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Enhancement of biocontrol efficacy of antagonistic yeasts by salicylic acid in sweet cherry fruit

机译:水杨酸增强甜樱桃果实拮抗酵母的生物防治效果

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摘要

Salicylic acid (SA) and two yeast antagonists, Rhodotorula glutinis and Cryptococcus laurentii, were investigated separately and together for controlling Penicillium expansum and Alternaria alternata in sweet cherry fruit. Applied separately, both SA (0.5 mm, pH 3.6) and antagonists inhibited decay caused by P. expansum and A. alternata. Biocontrol activity of R. glutinis was enhanced in combination with SA, whereas the efficacy of C. laurentii was not affected. Application of SA did not affect the growth of R. glutinis and C. laurentii in cherry wounds. Results of in vitro studies showed that SA at low concentrations had little effect on the growth of the yeasts or the pathogens. SA treatment induced a significant increase in polyphenoloxidase, phenylalanine ammonia-lyase, and beta-1,3-glucanase activity in cherry fruit, but did not alter the levels of peroxidase. The mechanism by which SA enhanced the biocontrol efficacy of the antagonistic yeast may be related to its ability to induce biochemical defense responses in sweet cherry fruit rather than its fungitoxicity effects on the pathogens.
机译:水杨酸(SA)和两种酵母拮抗剂,Rhodotorula glutinis和Cryptococcus laurentii,分别进行了研究,以共同控制甜樱桃果实中的青霉菌和链格孢。单独应用时,SA(0.5毫米,pH 3.6)和拮抗剂均能抑制由扩张假单胞菌和链球菌引起的衰变。与SA联合使用可提高谷氨酸丁酸杆菌的生物防治活性,而劳伦梭菌的功效则不受影响。 SA的应用不会影响R.glutinis和C.laurentii在樱桃伤口中的生长。体外研究结果表明,低浓度的SA对酵母或病原体的生长影响很小。 SA处理诱导樱桃果实中的多酚氧化酶,苯丙氨酸氨解酶和β-1,3-葡聚糖酶活性显着增加,但未改变过氧化物酶的水平。 SA增强拮抗酵母的生物防治功效的机制可能与其在甜樱桃果实中诱导生化防御反应的能力有关,而不是其对病原体的真菌毒性作用。

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