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首页> 外文期刊>Microbial Cell Factories >Co-culture of Vel1 -overexpressed Trichoderma asperellum and Bacillus amyloliquefaciens : An eco-friendly strategy to hydrolyze the lignocellulose biomass in soil to enrich the soil fertility, plant growth and disease resistance
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Co-culture of Vel1 -overexpressed Trichoderma asperellum and Bacillus amyloliquefaciens : An eco-friendly strategy to hydrolyze the lignocellulose biomass in soil to enrich the soil fertility, plant growth and disease resistance

机译:vel1 -overex抑制的Trichoderma asperellum和芽孢杆菌的共同培养:一种生态融合的策略,用于水解土壤中的木质纤维素生物量,以丰富土壤肥力,植物生长和抗病性

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Retention of agricultural bio-mass residues without proper treatment could affect the subsequent plant growth. In the present investigation, the co-cultivation of genetically engineered T. asperellum and B.?amyloliquefaciens has been employed for multiple benefits including the enrichment of lignocellulose biodegradation, plant growth, defense potential and disease resistance. The Vel1 gene predominantly regulates the secondary metabolites, sexual and asexual development as well as cellulases and polysaccharide hydrolases productions. Overexpression mutant of the Trichoderma asperellum Vel1 locus (TA OE-Vel1) enhanced the activity of FPAase, CMCase, PNPCase, PNPGase, xylanase I, and xylanase II through the regulation of transcription regulating factors and the activation of cellulase and xylanase encoding genes. Further, these genes?were induced?upon?co-cultivation?with Bacillus amyloliquefaciens (BA). The co-culture of TA OE-Vel1? ?BA produced the best composition of enzymes and the highest biomass hydrolysis yield of 89.56?±?0.61%. The co-culture of TA OE-Vel1? ?BA increased the corn stover degradation by the secretion of cellulolytic enzymes and maintained the C/N ratio of the corn stover amended soil. Moreover, the TA OE-Vel1? ?BA increased the maize plant growth, expression of defense gene and disease resistance against Fusarium verticillioides and Cohilohorus herostrophus. The co-cultivation of genetically engineered T. asperellum and B.?amyloliquefaciens could be utilized as a profound and meaningful technique for the retention of agro residues and subsequent plant growth.
机译:没有适当治疗的农业生物质量残留物的保留可能会影响随后的植物生长。在本调查中,基因工程的T.Seasellum和B.?达米酰胺的共同培养已用于多种益处,包括富集木质纤维素生物降解,植物生长,防御潜力和抗病性。 VEL1基因主要调节次生代谢物,性和无性发展以及纤维素酶和多糖水解酶的产品。通过调节转录调节因子和纤维素酶和木聚糖酶和木聚糖酶编码基因的激活,Trichoderma asperellum vel1基因座(Ta Oe-vel1)的过表达突变体增强了FPAase,Cmcase,PnPase,PNPGase,Xylanase I和木聚糖酶II的活性。此外,这些基因?被诱导α?共培养?用芽孢杆菌淀粉醇(BA)。 TA OE-vel1的共同培养? ?BA产生了最佳的酶组成和最高的生物质水解产率为89.56Ω·±0.61%。 TA OE-vel1的共同培养? ?BA通过分泌纤维素酶的分泌增加玉米秸秆降解,并保持玉米秸秆的C / N比修正的土壤。而且,Ta Oe-vel1? BA增加了玉米植物生长,防御基因的表达和对镰刀菌镰刀菌的抗病患者和肝硬化肝硬化。转基因T.Seserellum和B.?莫氨基唑酮的共同培养可以用作保留农业残基和随后的植物生长的深切和有意义的技术。

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