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IdMicrobe: Plant Pest Guide, Professional and Homemade Tips and Treatments

The Guide to Caring for Your Plants

Learn to recognize pests and how to combat them

idMicrobe: Consult treatments and eliminate plant pests

The Guide to Caring for Your Plants

Learn to recognize pests and how to combat them

Anthracnose

Frutos

How to recognize and combat fruit anthracnose

Anthracnose

Fungus

Type:

Risk to the plant:

HIGH

Colletotrichum sp.

Pathogen:

How to recognize and combat fruit anthracnose

Antracnosis

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WHO CAUSES IT?

Colletotrichum sp. is a genus of phytopathogenic fungi comprising numerous species capable of causing disease in a wide variety of crops, especially fruits. Many species exhibit hemibiotrophic behavior, initiating colonization of living tissues relatively discreetly and subsequently progressing to a necrotrophic phase in which they destroy cells and cause visible lesions. The fungus develops a mycelium composed of hyphae that can grow on the surface and penetrate tissues. An important characteristic of many Colletotrichum species is the formation of specialized structures called appressoria, which allow the fungus to adhere firmly to the plant surface and exert mechanical pressure and enzymatic activity to penetrate the cuticle and access internal tissues. Infection can occur through directly penetrable tissues, although wounds, cracks, insect damage, and other lesions considerably facilitate pathogen entry. After becoming established, the fungus may initially remain inconspicuous, especially when the fruits have not yet reached maturity. As the infection progresses and the fruit ripens, the pathogen's activity may increase and become evident through the appearance of characteristic necrotic lesions. Acervuli, reproductive structures in which numerous conidia are produced, form in the affected areas. Conidia are generally hyaline and unicellular and constitute one of the main sources of pathogen propagation. When environmental conditions are favorable, conidia can germinate on the fruit surface and form germ tubes and appressoria. Surface moisture is especially important for germination and penetration to occur. Conidia can be released from the lesions by water and subsequently reach other susceptible fruits or tissues. Rain, sprinkler irrigation, water splash, tissue contact, and cultivation practices can all promote their dispersal. The pathogen can also survive between growing seasons in infected plant debris, affected fruit, and other contaminated materials, providing sources of inoculum for new infections. In certain species, infections can remain latent for a significant portion of fruit development and manifest themselves later during ripening or after harvest. This characteristic is especially relevant in fruits intended for storage and sale, since a fruit that appears healthy at harvest time can develop lesions during transport or storage.

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SYMPTOMS

Anthracnose caused by Colletotrichum sp. primarily affects fruit and is characterized by the appearance of necrotic lesions that can develop rapidly under favorable temperatures and high humidity. The first signs of the disease appear as small, circular, slightly sunken spots of varying color, which subsequently increase in size and turn brown, reddish, black, or grayish depending on the Colletotrichum species and the affected fruit. As the infection progresses, the lesions can penetrate deeper into the tissues and cause extensive rot. Under high humidity, the lesions develop masses of viscous conidia that may exhibit orange, pink, or salmon hues, characteristic of many species within the genus. The disease can appear during cultivation but can also manifest after harvest, especially when the fruit reaches maturity. The progression of the lesions reduces the firmness, quality, and shelf life of the fruit and can cause significant losses when a high inoculum level is present. The disease can manifest itself through:

• Circular or irregular spots of brown, reddish, grayish, or black color.

• Slightly sunken or depressed lesions on the surface of the fruit.

• Small lesions that progressively increase in size.

• Necrosis of the affected tissues.

• Appearance of areas of soft or progressive rot.

• Formation of concentric lesions or lesions with clearly defined borders on some fruits.

• Appearance of masses of orange, pink, or salmon-colored conidia on the lesions under humid conditions.

• Cracks and deterioration of the epidermis in the affected areas.

• Progressive sinking of the tissues.

• Spread of the rot into the interior of the fruit.

• Loss of firmness and alteration of texture.

• Uneven ripening or accelerated deterioration of the affected fruits.

• Development of lesions during storage and transport. • Post-harvest rot that can continue to develop even if the fruit showed no obvious symptoms at harvest.

• Reduction in marketable quality and an increase in the percentage of discarded fruit.

Anthracnose in fruit: How to recognize and effectively treat it
Fruit affected by anthracnose with dark spots and sunken lesions
Anthracnose: Symptoms, damage and solutions in fruit
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DEVELOPMENT CONDITIONS

Temperature:

20–30 °C

Humidity:

90–100 %

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HOW IS IT SPREAD?

Conidia transported by wind, rain, water splashes, irrigation water, contact between fruits, infected plant debris, affected fruits, contaminated tools, agricultural machinery, contaminated harvesting boxes and materials, hands and clothing of workers, insects, wounds caused by pests, contaminated plant material.

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HOW TO ELIMINATE IT?

Home treatments

BONE MEAL OR GROUND FISH SHELLS

RUSTY NAILS OR IRON SHAVINGS

BANANA PEELS

EPSOM SALTS (MAGNESIUM SULFATE)

SOLUTION WITH HOUSEHOLD BORAX

GROUND OR BOILED EGGSHELLS

COMPOST WITH ONION OR GARLIC SCRAPS

VEGETABLE COOKING WATER

WOOD ASH

WATER WITH VINEGAR OR LEMON (VERY DILUTED)

GARLIC INFUSION

USED COFFEE OR TEA

BANANA AND EGGSHELL INFUSION

POTATO OR LEGUME COOKING WATER

COMPOST FROM FRESH GREEN LEAVES

COMPOST OR WELL-AGED MANURE

DILUTED MILK (1:10)

BANANA TEA

LEAF COMPOST

NETTLE SLURRY

POTASSIUM SOAP AND NEEM OIL SOLUTION

POTASSIUM SOAP SOLUTION + NEEM OIL + DIATOMACEOUS EARTH

BAKING SODA AND NEUTRAL SOAP SOLUTION

GARLIC INFUSION WITH NEUTRAL SOAP

CHROMATIC OR ADHESIVE TRAPS

DILUTED MILK

HORSETAIL INFUSION

TRUNK WHITEWASHING

DIATOMACEOUS EARTH

WOOD ASH

NETTLE SLURRY

CUT THE AFFECTED BRANCHES AND APPLY CINNAMON

GARLIC AND CINNAMON INFUSION

INFUSION OF WORMWOOD, CHILI OR CHILLI

CLEAN THE AFFECTED AREA AND APPLY ASH PASTE WITH GARLIC OR CINNAMON

GARLIC AND MINT INFUSION

LIGHT TRAPS

APPLY CINNAMON POWDER

PITFALL TRAPS

CRUSHED EGG SHELLS

CLEAN AND SEAL THE WOUND WITH CLAY, CINNAMON AND GARLIC PASTE

GARLIC INFUSION

MATURE COMPOST

TRAPS WITH VINEGAR AND SOAP

SEAL HOLES WITH ASH PASTE AND CRUSHED GARLIC

VINEGAR AND BAKING SODA SOLUTION

ANT TRAP

TAPE TRAP

PHEROMONE TRAP

ALCOHOL TRAPS

FUNNEL TRAP

There are no home treatments

Natural allies

PREDATORY MITES

LADYBUGS

LACEWINGS

PARASITIC WASPS

HOVERFLIES OR PARASITIC FLIES

PREDATORY BUGS

There are no natural allies

Mycodiplosis oidii (predatory mosquito)

Chemical treatments

AGRICULTURAL SULFUR (POWDER OR SOLUBLE)

POTASSIUM FERTILIZERS

MAGNESIUM FERTILIZERS

BORON FERTILIZERS

CALCIUM FERTILIZERS

NITROGEN FERTILIZERS

PHOSPHORUS FERTILIZERS

IRON FERTILIZERS

SULFUR FERTILIZERS

NPK FERTILIZERS

There are no treatments for this disease. Treatments are directed at the insect vectors that transmit it. See insect treatments.

ABAMECTIN 0.0015% + PYRETHRINS 0.02%

RAPESEAL OIL

RAPESEAL OIL + PYRETHRINS

ORANGE OIL 6%

PARAFFIN OIL

ACETAMIPRID

ACETAMIPRID 0.005%

ACETAMIPRID 20%

SULFUR

COPPER 20%

COPPER 25%

COPPER 35%

COPPER 38%

COPPER 50%

COPPER 52%

DELTAMETHRIN 1.57%

DELTAMETHRIN 10%

DELTAMETHRIN 2.5%

DIFENOCONAZOLE 1.67%

ESFENVALERATE 2.5%

ESFENVALERATE 5%

100% GARLIC EXTRACT

PHENHEXAMIDE 50%

FLUPYRADIFURONE

FLUPIRADIFURONE 20%

FOSETIL-AL 80%

FERRIC PHOSPHATE

ALUMINUM PHOSPHIDE 56%

PHOSTIAZATE 10%

PHOSTIAZATE 15%

HEXITIAZOX 10%

POTASSIUM HYDROGEN CARBONATE

LAMBDA CYHALOTHRIN

LAMINARIN 4.5%

METALDEHYDE

PIRACLOSTROBIN 6.7% + BOSCALIDE 26.7%

PYRETHRINS

PYRIPROXIFEN 10%

POTASSIUM SALTS OF UNSATURATED FATTY ACIDS

SPINOSAD 0.024%

SPINOSAD 12%

SPINOSAD 48%

TAU-FLUVALINATE 24%

TETRACONAZOLE 10%

TETRACONAZOLE 12.5%

TETRACONAZOLE 4%

TRICHODERMA ASPERELLUM (STRAIN T34)

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