Shiyu Cai's research while affiliated with Cornell University and other places

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Publications (1)


Thermoresistance in black yeasts is associated with halosensitivity and HPP tolerance, but not with UV tolerance or sanitizer tolerance
  • Article

October 2021

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13 Reads

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7 Citations

Journal of Food Protection

Shiyu Cai

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Black yeasts can survive extreme conditions in food production because of their polyextremotolerant character. However, significant strain-to-strain variation in black yeast thermoresistance has been observed. In this study, we assessed the variability in tolerance to nonthermal interventions among a collection of food-related black yeast strains. Variation in tolerance to UV light treatment, high pressure processing (HPP), sanitizers, and osmotic pressure was observed within each species. The two strains previously shown to possess high thermotolerance, Exophiala phaeomuriformis FSL-E2-0572 and Exophiala dermatitidis YB-734, were also the most HPP tolerant but were the least halotolerant. Meanwhile, Aureobasidium pullulans FSL-E2-0290 was the most UV and sanitizer tolerant but had been shown to have relatively low thermoresistance. Fisher's exact tests showed that thermoresistance in black yeasts was associated with HPP tolerance and inversely with halotolerance, but no association was found with UV tolerance or sanitizer tolerance. Collectively, the relative stress tolerance among strains varied across interventions. Given this variation, different food products are susceptible to black yeast spoilage. In addition, different strains should be selected in challenge studies specific to the intervention. Highlights:

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Citations (1)


... This adaptability was evidenced by its capacity to withstand significant environmental fluctuations, ranging from the relatively low temperatures and high relative humidity of winter to the contrasting conditions of high temperatures, low relative humidity, and intense solar radiation characteristic of Izola's summer climate. A. pullulans exhibits a remarkable ability to tolerate a relatively broad range of ecological conditions including UV radiation [21,22], cold environments [23][24][25][26], desiccation and high temperatures [4,22], and environments with fluctuating water activity [23]. One of the key characteristics of A. pullulans that enables it to thrive in diverse ecological niches and withstand a wide range of environmental challenges is its ability to exhibit phenotypic plasticity. ...

Reference:

Bioinspired Living Coating System for Wood Protection: Exploring Fungal Species on Wood Surfaces Coated with Biofinish during Its Service Life
Thermoresistance in black yeasts is associated with halosensitivity and HPP tolerance, but not with UV tolerance or sanitizer tolerance
  • Citing Article
  • October 2021

Journal of Food Protection