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Sugar sensing and regulation of conidiation in Neurospora crassa.

机译:糖感和克劳孢菌的分生孢子调节。

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摘要

The orange bread mold Neurospora crassa is a useful model for the study of filamentous fungi. One of the asexual reproduction cycles in N. crassa, macroconidiation, can be induced by several environmental cues, including glucose starvation. The rco-3 gene is a regulator of sugar transport and macroconidiation in N. crassa and was proposed to encode a sugar sensor (Madi et al., 1997). To identify genes that are functionally related to RCO-3, three distinct suppressors of the sorbose resistance phenotype of rco-3 were isolated and characterized. The dgr-1 mutant phenotypically resembles rco-3 and may be part of the rco-3 signaling pathway. Epistatic relationship among rco-3, dgr-1 and the suppressors were carried out by analyzing rco-3; dgr-1 and sup; dgr-1 double mutants. These analyses indicate that rco-3 is epistatic to dgr-1 .; A cDNA microarray containing 1363 N. crassa genes was generated to examine the transcriptional response of wild type cells grown in the presence of glucose or starved for glucose for two hours. Comparing N. crassa profiling data with the published diauxic shift data from S. cerevisiae (DeRisi et al., 1997) revealed that S. cerevisiae and N. crassa share a similar, but not identical, transcriptional response pattern for genes belonging to central carbon metabolism. The microarray results indicate that N. crassa utilizes glucose through fermentation and respiration simultaneously in aerobic culture, a finding that is consistent with previous measurements of ethanol production and enzyme activities in N. crassa. The same microarray was used to examine the transcriptional response to glucose status in rco-3 and dgr-1 mutants. The two mutants display similar expression patterns for most of the genes on the microarray supporting a close functional relationship between them. In addition, I identified a high affinity glucose transport gene in N. crassa, whose transcription is under the control of glucose, rco-3 and dgr-1.
机译:橙色面包霉菌Neurospora crassa是研究丝状真菌的有用模型。景天猪笼草的无性繁殖周期之一,宏观分生,可以由包括葡萄糖饥饿在内的几种环境线索引起。 rco-3基因是N. crassa中糖转运和宏观构象的调节剂,并被提议编码糖传感器(Madi等,1997)。为了鉴定在功能上与RCO-3相关的基因,分离并鉴定了rco-3的三种不同的山梨糖抗性表型抑制剂。 dgr-1突变型在表型上类似于rco-3,并且可能是rco-3信号通路的一部分。通过分析rco-3进行rco-3,dgr-1和抑制剂之间的上位关系。 dgr-1和sup; dgr-1双突变体。这些分析表明,rco-3对dgr-1是上位的。产生了包含1363个crassa基因的cDNA微阵列,以检查在葡萄糖存在下生长或饥饿两小时的野生型细胞的转录反应。将克鲁萨猪笼草的分布图数据与已公布的酿酒酵母双峰转移数据进行比较(DeRisi等,1997),发现酿酒酵母和克鲁萨猪笼草对属于中央碳的基因具有相似但不相同的转录反应模式代谢。微阵列结果表明,有氧烟草在有氧培养中同时通过发酵和呼吸作用利用葡萄糖,这一发现与先前对无烟烟草中乙醇产量和酶活性的测量结果一致。相同的微阵列用于检查rco-3和dgr-1突变体对葡萄糖状态的转录反应。这两个突变体显示了微阵列上大多数基因的相似表达模式,支持了它们之间的紧密功能关系。此外,我在猪笼草中鉴定了一个高亲和力的葡萄糖转运基因,其转录受葡萄糖,rco-3和dgr-1的控制。

著录项

  • 作者

    Xie, Xin.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Biology Molecular.; Biology Genetics.; Biology Microbiology.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 167 p.
  • 总页数 167
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;遗传学;微生物学;
  • 关键词

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