Watermelon

Citrullus lanatus · Watermelon (EN) · Wassermelone (DE)

The watermelon (Citrullus lanatus), also known as the kawon, is an annual, trailing plant of the gourd family grown for its large, sweet fruit with juicy, most often red flesh. The species is strongly heat-loving — in the Polish climate it succeeds almost exclusively from transplants, in the warmest, sheltered positions, and under cover in cooler regions.

Full sun Medium watering USDA 10a–11b
Watering calculator

In short

  • Strongly heat-loving — in Poland grown exclusively from transplants, ideally under a tunnel or in a greenhouse.
  • Requires full sun, warmth and a long summer; the fruit usually ripens 80–100 days from sowing.
  • A deeper root system than the cucumber — it tolerates brief drying out better, but does not tolerate wet soil.
  • Blooms from June, and the fruit ripens in August and September.
  • In the Polish climate, early, small-fruited icebox-type cultivars work best (e.g. Sugar Baby, Blacktail Mountain).
  • Seeds germinate only in soil warmed to 20–25°C; in cold ground they rot instead of emerging.

Botanical data

Family
Cucurbitaceae (Cucurbitaceae)
Height
0.2–0.4 m
Width
1.5–3 m
Habit
Creeping
Growth rate
Fast
Position
Full sun
Soil
Sandy, Humus-rich
pH reaction
pH 6–6.8
Moisture
Moderate
Bloom
June–August
Hardiness
USDA 10a–11b
Propagation
From seed

Characteristics

An annual plant with long, trailing, roughly hairy shoots reaching 2–3 m and tendrils branched at their tips. The leaves are large, deeply pinnately lobed, grey- or bluish-green, which makes them easy to tell apart from the rounded, only shallowly lobed leaves of the cucumber or squash. The species is monoecious: the yellow, unisexual flowers appear singly, and the female flowers are recognised by a miniature, spherical fruit ovary just beneath the petals. The fruit is a very large false berry (pepo) with a hard rind and flesh filled with numerous flat seeds; the flesh may be red, pink, yellow or orange depending on the cultivar, and the rind uniformly green, marbled or striped. The root system reaches deeper than that of the cucumber, giving the plant slightly greater tolerance of short-term drying out. The watermelon is, however, extremely sensitive to cold: the seeds germinate only above 20°C, growth practically stops below 15°C, and the lightest frost destroys the plant. The USDA zone indicator has no practical significance here — like any annual, the watermelon ends its growing cycle before winter, so success in cultivation is determined not by frost hardiness but by the sum of heat and the length of the warm period in the season.

Popular cultivars

‘Sugar Baby’
A classic, early, open-pollinated icebox-type cultivar introduced in the 1950s. The fruit is small (2–4 kg), spherical, with a dark green, almost uniform rind and red, sweet flesh. Its short ripening period makes it one of the most frequently recommended for cultivation in a cooler climate, including in Poland.
‘Blacktail Mountain’
An open-pollinated cultivar bred by Glenn Drowns with the short, cool season of northern growing regions in mind. The fruit is spherical, 3–5 kg, with a dark green rind and red flesh, ripening exceptionally early, which makes it a valuable choice for gardeners in a temperate climate.
‘Crimson Sweet’
A popular cultivar with spherical-oval fruit, 8–12 kg, a light green rind with dark stripes and intensely red, very sweet flesh. Prized for its flavour and resistance to some diseases, it does however require a longer and warmer season than the small-fruited icebox-type cultivars.
‘Charleston Gray’
A cultivar bred at the USDA in the 1950s, with characteristic elongated fruit (10–15 kg) and a grey-green, matte rind. Resistant to anthracnose and fusarium wilt; owing to its long growing period it succeeds in Poland mainly under cover.
‘Bingo F1’
A Polish hybrid with early cropping, matched to cultivation in a shorter season. The fruit is round, dark green with darker stripes, with red flesh and a weight of several kilograms. Its earliness is its main advantage in the conditions of the Polish climate.

Growing and care

Watering

A deeper root system than the cucumber allows the plant to withstand brief drying out, but it requires constant moisture during the growth and fruit-setting phase. During ripening, watering is reduced, which increases the sugar content of the flesh; an excess of water at this stage promotes fruit cracking and dilutes the flavour.

In summer every ~2 days · drought tolerance: Medium

Fertilizing

Too much nitrogen stimulates lush shoot growth at the expense of fruit set and ripening; during fruiting, potassium is crucial.

every 2–3 weeks during the growing season · kompost, nawóz wieloskładnikowy o obniżonej zawartości azotu, z przewagą potasu

Planting

The position should be as warm and sheltered as possible, the soil fertile, permeable and quick to warm up; mulching with black film or agrotextile raises the substrate temperature and speeds up ripening. In cooler regions, cultivation under a tunnel or in a greenhouse.

Timing: transplants from April, planting out into the ground after the last frosts (late May–early June) · spacing 80–120 cm

Companion plants

Good companions

CornGardening tradition

Wysokie łodygi kukurydzy osłaniają ciepłolubne, płożące się arbuzy od wiatru i nie zacieniają ich nadmiernie, a rośliny nie konkurują o tę samą warstwę gleby.

Beans and other legumesGardening tradition

Bobowate wiążą azot atmosferyczny, wzbogacając glebę, a niski pokrój nie konkuruje z płożącymi pędami arbuza o światło.

Bad companions

Other cucurbits (cucumber, squash, courgette, melon)Practical observation

Wspólne choroby (mączniaki, mozaika wirusowa) i szkodniki szybko przenoszą się między spokrewnionymi gatunkami; z tego samego powodu arbuza nie sadzi się po innych dyniowatych bez kilkuletniej przerwy w płodozmianie.

PotatoGardening tradition

Silnie konkuruje o wodę i składniki pokarmowe, a jego uprawa i okopywanie utrudniają prowadzenie płożących pędów arbuza.

The evidence level indicates whether the relationship is backed by research, observation, or gardening tradition.

Diseases and pests

Powdery mildew

A white, powdery coating on leaves, shoots and buds. The leaves turn yellow, become deformed and drop prematurely. The coating develops on both sides of the leaf blade, is often clearly visible from above, and can easily be rubbed off with a finger — it is the superficial mycelium of an ectoparasite that draws nutrients from the epidermal cells by means of feeding structures (haustoria). At first single, round, white spots appear, which in time merge and cover the entire leaf surface and the young growth. Young leaves and the current season's shoots are the most susceptible; heavy infection causes them to pucker, stiffen and stop growing, and on buds it leads to deformation or death of the flowers. On the fruit of some species (gooseberry, apple, cucurbits) the coating leaves russeting or a corky skin. Towards the end of the season, small, dark fruiting bodies (chasmothecia, formerly called cleistothecia) — the pathogen's overwintering structures — appear within the coating. The disease affects many plants, including roses, oak, privet, lilac, cucurbits, cereals, grapevine, apple, gooseberry, phlox and coneflowers, with each of these hosts being infected by a specialised species of fungus.

Downy mildew

Yellow or angular (vein-bounded) spots on the upper leaf surface, matched underneath by a grey-violet or brown coating of spores. It differs from powdery mildew, whose white coating sits on the upper surface. It develops in humidity and cool nights and is dangerous to cucumbers, onions and grapevines. The spots are initially light green or yellowing, and their angular, mosaic-like shape arises because the pathogen's spread is halted by the larger leaf veins. The delicate, felt-like coating on the underside (hence the name 'mildew') is the sporulation of the oomycete — best seen in the morning or after a period of high air humidity. Over time the spots turn brown, dry out and merge, the leaf dies prematurely, which weakens the whole plant and lowers the yield. The disease is highly host-specialised: cucumbers and squashes are attacked by Pseudoperonospora cubensis, onion by Peronospora destructor, grapevine by Plasmopara viticola, and lettuce by Bremia lactucae — so infection of one species usually does not spread to unrelated crops.

Anthracnose

Dark, sharply defined, sunken spots appear on the leaves, stems and fruit, with collapsed, rotting patches on the fruit. In wet weather, pinkish, slimy masses of spores can be seen in the centre of the spots, often arranged in concentric zones. The spots enlarge and merge, the leaves die, and the fruit of beans, peppers, squash or strawberries rots; the disease intensifies in warm and humid summers. The most distinctive feature is precisely this salmon-pink, slimy coating of conidia filling the moist spots - these are the fungus's spore-producing clusters (acervuli), not a dry, powdery mould. On bean pods and fruit the spots are round, deeply sunken and sharply edged with a dark brown, sometimes reddish border; on leaf veins and stalks elongated, brownish-black, sunken streaks appear. On strawberry the disease attacks the fruit (hard, brown, sunken spots) as well as the crown and the stalks, leading to the dieback of whole plants. On cucurbits the young spots may be watery and translucent, later turning brown and cracking. Infected fruit is not suitable for storage, because the disease continues to develop after harvest.

Fusarium wilt

The 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.

Mosaic (viral disease)

A characteristic mosaic appears on the leaves — irregular, interweaving light and dark green or yellow patches and streaks. The leaves are often deformed, wrinkled, curled and smaller, and whole plants become stunted and fruit poorly. The symptoms are most visible on young leaves, and the fruit of cucumber, courgette or tomato may be blotchy and misshapen. The disease affects many vegetables, perennials and ornamental plants. The disease picture depends on the specific virus, the host species and the temperature — the same pathogen produces different symptoms on different plants. A distinguishing feature is that the mosaic is systemic (it affects the whole plant and develops from the youngest leaves) rather than localised like fungal leaf spots — there are no clearly delimited spots with a margin, no mycelial coating and no fruiting bodies. Besides the mosaic, there is vein clearing (a lightening of the tissue along the veins), striping and blister-like bulges of the leaf blade. Severe narrowing and thread-like tomato leaves (the so-called 'shoestring' symptom) is associated mainly with CMV (cucumber mosaic virus), occasionally with tobamoviruses, whereas TMV/ToMV mostly produce mosaic and mottling of the leaves. On the fruit you can observe blotching, concentric rings, wart-like bulges (cucumber) and uneven ripening (tomato), and on the flowers of ornamental plants — colour breaking, i.e. streaks and flecks of discolouration on the petals. In high temperatures (above ~28–30°C) the symptoms may become masked and temporarily disappear, only to return once it cools down — this does not mean the plant has recovered.

Aphids

Small (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.

Spider mites

Tiny (0.3–0.5 mm) arachnids, hard to spot with the naked eye, feeding on the underside of leaves. Symptoms: fine, pale speckling (feeding punctures); over time the leaves turn grey, yellow and dry out. Under heavy infestation a fine webbing becomes visible. Warm, dry air favours their development — a common problem for houseplants in winter near radiators. Spider mites are not insects but mites of the family Tetranychidae — adults have 8 legs (larvae only 6). The most common in cultivation is the two-spotted spider mite (Tetranychus urticae): yellowish-green females carry two dark spots on the sides of the body, while overwintering females turn orange-red. In orchards the fruit tree red spider mite (Panonychus ulmi) is frequent, whose red eggs overwinter in clusters on the bark of the shoots. Feeding mechanism: the mites puncture the cells of the epidermis and mesophyll on the underside of the leaf and suck out their contents, and the emptied cells fill with air — hence the characteristic, silvery-grey, fine speckling visible from the upper side of the blade (resembling a mosaic discolouration). At high numbers the leaves turn brown, curl and drop prematurely, and the whole plant weakens and loses its growth. Dense webbing spun between the leaves and shoot tips appears only under an advanced attack and is a sign of the risk of the pest spreading to neighbouring plants. The development cycle is very fast in warmth and drought — at a temperature of 25–30°C a single generation can be completed in 1–2 weeks, hence the numerous generations per season and the rapid, exponential build-up of the population. Females lay spherical, transparent eggs on the underside of the leaves. Fertilised females overwinter (in bark crevices, leaf litter and plant debris) or — in the fruit tree red spider mite — the eggs on the bark. Early infestation is easy to miss; diagnosis is helped by shaking a leaf over a white sheet of paper (moving specks become visible) or examining the underside of the leaf with a magnifying glass.

Toxicity

For whomLevelNotes
Humans None The flesh is fully edible; the seeds are also edible and, after processing, so is the rind (encountered in cooking as fried or pickled).
Dogs None
Cats None

History and origin

The watermelon originates from Africa. Until recently its wild ancestor was thought to be the bitter watermelon of the Kalahari Desert, but genetic research in recent years has pointed to a plant from the Nile Valley and Kordofan (Sudan) as the closest relative of the cultivated, sweet-fleshed forms. In ancient Egypt the watermelon was grown for more than four thousand years — its seeds and depictions have been found in tombs, including that of Tutankhamun. From the Mediterranean region the plant spread eastward, reaching India, and in the 10th century China, where to this day it bears the name 'xigua', meaning western melon. It reached Western Europe by way of Moorish Spain, and with colonisation was carried to both Americas. In Poland the watermelon long remained a curiosity grown under cover, but with the warming climate and the spread of early, small-fruited cultivars its backyard cultivation is becoming increasingly popular, especially in the warmer, south-western regions of the country.

Uses

In Polish conditions the watermelon is grown from transplants. The seeds are sown in April into separate pots — preferably peat pots — because the plant, like other cucurbits, tolerates disturbance of the root ball during transplanting very poorly. Germination requires warmth of around 22–25°C. The transplants are set out only in late May or early June, after the frosts have passed, at a spacing of 80–120 cm, as the shoots need plenty of room. The position must be in full sun, sheltered from wind and as warm as possible; mulching with black film or agrotextile raises the soil temperature and clearly speeds up ripening, and in cooler regions cultivation under a tunnel or in a greenhouse is often essential. During the growth and fruit-setting phase the plant is watered regularly and abundantly, with lukewarm water at the base, whereas during ripening watering is reduced — thanks to which the flesh is sweeter and the fruit does not crack. Ripeness is recognised by several signs: a drying tendril at the base of the fruit, a yellowed patch on the underside resting on the ground, and a dull, muffled sound when tapped. The fruit is eaten raw; its juice is also used, and the rind and seeds in some cuisines after processing. The watermelon returns to the same spot only after several years and never directly after other cucurbits, with which it shares diseases and pests.

Trivia

  • Botanically, the fruit of the watermelon is a false berry (pepo) with a hard rind, even though in culinary terms it is treated as a dessert fruit.
  • Watermelon flesh is about 91% water, and its red colour comes from lycopene — the same pigment responsible for the colour of tomatoes.
  • Seedless watermelons are triploids: they arise from crossing forms with different chromosome numbers and, to set fruit, require a seeded cultivar nearby as a pollen source.
  • The watermelon rind is edible after processing — in many cuisines it is fried or pickled, as is the white flesh just beneath it.

Frequently asked questions

Will a watermelon grow in Poland?

Yes, but it requires growing from transplants, an early cultivar and the warmest, most sheltered position — most reliably under a tunnel or in a greenhouse. In the open ground without cover the watermelon succeeds mainly in the warmer, south-western regions of the country and in warm summers. The key is choosing early, small-fruited icebox-type cultivars that will manage to ripen in a shorter season.

When and how to sow watermelon for transplants?

The seeds are sown in April, singly into pots (preferably peat pots, so as not to damage the roots during transplanting), at a temperature of 22–25°C. The transplants are set out into the ground only after the last frosts, in late May or early June, once the soil is permanently warmed.

How can you tell that a watermelon is ripe?

The most reliable signs are a dried tendril at the base of the fruit, a yellow or cream patch on the underside resting on the ground (the point of contact with the surface), and a dull, muffled sound when tapped. Size alone is not a reliable measure, because it depends on the cultivar.

Why does a watermelon flower but set no fruit?

The male flowers appear first and naturally drop off — fruit is set only by the female flowers, recognisable by a miniature ovary at their base. Pollinating insects are needed for fertilisation; a lack of pollinators, cold or rain during flowering limits fruit set. Seedless cultivars additionally require a seeded cultivar nearby as a pollen source.

How much space does a single watermelon plant need?

The shoots trail over 2–3 m, which is why the plants are set at a spacing of 80–120 cm. In a smaller area the shoots can be trained vertically on a strong support, but the ripening fruit must then be slung in nets, because their weight would tear them off the shoot.

Sources

Edited by:Redakcja Atlas-Flora. Updated: 7/25/2026.

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