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Take-All Patch of Bentgrasses

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Take-all patch on a putting green.
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Take-all patch on a putting green.
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Take-all patch on a putting green.

Take-all patch is caused by the fungus Gaeumannomyces graminis. It occurs on all species of bentgrass in temperate climates throughout the world. It is most severe on newly established creeping bentgrass stands, and is rarely seen on undisturbed turf greater than ten years old. Symptoms appear in late spring or early summer on fairways, tees, and putting greens. Wilting may be observed. Patches are circular or crescent shaped, yellowish or light brown to reddish brown. These patches are typically 8-24 inches in diameter but may be as large as 3 feet across. Symptoms are most likely to appear in areas under the greatest cultural and/or environmental stress. Patches may coalesce into large areas of dead or dying turf and the affected areas heal slowly. The centers of patches are often invaded by weeds, fescues, or bluegrass species, producing a "frog-eye" appearance similar to summer patch. The roots, rhizomes, stolons, and crowns turn dark brown to black with dark ectotrophic hyphae on the surface of the roots. Although patches usually stop expanding during the summer, symptoms may intensify with the onset of summer stress, with bronzed turf fading to a dull tan/brown. Fruiting bodies (perithecia) of the pathogen develop beneath the leaf sheaths around crowns in late spring or autumn. Affected areas may appear gray in the winter. Symptoms may reappear in successive years, but in most cases take-all patch naturally declines in severity after several years, presumably because of the activity of antagonistic microflora.

Gaeumannomyces graminis is a natural soil inhabitant, existing as a saprophyte and causing disease only under specific conditions. It survives as mycelium in infected plant debris and organic matter.  Active infection of bentgrass occurs in autumn and spring when soil temperatures are 55-65°F (12-18°C). Initially, the fungus colonizes the surface of the roots, but under favorable conditions (cool, wet weather) root interiors are infected and extensive colonization occurs. Take-all patch is most severe in sites with a high sand content, recently fumigated soils, and in turf under stress. The pathogen is favored by low fertility, pH above 6.0, manganese deficiency, and cool, wet weather followed by hot, dry conditions. 

Cultural Management

  • Plant resistant cultivars. Cultivars of A. stolonifera with moderate levels of resistance are available. Planting a mixture of bentgrass with Poa or fine fescues also may reduce disease severity.
  • Maintain soil pH below 6.0, preferably 5.5-6.0.
  • Avoid excessive levels of nitrogen. Provide adequate levels of phosphorous and potassium.
  • Avoid lime and nitrate forms of nitrogen. Use ammonium-based fertilizer in spring and fall.
  • Test soil for manganese levels. If manganese is deficient, apply up to 6 lb/acre of manganese sulfate in the spring or fall. Apply manganese in high spray volumes to ensure penetration into the root zone.
  • Irrigate deeply and frequently while avoiding moisture stress. Syringe to alleviate heat stress.
  • Use management practices that encourage deep rooting. Turf stands with deep root systems are less likely to show symptoms.
  • Improve surface and subsurface drainage.
  • Manage thatch and aerify to reduce soil compaction. Do not perform these activities when disease is active.
  • Water deeply and infrequently.

Chemical Management

Apply fungicides in ≥5 gallons of water/1,000 sq. ft., or irrigate lightly after application to help move the fungicide into the root zone. The best time to treat take-all is mid-fall (soil temperatures at 2": 45-60°F). Where there is severe disease pressure, fungicide applications may be required in spring as well. Rotate active ingredients to deter resistance development. Curative applications in summer are unlikely to hasten recovery.

For a listing of fungicides currently labeled to manage this disease, refer to the Disease Management chapter of UMass Extension's Professional Guide for IPM in Turf for Massachusetts.

 

Author: M. Bess Dicklow, 2011: updated by Angela Madeiras, 2025
Last Updated: June 6, 2025

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