Reference · Diseases

Bacterial diseases

Bacterial plant diseases are caused by various phytopathogenic bacteria, including species of Erwinia, Xanthomonas, and Pseudomonas. These microorganisms act as parasites, invading the plant host through natural openings or wounds created by pests, hail, or agricultural tools. Once inside, they reproduce rapidly, producing enzymes that degrade cell walls and cause tissue breakdown.

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Common scab of potato Streptomyces cremeus Common scab of potato Streptomyces violaceusniger Common scab of potato Streptomyces venezuelae Common scab of potato Streptomyces albidoflavus Contagious equine metritis Taylorella equigenitalis Corky root rot of lettuce Sphingomonas suberifaciens Corynebacteriosis Corynebacteriaceae Cotton fiber degradation Erwinia herbicola Cotton phyllody Cotton phyllody phytoplasma Coxiella Coxiella Coxiella burnetii Coxiella burnetii Coxiellaceae Coxiellaceae Cranberry false blossom Cranberry false blossom phytoplasma Crowfoot grass Dactyloctenium white leaf phytoplasma Crown gall Rhizobiaceae Crown gall Rhizobiales Crown gall Allorhizobium Crown gall of grapevine Allorhizobium vitis Crown gall of raspberry Rhizobium rubi Cupriavidus Cupriavidus Cupriavidus campinensis Cupriavidus campinensis Cupriavidus metallidurans Cupriavidus metallidurans Curtobacteriosis Curtobacterium aurantiacum Curtobacterium luteum infection Curtobacterium luteum Curtobacterium wilt Curtobacterium Curtobacterium wilt Curtobacterium citreum Cyanobacteria Cyanobacteria Cyanobacterial bloom Cyanobacteriaceae Cylindrospermum Cylindrospermum Cylindrospermum licheniforme Cylindrospermum licheniforme Cytophaga hutchinsonii Cytophaga hutchinsonii Cytophagosis Cytophaga Cytophagosis Cytophaga heparina Deinococcales Deinococcales Deinococci Deinococci Deinococcosis Deinococcaceae Deinococcosis Deinococcus Deinococcus radiodurans Deinococcus radiodurans Dermatophilosis Dermatophilus congolensis Dermatophilosis Dermatophilaceae Dermatophilosis Dermatophilus Desulfovibrio Desulfovibrio desulfuricans Desulfovibrio Desulfovibrio Desulfovibrionaceae Desulfovibrionaceae Desulfovibrionales Desulfovibrionales Dickeya aquatica Dickeya aquatica Dickeya dianthicola Dickeya dianthicola Dickeya fangzhongdai Dickeya fangzhongdai Dickeya lacustris Dickeya lacustris Dickeya undicola Dickeya undicola Dictyoglomaceae Dictyoglomaceae Dictyoglomales bacteria Dictyoglomales Dictyoglomi Dictyoglomi Dictyoglomiasis Dictyoglomia Dictyoglomus Dictyoglomus Dictyoglomus thermophilum Dictyoglomus thermophilum Dodonaea yellows Dodonaea yellows phytoplasma Edwardsiella Edwardsiella Edwardsiella tarda Edwardsiella tarda Egyptianella pullorum infection Aegyptianella pullorum
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Bacterial diseases

These diseases affect a wide array of crops, ranging from vegetables and cereals to ornamental plants and fruit trees. Economically significant crops such as potatoes, tomatoes, cucumbers, and stone fruits are particularly susceptible. The impact ranges from localized spots and blight to systemic wilting that can lead to rapid crop failure and total death of the host plant.

Symptomatology varies widely depending on the pathogen but frequently includes water-soaked lesions, soft rots with a distinct foul odor, systemic wilting, and gall formation. In many cases, a bacterial ooze or slime is visible on the surface of infected tissues, which serves as a reservoir for the bacteria to spread further under favorable conditions.

Development and spread of bacterial diseases are highly favored by high humidity, rainfall, and moderate to warm temperatures. Bacteria can be disseminated by wind-blown rain, contaminated water, insect vectors, and human activity. Infected seeds and planting material are common long-distance transmission vectors, while soil serves as a reservoir for many soil-borne bacterial pathogens.

Management of bacterial plant diseases is primarily preventive, as curative treatments are often ineffective once the infection is established. Integrated Pest Management (IPM) practices are essential to mitigate losses and maintain crop viability.

  • Planting certified disease-free seeds and seedlings
  • Implementing strict crop rotation schedules
  • Sanitizing tools to prevent cross-contamination
  • Applying copper-based bactericides as a protective measure