首页> 外文期刊>Molecular Microbiology >SUB1 has photoreceptor dependent and independent functions in sexual development and secondary metabolism in Trichoderma reesei Trichoderma reesei
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SUB1 has photoreceptor dependent and independent functions in sexual development and secondary metabolism in Trichoderma reesei Trichoderma reesei

机译:Sub1具有感光体依赖性和独立的性发育和次生新陈代谢在Trichoderma Trichoderma Reesei中的次生新陈代谢

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摘要

Summary Light dependent processes are involved in the regulation of growth, development and enzyme production in Trichoderma reesei . The photoreceptors BLR1, BLR2 and ENV1 exert crucial functions in these processes. We analyzed the involvement of the transcription factor SUB1 in sexual development as well as secondary metabolism and its position in the light signaling cascade. SUB1 influences growth and in contrast to its homologue in N. crassa , SUB1 is not essential for fruiting body formation and male fertility in T. reesei , but required for female fertility. Accordingly, SUB1 is involved in the regulation of the pheromone system of T. reesei . Female sterility of mutants lacking env1 is rescued in triple mutants of blr1, blr2 and env1 , but not in double mutants of these genes. Confrontation of strains lacking sub1 results in growth arrest prior to contact of the potential mating partners. This effect is at least in part due to altered secondary metabolite production. Additionally, together with BLR1 and BLR2, SUB1 is essential for spore pigmentation and transcription of pks4 , and secondary metabolism is regulated by SUB1 in a light‐ and nutrient dependent manner. Our results hence indicate rewiring of several pathways targeted by SUB1 in T. reesei .
机译:发明内容光依赖过程参与了Trichoderma Reesei的生长,发育和酶产生的调节。光感受器BLR1,BLR2和ENV1在这些过程中发挥关键功能。我们分析了转录因子Sub1在性发育中的参与以及次级新陈代谢及其在光信号级联中的位置。 Sub1影响生长,与其在N. Crassa的同源物相比,Sub1对T.Reesei的结果体形成和雄性肥力不是必需的,但是女性生育能力。因此,Sub1参与了T.Reesei的信息素体系的调节。缺乏Env1的突变体的雌性无菌在BLR1,BLR2和ENV1的三官突变体中救出,但不在这些基因的双突变体中救出。在潜在交配伙伴联系之前,缺乏Sub1的菌株的对抗导致生长逮捕。由于改变的次级代谢物生产,这种效果至少部分是部分。另外,与BLR1和BLR2一起,SUB1对于PKS4的孢子色素沉着和转录是必不可少的,并且次级代谢由SUB1以光和营养的依赖性方式调节。因此,我们的结果表明由T.Reesei的Sub1靶向的几种途径的重新挖掘。

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  • 来源
    《Molecular Microbiology》 |2017年第5期|共18页
  • 作者单位

    Center for Health and BioresourcesAIT Austrian Institute of Technology GmbH Konrad‐Lorenz Strasse;

    Center for Health and BioresourcesAIT Austrian Institute of Technology GmbH Konrad‐Lorenz Strasse;

    Center for Health and BioresourcesAIT Austrian Institute of Technology GmbH Konrad‐Lorenz Strasse;

    Department of Chemistry Division of Chemistry of Renewable ResourcesUniversity of Natural;

    Department of Chemistry Division of Chemistry of Renewable ResourcesUniversity of Natural;

    Department for Agrobiotechnology (IFA‐Tulln) Center for Analytical ChemistryUniversity of Natural;

    Center for Health and BioresourcesAIT Austrian Institute of Technology GmbH Konrad‐Lorenz Strasse;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
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