首页> 外文学位 >An ergothioneine mutant in Neurospora crassa indicates that ergothioneine is required for conidial longevity and protection against peroxide during conidial germination.
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An ergothioneine mutant in Neurospora crassa indicates that ergothioneine is required for conidial longevity and protection against peroxide during conidial germination.

机译:景天孢子虫中的一个麦角硫因突变体表明,在孢子萌发过程中,要使孢子长寿并防止过氧化物,需要麦角硫因。

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摘要

Ergothioneine (EGT) is a histidine derivative with a trimethylated amine and a thiol/thione in the imidazole ring. Although EGT is only synthesized by fungi and some bacteria, it is acquired by animals and plants, via ingestion and absorption, respectively. The function of EGT in eukaryotes has not been determined. To determine the functions of EGT in vivo, I compared an EGT-non-producing strain of Neurospora crassa (DeltaNcEgtA) that was insertionally mutagenized in gene NCU04343.5, with the wild type (OR74A). Compared to the wild type, DeltaNcEgtA is not pleiotropically affected in rate of hyphal elongation in Vogel's medium either with or without ammonium nitrate and in the rate of germination of macroconidia on Vogel's medium. In contrast, germination of DeltaNcEgtA conidia was significantly more sensitive to tert-butyl hydroperoxide than the wild type; germination of 50% (GI 50) of the DeltaNcEgtA conidia was prevented at 2.7 mM tert-butyl hydroperoxide whereas the GI50 for the wild type was 4.7 mM tert-butyl hydroperoxide, or at a 1.7X greater concentration. The superoxide-producer menadione had indistinguishable effects on conidial germination in both strains. Cupric sulfate also had indistinguishable effects on conidial germination and on hyphal growth in both strains. Although five to 21-day-old conidia of both strains germinated 100%, DeltaNcEgtA conidia had significantly (P < 0.001) diminished longevity. Linear regression analysis indicates that germination of the wild type declines to 50% in 35.1 days, in comparison to 24.6 days for the DeltaNcEgtA , which is equivalent to a 30% reduction in conidial life span in the NcEgtA deletion strain. Consequently, the data indicate that endogenous EGT helps to protect conidia during the quiescent period between conidiogenesis and germination. The data further suggest that EGT helps protect conidia during the germination process from the toxicity of peroxide radicals but not from superoxide or Cu2+. Finally, the data are consistent with the hypothesis that endogenous EGT has more impact on conidial survival and germination than on hyphal growth.
机译:麦角硫氨酸(EGT)是一种组氨酸衍生物,在咪唑环中带有三甲基化胺和硫醇/硫酮。尽管EGT仅由真菌和某些细菌合成,但动植物分别通过摄取和吸收来获得它。 EGT在真核生物中的功能尚未确定。为了确定EGT在体内的功能,我比较了在基因NCU04343.5中插入诱变的不产神经孢子的神经孢霉(DeltaNcEgtA)和野生型(OR74A)。与野生型相比,DeltaNcEgtA在具有或不具有硝酸铵的Vogel培养基中菌丝伸长率和在Vogel培养基上大分生孢子的萌发率方面均不受多效性的影响。相反,与野生型相比,DeltaNcEgtA分生孢子的萌发对氢过氧化叔丁基的敏感性更高。在2.7 mM氢过氧化叔丁基中阻止了DeltaNcEgtA分生孢子的50%(GI 50)萌发,而野生型的GI50在4.7 mM氢过氧化叔丁基中或在高1.7倍的浓度下被阻止。在两种菌株中,超氧化物生产者甲萘醌对分生孢子的萌发没有明显的影响。硫酸铜对两种菌株的分生孢子萌发和菌丝生长也没有明显的影响。尽管这两个菌株的5至21天大的分生孢子都发芽了100%,但DeltaNcEgtA分生孢子的寿命明显降低(P <0.001)。线性回归分析表明,与DeltaNcEgtA的24.6天相比,野生型的发芽在35.1天下降到50%,这相当于NcEgtA缺失菌株的分生孢子寿命减少了30%。因此,数据表明内源性EGT有助于在分生孢子形成和萌发之间的静止期保护分生孢子。数据进一步表明,EGT有助于在萌发过程中保护分生孢子免受过氧化物自由基的毒性,但不能免受超氧化物或Cu2 +的伤害。最后,数据与以下假设一致:内源性EGT对分生孢子存活和萌发的影响大于对菌丝生长的影响。

著录项

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Agriculture Plant Pathology.
  • 学位 M.S.
  • 年度 2011
  • 页码 34 p.
  • 总页数 34
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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