateral roots forms underneath, making peeling harder. A reference point for newer, smoother cultivars.
- ‘Monarch’
- A cultivar honoured with the RHS Award of Garden Merit, valued for its smooth skin and few lateral roots, which makes cleaning the bulb easier. The flesh is dense, white and mild in flavour.
- ‘Diamant’
- A cultivar with white flesh that darkens little after cutting, valued for even, smooth bulbs and tolerance of premature bolting into flowering stems. It keeps well through winter.
- ‘Odrzański’
- A late Polish cultivar with a large, globular swelling and good storage ability. It needs a full, long season to form a bulb of full size.
- ‘Jabłkowy Kulisty’
- An old Polish cultivar with a smaller, globular swelling and earlier cropping than the late cultivars. Suitable for a shorter season and for earlier harvest.
Growing and care
Watering
Needs constant, abundant moisture throughout the long season - drying out halts the growth of the swelling and worsens its quality.
Fertilizing
A greedy plant that likes very humus-rich soil; especially sensitive to boron deficiency, which causes browning and hollowing of the centre of the swelling (hollow heart).
Planting
Deeply humus-rich, constantly moist soil with a reaction close to neutral. Plant seedlings shallowly - the base of the rosette must stay above the soil. Planting out too early into the cold risks bolting into flowering stems.
Pruning
Towards the end of cultivation the spreading lower leaves are removed and soil is drawn away from the upper part of the swelling, and the lateral roots are shortened, which encourages a smooth, compact bulb.
Companion plants
Good companions
Klasyczne, korzystne sąsiedztwo — aromat selera odstrasza bielinka kapustnika, a rośliny kapustne dobrze rosną obok selera.
Por i seler mają zbliżone wymagania (żyzna, wilgotna gleba) i dobrze rosną w jednym zagonie.
Niska fasola szparagowa wzbogaca glebę w azot i dobrze współżyje z selerem, nie konkurując z nim silnie o światło.
Bad companions
Marchew należy do tej samej rodziny (baldaszkowate) i dzieli z selerem szkodniki, m.in. połyśnicę marchwiankę — sąsiedztwo ułatwia ich rozprzestrzenianie.
Ziemniak jest żarłocznym konkurentem o wodę i składniki pokarmowe, których wymagający seler bardzo potrzebuje przez cały długi sezon.
The evidence level indicates whether the relationship is backed by research, observation, or gardening tradition.
Diseases and pests
Numerous small, round spots appear on the leaves with a lighter, greyish centre and a darker, brown margin. Within the spots tiny black dots are visible – pycnidia, the fruiting bodies of the fungus, which distinguishes this disease from other leaf spots. The infection progresses from the lower, oldest leaves upwards; with heavy infection the spots merge, the leaves yellow, dry out and drop prematurely, weakening the plant. Affected plants include tomato, currant, phlox and many perennials. The spots are usually 2–5 mm across; the decisive identifying sign is the dark pycnidia at their centre – best seen through a hand lens, and in high humidity exuding whitish 'tendrils' of spores. Leaves densely peppered with spots look as if dusted. The disease is favoured by warm (about 20–25°C), humid weather and water lingering on the leaves for a long time (rain, dew, overhead watering). On tomato the infection is confined almost exclusively to the leaves and leaf stalks – the fruit usually stays healthy – but the loss of the photosynthetic apparatus leads to smaller fruit and exposes it to sunscald.
Fusarium wiltThe soil-borne fungus infects the root system and enters the vascular bundles, blocking the flow of water within the plant. The plants wilt, first on hot days and often on one side or from the lower leaves, then turn yellow and die despite moist soil. A cross-section of the stem reveals a characteristic brown discolouration of the vascular bundles. The disease intensifies in warmth — the pathogen develops best at high soil temperatures (about 25–30°C), which is why the first symptoms usually appear in midsummer. In the early phase the plants wilt during the hot midday and temporarily recover at night or after watering; over time the wilting becomes permanent. Yellowing progresses from the oldest, lower leaves upwards and is often distinctly one-sided — sometimes only half a leaf or one side of a shoot is affected, on the side along which the blocked vascular bundles run. The plants are stunted (growth is inhibited), and in seedlings fusarium wilt appears as damping-off and toppling of the transplants. Brown discolouration of the vascular bundles is the most reliable diagnostic feature — in fusarium wilt it is usually intense and reaches deep into the stem and the roots. Under moist conditions, especially at the base of the stem or on the cut surface, a delicate pink-salmon or white bloom of fungal sporulation may appear. Fusarium oxysporum occurs in specialised forms (formae speciales), each of which infects only a particular species or genus of plant (e.g. tomato, cucumber, pea, carnation, banana), which helps to distinguish it from pathogens with a wide host range.
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.
Sclerotinia rot (white mould)On the stems, at the base of the plants and on parts in contact with the soil, a watery, soft rot appears, covered with a dense, white, cottony fungal mycelium. Within the tissue and on its surface, black, hard resting bodies (sclerotia) the size of a grain form, which are a diagnostic feature. Infected plants wilt, snap and die; the disease attacks many species of vegetables and ornamentals. The infection usually begins as a pale, watery, almost translucent spot that quickly enlarges into a soft rot; in humid air it becomes overgrown with the characteristic, cotton-white mycelium. As the disease progresses, the infected stem becomes girdled and constricted and loses its rigidity, so that the plant above the point of infection wilts and dies, while the tissue, once dried out, bleaches and turns dry, stringy and frayed. The inside of affected stems (the pith) is often hollow and filled with black sclerotia the size of cereal grains — this is the most reliable feature distinguishing this disease. Sclerotinia infects a very wide range of hosts (including lettuce, beans, cucumbers, carrot, brassicas, sunflower, oilseed rape and numerous perennials and ornamentals), and the rot also develops after harvest, in stored roots and heads. In spring, small, cream-brown, cup-shaped fruiting bodies (apothecia) grow from the sclerotia lying in the soil and release ascospores, which infect plants most often through spent petals and weakened tissues.
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.
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.
Toxicity
| For whom | Level | Notes |
|---|---|---|
| Humans | Mild | An edible vegetable, but it contains furanocoumarins that in sensitive people can cause skin hypersensitivity to sunlight (photodermatosis); it can also be a food allergen. |
| Dogs | None | — |
| Cats | None | — |
History and origin
All cultivated forms of celery (Apium graveolens) derive from wild celery, which grows on the moist, brackish waterside margins of Europe, Western Asia and the Mediterranean basin; it was already valued medicinally and as a seasoning in ancient Greece and Rome. The root variety (var. rapaceum), selected for its edible swelling, was described in Europe in the 16th-17th centuries. It became especially popular in Central and Eastern Europe and in the German-speaking countries, where to this day it is far more common than stalk celery. In Polish cuisine celeriac established itself as one of the pillars of wloszczyzna - the bunch of root vegetables and leek used for cooking stocks, whose name refers to the Italian vegetables popularised in Poland from the 16th century.
Uses
Celeriac is grown almost exclusively in the open ground, for a swelling harvested in autumn. Because of the long growing season, seedlings are sown very early - in February or March, indoors or under cover - as the seeds germinate slowly and unevenly. The seedlings are planted out in the second half of May, once the risk of prolonged cold has passed: exposing young plants to cold too early can trigger premature bolting into flowering stems. They are planted shallowly, so that the base of the rosette stays above the soil; the site must be fertile, deeply humus-rich and constantly moist, with a reaction close to neutral. The plant is a heavy feeder and especially sensitive to boron deficiency, which causes browning and hollowing of the centre of the swelling (so-called hollow heart). Towards the end of cultivation the spreading lower leaves are removed and soil is drawn away from the upper part of the bulb, and the lateral roots are shortened, which encourages a smooth, compact swelling; it is neither blanched nor earthed up, unlike the stalks of stalk celery. Harvesting is done late, in October, before the arrival of harder frosts - the plant tolerates light frosts. The bulbs keep well through winter in a cool cellar, laid in moist sand. In the kitchen celeriac goes into stocks and soups, purees and bakes, and grated raw - into salads, including the classic French remoulade.
Trivia
- The edible "root vegetable" of celery is mostly not a root but an enlarged hypocotyl of the shoot - the true root forms only the beard at the base of the bulb.
- Celeriac and stalk celery are the same species (Apium graveolens) in two botanical varieties: var. rapaceum gives the swelling, var. dulce - the fleshy leaf stalks.
- It is one of the longest-growing vegetables in the Polish garden - about half a year passes from sowing to harvest, which is why the seedlings are started as early as winter.
Frequently asked questions
How does celeriac differ from stalk celery?
They are the same species (Apium graveolens) in two varieties. Celeriac (var. rapaceum) forms a large, globular swelling at the base of the shoot and it is this that is edible, while the leaves are tough and used mainly as a seasoning. Stalk celery (var. dulce) forms no swelling - its fleshy, crisp leaf stalks are eaten.
Why does celeriac have a hollow, brown centre?
The most common cause is boron deficiency, to which celery is especially sensitive; uneven watering and drying out also contribute. The centre of the swelling browns and hollows out. This is prevented by fertile soil, constant moisture and topping up boron according to the plant's nutritional needs.
When should celeriac be sown?
Very early - seedlings are sown indoors or under cover as early as February or March, because the species has a long (about 180-200 days) growing season and the seeds germinate slowly. The seedlings are planted out only in the second half of May, after the risk of prolonged cold has passed, which could otherwise trigger premature flowering.
When to harvest and how to store celeriac?
It is harvested late, in October, before the arrival of harder frosts - the plant tolerates light frosts. The bulbs keep well throughout winter in a cool, moist cellar, laid in crates with damp sand, which protects them from drying out.
Why does celeriac not form a large swelling?
Most often the season was too short (seedlings sown too late), the soil too poor or the plants lacked water. Proper spacing also matters - planting too densely limits bulb size. The key is early sowing, a fertile site and constant moisture throughout the long growing period.
Sources
- RHS — Growing celeriacInstitution / botanical garden
- Plants of the World Online (POWO)Database (GBIF, POWO…)
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