Pepper

Capsicum annuum · Pepper (EN) · Paprika (DE)

The pepper (Capsicum annuum) is a warmth-loving, annual vegetable of the nightshade family, grown for its edible fruits — from sweet to very hot chilli varieties.

Full sun High watering USDA 9a–11b
Watering calculator

In short

  • Warmth-loving — plant out only after the last frosts.
  • Requires full sun, warmth and a sheltered position.
  • Regular watering prevents blossom-end rot of the fruits.
  • The heat of chilli varieties comes from capsaicin.
  • Grows well in containers on a sunny balcony.

Botanical data

Family
Solanaceae (Solanaceae)
Height
0.4–1 m
Width
0.3–0.5 m
Habit
Upright
Growth rate
Moderate
Position
Full sun
Soil
Humus-rich
pH reaction
pH 6–6.8
Moisture
Moderate
Bloom
June–August
Hardiness
USDA 9a–11b
Propagation
From seed

Characteristics

A bushy plant with a branched stem, oval leaves and small, white flowers. The fruit is a hollow berry that varies in shape, size, colour and heat depending on the variety.

Growing and care

Watering

Requires regular, even watering at the base; irregular watering encourages blossom-end rot of the fruits.

In summer every ~2 days · drought tolerance: Low

Fertilizing

High potassium supports fruiting; excess nitrogen produces lush foliage at the expense of fruit.

every 2 weeks from fruit set · nawóz do pomidorów i papryki (wysoki potas)

Planting

Fertile, warm, free-draining soil; a very sunny and sheltered position — the pepper is warmth-loving.

Timing: May–June (after the last frosts) · spacing 40–50 cm

Pruning

Remove the first flower (the so-called crown flower) for better branching; support plants laden with fruit.

Timing: During the season (optional). · Caution: Do not plant out too early — cold below 10°C inhibits growth.

Companion plants

Good companions

BasilGardening tradition

Basil, as with tomatoes, can repel some of the pests that attack peppers; both like warmth and sun.

Bad companions

TomatoResearch-backed

Both nightshade vegetables are susceptible to the same diseases (e.g. blight) and pests — proximity increases the risk of their transmission.

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.

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.

Greenhouse whitefly

Tiny (1-2 mm) white insects resembling minuscule moths that rise in a cloud when the plant is disturbed. They feed on the underside of leaves, sucking sap and excreting honeydew. This causes yellowing and weakening. Common on tomatoes, peppers, cucumbers and pelargoniums, especially in polytunnels and greenhouses. The wings of the adults are covered with a white, waxy bloom (hence the name) and at rest lie flat, roof-tile fashion over the body. Females lay their eggs on the underside of young leaves, often in characteristic arcs or circles, on short stalks. The eggs hatch into mobile first-instar larvae (so-called crawlers), which, once they find a feeding site, lose the ability to move and, as flat, oval, translucent greenish 'scales', attach themselves to the leaf until pupation. Feeding symptoms are pale spots, yellowing and wilting of the leaves and - most troublesome of all - copious honeydew, on which sooty mould (sooty mould fungi) develops, disfiguring leaves and fruit and limiting photosynthesis. In heated greenhouses the whitefly develops without interruption, producing many overlapping generations throughout the year; in the Polish climate it does not overwinter outdoors (it is killed by frost), so the source of infestation is protected cultivation and introduced seedlings, while in summer the insects may fly out into the open ground. The whitefly can also be a vector of plant viruses (criniviruses, e.g. tomato chlorosis virus).

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.

Thrips

Very small (1–2 mm), slender, elongated insects with fringed wings, coloured yellow, brown or black; the larvae are pale yellow and wingless. They suck sap from the cells of leaves, petals and buds. Symptoms: silvery to silvery-grey streaks and blotches on the leaves, tiny black specks of excrement, and distortion of young leaves, buds and flowers. They are especially damaging under glass and on houseplants, and some species transmit plant viruses. The silvery sheen appears once the pest has sucked out the contents of the epidermal cells — the empty, air-filled cells reflect light like metallic streaks; they are accompanied by glistening black specks of excrement, which distinguish thrips feeding from that of most other sap-sucking pests. The mouthparts are piercing-sucking and asymmetric (only a single mandible), so the insect first rasps the tissue and then sucks up the exuding sap. On flowers, feeding produces white or brownish discolouration and distortion of the petals — severe on roses, chrysanthemums, orchids and cyclamens. The life cycle is short and, in warm conditions, the generations overlap: the females lay eggs inserted into the plant tissue, the larvae (two instars) feed on the leaves and then drop to the soil or litter, where they pass through the immobile prepupal and pupal stages. Among the most damaging are the western flower thrips (Frankliniella occidentalis) — a key greenhouse pest and vector of tospoviruses (including tomato spotted wilt, TSWV) — and the onion thrips (Thrips tabaci). Only the larvae acquire the viruses, while the adults transmit them, so reducing the larvae also lowers the risk of viral infection.

Toxicity

For whomLevelNotes
Humans None
Dogs Mild Hot varieties (capsaicin) can irritate animals' digestive tract.
Cats Mild

History and origin

Peppers were cultivated in Central and South America for thousands of years. After Columbus's voyages they reached Europe and Asia, revolutionising cuisines around the world — especially the hot chilli varieties.

Uses

For growing in the ground, in polytunnels, greenhouses and in containers on a sunny balcony. The fruits are eaten raw, cooked, dried and ground into a spice.

Trivia

  • The heat of peppers is measured on the Scoville scale; sweet peppers have 0 units, while the hottest varieties exceed 2 million.
  • Capsaicin, the compound responsible for the heat, is not perceived by birds — a natural mechanism for seed dispersal.

Frequently asked questions

Why do peppers set fruit poorly?

The most common causes are too low a temperature (the pepper is warmth-loving), lack of pollination in the heat, or excess nitrogen producing leaves at the expense of fruit. Warmth, sun and a potassium fertiliser are key.

Can sweet and hot peppers grow next to each other?

They can, but if you are growing them for your own seed there is a risk of accidental cross-pollination, which may change the heat in the next generation. For simply eating the fruit in a given season, the proximity does no harm.

Can peppers be grown in a container?

Yes, excellently — especially compact and chilli varieties. It needs a large, sunny container, regular watering and feeding with potassium.

Sources

Edited by:Redakcja Atlas-Flora. Updated: 7/3/2025.

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