Institute of Plant and Environment Protection, Beijing Academy of Agriculture and Forestry Sciences, Beijing, 100097, China.
Arch Microbiol. 2014 Jul;196(7):525-30. doi: 10.1007/s00203-014-0999-6. Epub 2014 Jun 8.
Brown rot caused by Monilinia spp. is among the most important postharvest diseases of commercially grown stone fruits, and application of antagonistic yeasts to control brown rot is one promising strategy alternative to chemical fungicides. In this research, new yeast strains were isolated and tested for their activity against peach brown rot caused by Monilinia fructicola. Three yeast strains were originally isolated from the surface of plums (cv Chinese Angelino) collected in the north of China. In artificially wounded inoculation tests, the yeast reduced the brown rot incidence to 20 %. The population of the yeast within inoculated wounds on peaches significantly increased at 25 °C from an initial level of 5.0×10(6) to 4.45×10(7) CFU per wound after 1 day. The antagonistic strains were belonging to a new species of the genus Candida by sequence comparisons of 26 S rDNA D1/D2 domain and internal transcribed spacer region. The strains are most closely related to C. asparagi, C. musae and C. fructus on the basis of the phylogenetic trees based on the D1/D2 region of 26S rDNA. However, the strains are notably different from C. asparagi, C. musae and C. fructus, in morphological and physiological characteristics. Therefore, the name Candida pruni is proposed for the novel species, with sp-Quan (=CBS12814T=KCTC 27526T=GCMC 6582T) as the type strain. Our study showed that Candida pruni is a novel yeast species with potential biocontrol against brown rot caused by M. fructicola on peaches.
由 Monilinia spp.引起的褐腐病是商业种植的核果类水果最重要的采后病害之一,应用拮抗菌酵母来控制褐腐病是一种有前途的替代化学杀菌剂的策略。在这项研究中,从中国北方收集的李子(cv Chinese Angelino)表面分离出新的酵母菌株,并测试其对桃褐腐病(由 Monilinia fructicola 引起)的活性。最初从李子表面分离出三个酵母菌株。在人工刺伤接种试验中,酵母将褐腐病的发病率降低到 20%。在 25°C 下,接种伤口内酵母的种群数量从初始水平的 5.0×10(6)增加到 1 天后的 4.45×10(7)CFU/伤口。通过 26S rDNA D1/D2 结构域和内部转录间隔区的序列比较,拮抗菌株属于一个新的 Candida 种。根据基于 26S rDNA D1/D2 区的系统发育树,这些菌株与 C. asparagi、C. musae 和 C. fructus 最为密切相关。然而,这些菌株在形态和生理特征上与 C. asparagi、C. musae 和 C. fructus 明显不同。因此,提出了新种 Pruni 属的名称,以 sp-Quan (=CBS12814T=KCTC 27526T=GCMC 6582T)作为模式株。我们的研究表明,Pruni 属 Candida 是一种新型酵母,具有防治桃褐腐病的潜在生防作用。