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统计方法研究环境参数对深绿木霉(T-15603.1)分生孢子发育的影响。

Statistical approach to determine the effect of combined environmental parameters on conidial development of Trichoderma atroviride (T-15603.1).

机构信息

EMPA, Swiss Federal Laboratories for Materials Science and Technology, Wood Laboratory, Group of Wood Protection and Biotechnology, St. Gallen, Switzerland.

出版信息

J Basic Microbiol. 2010 Dec;50(6):570-80. doi: 10.1002/jobm.201000036.

Abstract

Trichoderma atroviride (T-15603.1) is a promising fungal agent for biological control of wood decay fungi in urban tree wounds. The aim of this work was to determine the combined effects of water activity (a(w), 0.998-0.892), temperature (10-30 °C) and pH (3-7) on the development of conidia on low-nutrient agar (LNA). Lag phase prior to germination (h), germination rates (µ(m)) and germ-tube elongation were obtained at each set of conditions. The experimental data were used to fit a response surface model for predicting the germination rates of T-15603.1 and to analyze the effect of the abiotic parameters tested. The polynomial response surface model was mathematically evaluated using graphical plots and several statistical indices (RMSE, %SEP, A(f), B(f), pRE). Data analyses showed a highly significant effect on conidial development of a(w) and temperature (P < 0.001), whereas no significant effect of pH (P ≥ 0.05) was observed. The germination rate dropped and the lag prior to germination increased as the temperature and a(w) decreased, but T-15603.1 appeared to be more sensitive to a(w) reduction than to temperature. The minimum a(w) level for germination was 0.910 at 15-25 °C, and maximum germination rates were obtained at a(w) = 0.998, 25-30 °C and pH 5. The response surface model was useful and widely accurate (R² = 0.983) for predicting the germination rate of T-15603.1 and complemented the experimental results. These findings contribute to better understanding how combined environmental factors affect the environmental parameter tolerance levels of T-15603.1 and to the development of an adequate delivery system for optimized application of T-15603.

摘要

深绿木霉(T-15603.1)是一种有前途的真菌制剂,可用于防治城市树木伤口中腐朽真菌。本工作旨在确定水活度(a(w),0.998-0.892)、温度(10-30°C)和 pH(3-7)对低营养琼脂(LNA)上分生孢子发育的综合影响。在每种条件下,获得了发芽前的潜伏期(h)、发芽率(µ(m))和芽管伸长率。实验数据用于拟合预测 T-15603.1 发芽率的响应面模型,并分析测试的非生物参数的影响。使用图形图和几个统计指标(RMSE、%SEP、A(f)、B(f)、pRE)对多项式响应面模型进行数学评估。数据分析表明,a(w)和温度对分生孢子发育有显著影响(P < 0.001),而 pH 无显著影响(P ≥ 0.05)。随着温度和 a(w)的降低,发芽率下降,发芽前的潜伏期增加,但 T-15603.1 似乎对 a(w)降低比温度更敏感。在 15-25°C 时,发芽的最低 a(w)水平为 0.910,在 a(w) = 0.998、25-30°C 和 pH 5 时获得最大发芽率。响应面模型对预测 T-15603.1 的发芽率非常有用且广泛准确(R² = 0.983),补充了实验结果。这些发现有助于更好地理解环境因素的综合影响如何影响 T-15603.1 的环境参数耐受水平,并为优化 T-15603.1 的应用开发适当的输送系统。

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