Reference · Diseases

Rots (fungal)

Plant rots are a group of destructive diseases affecting crops globally, triggered by fungi, bacteria, or oomycetes. Common pathogens such as Fusarium, Phytophthora, and Erwinia break down cellular structures, leading to the decay of stems, roots, fruits, or tubers. These pathogens are often soil-borne, making them persistent threats in various agricultural systems.

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Protoscyphaceae Protoscyphaceae Protothelenella Protothelenella Protothelenella sphinctrinoidella Protothelenella sphinctrinoidella Protothelenellaceae Protothelenellaceae Protoventuriosis Protoventuria Pseudeurotiaceae fungi Pseudeurotiaceae Pseudeurotium Pseudeurotium Pseudeurotium zonatum Pseudeurotium zonatum Pythium damping-off Globisporangium debaryanum Pythium damping-off Pythium heterothallicum Pythium root rot Pythium aphanidermatum Pythium root rot Pythium ultimum Raspberry cane blight Didymella protuberans Red Aspergillus Eurotium rubrum Red collar rot Phacidiopycnis Red root rot Ganoderma philippi Red stele root rot of strawberry Phytophthora fragariae Red-belted conk Fomitopsis pinicola Rhizoctonia ear rot Waitea circinata Rice sheath brown rot Pseudomonas fuscovaginae Root and hypocotyl rot Plectosphaerella melonis Root olpidium Olpidium brassicae Rosellinia root rot Rosellinia spp. Rotbrenner Pseudopezicula tracheiphila Saccharata proteae Saccharata proteae Schizophyllum rot Schizophyllum commune Schweinitzii root rot Phaeolus schweinitzii Sclerotial rot Sclerotium denigrans Sclerotial rot of bulbous plants Sclerotium wakkeri Sclerotinia dry rot of gladiolus Sclerotinia draytonii Sclerotinia minor Sclerotinia minor Sclerotinia rot of bulbs Sclerotinia bulborum Sclerotinia subarctica Sclerotinia subarctica Sclerotiophoma Sclerotiophoma versabilis Sclerotiophoma Sclerotiophoma Sclerotium rot Sclerotium Sclerotium rot of onion Sclerotium bulborum Seed fusarium Gibberella acuminata Snow mold Globisporangium iwayamae Snow mold Sclerotinia borealis Snow mold Sclerotinia nivalis Snow rot of the crown Coprinus psychromorbidus Soft rot of sweet potato Trichoderma koningii Sorghum chlorotic leaf spot Sorghum chlorotic Sour rot Geotrichum candidum Southern blight Athelia rolfsii Southern blight Athelia rolsfii Southern blight Sclerotium delphinii Soybean chlorotic spot Soybean chlorotic spot virus Soybean necrotic dwarf Cycas necrotic Sparassis root rot Sparrasis crispa Sporothrix blue stain Sporothrix stenoceras Sporotrichosis Sporothrix Sporotrichum Sporotrichum Stachybotryosis Stachybotrys chartarum Stagonospora leaf spot of alfalfa Leptosphaeria weimeri Staurothele Staurothele Staurothele fissa Staurothele fissa Stem rot caused by Hexagonia hydnoides Hexagonia hydnoides Stemphylium leaf spot Stemphylium vesicarium
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Rots (fungal)

Virtually all cultivated plants are susceptible to one or more types of rot, including cereals, vegetables, fruits, and ornamental plants. The impact is significant not only during the growth phase, where it causes damping-off or wilting but also post-harvest. Rot-induced losses in storage can reach devastating levels, often ruining the economic value of an entire seasonal yield.

Symptoms typically involve tissue softening, discoloration, foul odors, and the visible presence of mold or mycelial growth. As the infection progresses, roots may decay entirely, causing the plant to wither and eventually collapse. Fruit rots often present as sunken, dark lesions that gradually spread to cover the entire surface, potentially mummifying the affected tissue.

The spread of these diseases is heavily dictated by environmental factors, particularly excessive soil moisture, high humidity, and poor aeration. Warm temperatures often accelerate the growth of fungal pathogens. Furthermore, physical damage from pests, weather events, or poor cultivation practices creates easy entry points for bacteria and fungi to colonize the host plant tissue.

Effective management requires an integrated approach that focuses on prevention. Key strategies include planting resistant varieties, practicing strict crop rotation, and ensuring good field drainage. Chemical control, including seed treatments and targeted fungicide applications, is essential in high-pressure areas. Maintaining proper hygiene in storage facilities is also critical to prevent disease spread after harvest.

  • Use of certified disease-free seeds
  • Optimizing irrigation systems
  • Regular soil health monitoring
  • Strategic fungicide application
  • Sanitation of storage areas