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首页> 外文期刊>BMC Genomics >The transcriptome of lae1 mutants of Trichoderma reesei cultivated at constant growth rates reveals new targets of LAE1 function
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The transcriptome of lae1 mutants of Trichoderma reesei cultivated at constant growth rates reveals new targets of LAE1 function

机译:以恒定速度培养的里氏木霉的lae1突变体的转录组揭示了LAE1功能的新靶标

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Background The putative methyltransferase LaeA is a global regulator that affects the expression of multiple secondary metabolite gene clusters in several fungi. In Trichoderma reesei, its ortholog LAE1 appears to predominantly regulate genes involved in increasing competitive fitness in its environment, including expression of cellulases and polysaccharide hydrolases. A drawback in all studies related to LaeA/LAE1 function so far, however, is that the respective loss-of-function and overexpressing mutants display different growth rates. Thus some of the properties attributed to LaeA/LAE1 could be simply due to changes of the growth rate. Results We cultivated T. reesei, a Δlae1 mutant and a lae1-overexpressing strain in chemostats on glucose at two different growth rates (0.075 and 0.020?h-1) which resemble growth rates at repressing and derepressing conditions, respectively. Under these conditions, the effect of modulating LAE1 expression was mainly visible in the Δlae1 mutant, whereas the overexpressing strain showed little differences to the parent strain. The effect on the expression of some gene categories identified earlier (polyketide synthases, heterokaryon incompatibility proteins, PTH11-receptors) was confirmed, but in addition GCN5-N-acetyltransferases, amino acid permeases and flavin monooxygenases were identified as so far unknown major targets of LAE1 action. LAE1 was also shown to interfere with the regulation of expression of several genes by the growth rate. About a tenth of the genes differentially expressed in the Δlae1 mutant under either growth condition were found to be clustered in the genome, but no specific gene group was associated with this phenomenon. Conclusions Our data show that – using T. reesei LAE1 as a model - the investigation of transcriptome in regulatory mutants at constant growth rates leads to new insights into the physiological roles of the respective regulator.
机译:背景推定的甲基转移酶LaeA是一种全局调节剂,可影响多种真菌中多个次级代谢产物基因簇的表达。在里氏木霉中,其直系同源物LAE1似乎主要调控与环境中竞争性适应性相关的基因,包括纤维素酶和多糖水解酶的表达。到目前为止,与LaeA / LAE1功能有关的所有研究中的缺点是,各自的功能丧失和过表达的突变体表现出不同的生长速率。因此,归因于LaeA / LAE1的某些属性可能仅仅是由于增长率的变化。结果我们以两种不同的生长速率(0.075和0.020?h -1 )在葡萄糖上的化学恒温器上培养了里氏木霉,Δlae1突变体和过表达lae1的菌株,其生长与抑制和抑制条件下的生长速率相似, 分别。在这些条件下,调节LAE1表达的作用主要在Δlae1突变体中可见,而过表达菌株与亲本菌株几乎没有差异。确认了对早期鉴定的某些基因类别(聚酮化合物合酶,异核体不相容蛋白,PTH11受体)表达的影响,但除此之外,GCN5-N-乙酰基转移酶,氨基酸通透酶和黄素单加氧酶被确定为迄今为止未知的主要靶标LAE1动作。 LAE1还显示出通过生长速率干扰几种基因表达的调节。发现在任一生长条件下在Δlae1突变体中差异表达的基因中约有十分之一在基因组中聚集,但没有特定的基因组与该现象相关。结论我们的数据表明,以里氏木霉LAE1为模型,以恒定的增长率研究调节突变体中的转录组,可以使人们对相应调节剂的生理作用有了新的认识。

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