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首页> 外文期刊>Biological Control: Theory and Application in Pest Management >Efficacy assessment of Pichia guilliermondii strain Z1, a new biocontrol agent, against citrus blue mould in Morocco under the influence of temperature and relative humidity
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Efficacy assessment of Pichia guilliermondii strain Z1, a new biocontrol agent, against citrus blue mould in Morocco under the influence of temperature and relative humidity

机译:在温度和相对湿度的影响下,新型生防菌毕赤酵母菌株Z1对摩洛哥柑桔蓝霉病的功效评估

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摘要

The interactions of Penicillium italicum, which causes blue mould, and antagonistic yeast Pichia guilliermondii strain Z1 were examined in controlled environments, to determine the influence of relative humidity (RH) (45%, 75%, 85%, 98%, and 100%) and temperature (T) (5, 10, 15, 20, and 25 degrees C). All main effects and interactions were significant (P <= 0.05), with the exception of interactions RHxT and strain Z1 (BCA)xRHxT. In the pathogen control, the lesion diameter of blue mould developed under all environmental conditions but was the largest at a RH range between 98% and 100%, independent of the temperature. The efficacy of strain Z1 appeared to be independent of the environment and reduced disease incidence by more than 85% in all environmental conditions. Rapid colonization of the antagonistic yeast strain Z1 on citrus wounded sites was recorded during the first week at 5 degrees C. Colonization then stabilized at +/- 6.9 x 10(6) CFU/ml for 30 days. This indicates that P. guilliermondii is able to adapt itself and colonize the wound sites prior to the arrival of the pathogen, displaying greater efficiency than when colonizing wounds after pathogen. The antagonist was capable of growing in low concentrations of orange juice (0.1-5%), with greatest growth at 5%. Applying strain Z1 (1 x 10(8) CFU/ml) as a formulated product significantly reduced the incidence of infected fruits and the percentage of infected wounds relative to the pathogen control. Disease control with formulated product (45%) was slightly lower than that obtained with thiabendazole (20%) or strain Z1 culturable cells (25%). These results suggest that strain Z1 may be a useful BCA for control of blue mould under varying environmental conditions, and control may be enhanced by combining with other eco-friendly post-harvest treatments or improved formulation
机译:在受控环境中检查了导致蓝色霉菌的意大利青霉与拮抗性酵母毕赤酵母P1菌株Z1的相互作用,以确定相对湿度(RH)的影响(45%,75%,85%,98%和100%) )和温度(T)(5、10、15、20和25摄氏度)。除RHxT和菌株Z1(BCA)xRHxT的相互作用外,所有主要作用和相互作用均显着(P <= 0.05)。在病原体控制中,蓝色霉菌的病变直径在所有环境条件下均会发展,但在相对湿度范围为98%至100%的最大相对湿度下最大。 Z1菌株的功效似乎与环境无关,并且在所有环境条件下的发病率均降低了85%以上。在第一周在5摄氏度下记录了拮抗酵母菌株Z1在柑橘伤口部位的快速定居。定居然后稳定在+/- 6.9 x 10(6)CFU / ml 30天。这表明P. guilliermondii能够适应自身并在病原体到达之前在伤口部位定植,​​与在病原体之后定殖伤口时相比,显示出更高的效率。拮抗剂能够在低浓度的橙汁(0.1-5%)中生长,最大的增长率为5%。相对于病原体控制,将菌株Z1(1 x 10(8)CFU / ml)作为配制产品使用,显着降低了感染水果的发生率和感染伤口的百分比。用制剂产品(45%)进行的疾病控制略低于用噻菌灵(20%)或Z1菌株可培养细胞(25%)获得的疾病控制。这些结果表明,菌株Z1可能是在变化的环境条件下控制蓝霉菌的有用BCA,并且可以通过与其他生态友好的收获后处理或改良配方组合使用来增强控制

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