Lin Hui, Travisano Michael, Kazlauskas Romas J
The Biotechnology Institute, University of Minnesota, Twin Cities, Minnesota, United States of America.
Department of Ecology Evolution and Behavior, University of Minnesota, Twin Cities, Minnesota, United States of America.
PLoS One. 2016 Jan 28;11(1):e0147024. doi: 10.1371/journal.pone.0147024. eCollection 2016.
Engineering faster cellulose deconstruction is difficult because it is a complex, cooperative, multi-enzyme process. Here we use experimental evolution to select for populations of Trichoderma citrinoviride that deconstruct up to five-fold more cellulose. Ten replicate populations of T. citrinoviride were selected for growth on filter paper by serial culture. After 125 periods of growth and transfer to fresh media, the filter paper deconstruction increased an average of 2.5 fold. Two populations were examined in more detail. The activity of the secreted cellulase mixtures increased more than two-fold relative to the ancestor and the largest increase was in the extracellular β-glucosidase activity. qPCR showed at least 16-fold more transcribed RNA for egl4 (endoglucanase IV gene), cbh1 (cellobiohydrolase I gene) and bgl1 (extracellular β-glucosidase I gene) in selected populations as compared to the ancestor, and earlier peak expressions of these genes. Deep sequencing shows that the regulatory strategies used to alter cellulase secretion differ in the two strains. The improvements in cellulose deconstruction come from earlier expression of all cellulases and increased relative amount of β-glucosidase, but with small increases in the total secreted protein and therefore little increase in metabolic cost.
加快纤维素解构过程具有挑战性,因为这是一个复杂的、协同的多酶过程。在这里,我们利用实验进化来筛选能够解构多达五倍纤维素的黄绿木霉菌株群体。通过连续培养,从十个重复的黄绿木霉菌株群体中筛选出能够在滤纸上生长的菌株。经过125代的生长并转移到新鲜培养基后,滤纸解构能力平均提高了2.5倍。对其中两个菌株群体进行了更详细的研究。相对于原始菌株,分泌的纤维素酶混合物的活性增加了两倍多,其中细胞外β-葡萄糖苷酶活性增加最为显著。定量PCR结果显示,与原始菌株相比,筛选出的菌株群体中egl4(内切葡聚糖酶IV基因)、cbh1(纤维二糖水解酶I基因)和bgl1(细胞外β-葡萄糖苷酶I基因)的转录RNA至少增加了16倍,并且这些基因的表达峰值出现得更早。深度测序表明,两种菌株改变纤维素酶分泌的调控策略有所不同。纤维素解构能力的提高源于所有纤维素酶的早期表达以及β-葡萄糖苷酶相对含量的增加,同时分泌蛋白总量的增加幅度较小,因此代谢成本增加不大。