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Characterization of some culture factors affecting oxalate degradation by the mycoparasite Coniothyrium minitans

机译:表征一些细菌因子寄生小锥孢子虫草酸盐降解草酸盐的因素

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To find possible approaches to utilize the mechanism of oxalate degradation by Coniothyrium minitans (Cm) in controlling the plant pathogen Sclerotinia sclerotiorum (Ss). Differences in oxalate degradation by different Cm strains and effects of the initial oxalate concentration, ambient pH and nutrient factors on mycelial growth and oxalate degradation by Cm were studied in shaken cultures. Results showed that two wild-type Cm strains, Chy-1 and ZS-1, did not differ in oxalate degradation in modified potato dextrose broth (mPDB) amended with oxalic acid (OA). Cm could grow in mPDB amended with sodium oxalate (SO-mPDB) at pH 6p"5 or with ammonium oxalate (AO-PDB) at pH 6p"2, but oxalate degradation was very low; oxalate degradation was greatly enhanced in SO- or AO-mPDB with pH being lowered to 2p"8-2p"9. Similarly, oxalate degradation was higher than 90% in OA-amended mPDB at pH 4p"4 but was reduced to be <22% at pH 7p"0. Five carbon sources and three nitrogen sources investigated and nutrients from mycelia and sclerotia of Ss were favorable for the growth of Cm and OA degradation by Cm. Cm can degrade oxalate under acidic pH. Exudates from mycelia or sclerotia of Ss may serve as nutrients for Cm mycelial growth and degradation of oxalate secreted by Ss. The finding of oxalate degradation laid a foundation for mining-related genes in Cm for engineering plant resistance against Ss. Elucidation of the importance of acidic pH and nutrients from Ss in oxalate degradation by Cm will help to understand the interaction between Cm and Ss.
机译:为了找到可能的方法来利用小灰锥虫(Cio)降解草酸盐的机理来控制植物病原菌菌核盘菌(Ss)。在摇动培养中研究了不同Cm菌株在草酸盐降解方面的差异以及初始草酸盐浓度,环境pH和营养因子对菌丝生长和Cm降解草酸盐的影响。结果表明,两种野生型Cm菌株Chy-1和ZS-1在用草酸(OA)修饰的改良马铃薯葡萄糖肉汤(mPDB)中草酸盐的降解没有差异。 Cm可以在pH值为6p“ 5的草酸钠(SO-mPDB)或pH值为6p” 2的草酸铵(AO-PDB)改性的mPDB中生长,但是草酸盐的降解非常低。草酸的降解在SO-或AO-mPDB中大大增强,pH降低到2p“ 8-2p” 9。类似地,在pH 4p“ 4的OA修饰的mPDB中,草酸盐的降解高于90%,但在pH 7p” 0时降低至<22%。研究了5个碳源和3个氮源,Ss菌丝体和菌核的养分有利于Cm的生长和Cm降解OA。 Cm可以在酸性pH下降解草酸盐。 Ss的菌丝体或菌核的分泌物可作为Cm菌丝体生长和Ss分泌的草酸盐降解的养分。草酸盐降解的发现为Cm中与采矿有关的基因的工程化植物抗Ss奠定了基础。阐明Cs降解草酸盐中Ss的酸性pH和养分的重要性将有助于理解Cm与Ss之间的相互作用。

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