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New Disease Report: Rhizopus soft rot of Garlic

Bulbs with spores and fuzzy fungal growth

Bulbs with spores and fuzzy fungal growth

Travis Cranmer – Vegetable Crop Specialist
Katie Goldenhar – Horticulture Pathologist

Rhizopus soft rot can be found growing on the inside of the bulb between the clove wrappers in storage. It initially appears as small back dots and has loose, hairy fungal growth (Figure 1). Over time, the fungi cause water-soaked lesions to develop on the clove that eventually turn the clove yellow to dark brown (Figure 2).  This disease has been observed in garlic in other countries including India and China. In the summer of 2026, bulbs were split open to reveal fuzzy fungal growth developing along the neck and cloves of garlic bulbs.

Figure 1. Bulb with a small number of spores and mycelium.
Figure 2. Clove covered in black masses of spores on the surface of the clove wrappers and a water-soaked lesion developing on the neighbouring clove (right).

This is the first confirmed report of Rhizopus soft rot in garlic in Ontario grown garlic. The disease is caused by the fungal pathogen, Rhizopus arrhizus, (syn. Rhizopus oryzae) which has been found to infect many other crops including apples, banana, beets, cucumbers, strawberry, sweet potato, tobacco, and watermelon. (Khadiri et al., 2024).

Rhizopus arrhizus spores can be found in the soil, decaying organic matter as well as indoor environments, such as storage facilities. Spores are spread through wind, insects and by equipment. They overwinter in the soil and crop debris between seasons and produce thick-walled resting spores (zygospores), which are the long-term survival structure for the fungus. While the ideal temperature range for R. arrhizus development on garlic is not known, studies indicate that it grows well at temperatures above 25°C (77°F). Wet weather at harvest and extended periods of time between harvest and curing creates ideal conditions for Rhizopus arrhizus. Curing facilities that use higher temperatures used to improve the water holding capacity of the air during curing may subsequently create optimal conditions for R. arrhizus development since it appears to grow well at higher temperatures. (Zhang et al., 2023). Rhizopus spp. are not active below 5°C (41°F).

Figure 3. A close-up of fuzzy mycelial growth and black spores on a garlic clove. Photo by M. Melzer, 2026.
Figure 4. A close-up of a Rhizopus arrihzus sporangiophore under a microscope. Photo by M. Melzer, 2026.

Special care should be taken as inhalation of Rhizopus arrhizus spores can cause mucormycosis, a serious fungal infection that primarily occurs in immunocompromised individuals or diabetic patients. Wear a mask when handling garlic suspected to have Rhizopus.

While management strategies are still be explored and no chemical strategies are registered for this disease on this crop, it is expected that cultural management strategies such as avoiding long periods between harvest and cure will help reduce the risk.  Consider using dehumidifiers or air conditioners to remove moisture from the air and keep temperatures lower in the curing facility since higher temperatures can improve Rhizopus arrhizus development. For long term storage, keep garlic in a cool (-1°C – 2°C), and low-humidity environment. Remove and bury any bulbs with mycelial growth and sanitize the storage and curing area after use. Do not plant cloves with any symptoms of disease, including Rhizopus.

If you have concerns about Rhizopus soft rot in garlic, please contact Travis Cranmer travis.cranmer@ontario.ca;519-835-3382 or Katie Goldenhar katie.goldenhar@ontario.ca; 519-835-5792.


More info

Berrie, A. (2011). Sustainable management of Mucor and Rhizopus in strawberry. Agriculture and Horticulture Development Board Final Report. https://horticulture.ahdb.org.uk/sf-098-sustainable-management-of-mucor-and-rhizopus-in-strawberry-and-raspberry

Khadiri, M., Boubaker, H., Lahmamsi, H., Taoussi, M., Ezouggari, R., Askarne, L., Farhaoui, A., Barka E.A., Lahlali, R. (2024). Challenges in apple preservation: Fungicide resistance and emerging biocontrols.Physiological and Molecular Plant Pathology.

Zhang, Y.N., Wang, J.Z., Swingle, B., Niu, B.Y., Xu, J., Ma, X., Wei, H.L., and Gao, M. (2023). First Report of Rhizopus arrhizus (syn. R. oryzae) Causing Garlic Bulb Soft Rot in Hebei Province, China. Plant Disease, 107(3). https://apsjournals.apsnet.org/doi/10.1094/PDIS-05-22-1024-PDN 

Rhizopus Rot (Leak) / Home and Landscape / UC Statewide IPM Program (UC IPM)

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