Centro de Investigación Tibaitatá, Corporación Colombiana de Investigación Agropecuaria - AGROSAVIA, Km 14 vía Mosquera - Bogotá, Cundinamarca, Colombia.
Corporación Colombiana de Investigación Agropecuaria - AGROSAVIA, Sede Central, Km 14 Vía Mosquera - Bogotá, Cundinamarca, Colombia.
Curr Microbiol. 2024 Jun 9;81(7):217. doi: 10.1007/s00284-024-03702-z.
The application of enzymes in agricultural fields has been little explored. One potential application of fungal lytic enzymes (chitinases, lipases, and proteases) is as an additive to current biopesticides to increase their efficacy and reduce the time of mortality. For this, a screening of lytic overproducer fungi under submerged fermentation with a chemical-defined medium was performed. Then, the enzymatic crude extract (ECE) was concentrated and partially characterized. This characterization consisted of measuring the enzymatic activity (lipase, protease and, chitinase) and determining the enzyme stability after storage at temperatures of - 80, - 20 and, 4 °C. And lastly, the application of these concentrated enzymatic crude extracts (C-ECE) as an enhancer of spores-based fungal biopesticide was proven. Beauveria were not as good producers of lytic enzymes as the strains from Trichoderma and Metarhizium. The isolate M. robertsii Mt015 was selected for the co-production of chitinases and proteases; and the isolate T. harzianum Th180 for co-production of chitinases, lipases, and proteases. The C-ECE of Mt015 had a protease activity of 18.6 ± 1.1 U ml, chitinase activity of 0.28 ± 0.01 U ml, and no lipase activity. Meanwhile, the C-ECE of Th180 reached a chitinase activity of 0.75 U ml, lipase activity of 0.32 U ml, and protease activity of 0.24 U ml. Finally, an enhancing effect of the enzymatic extracts of M. robertsii (66.7%) and T. harzianum (43.5%) on the efficacy of B. bassiana Bv064 against Diatraea saccharalis larvae was observed. This work demonstrates the non-species-specific enhancing effect of enzymatic extracts on the insecticidal activity of conidial-based biopesticides, which constitutes a contribution to the improvement of biological control agents' performance.
在农业领域,酶的应用尚未得到充分探索。真菌溶菌酶(几丁质酶、脂肪酶和蛋白酶)的一种潜在应用是作为当前生物农药的添加剂,以提高其功效并减少死亡率。为此,在化学定义培养基的液体发酵下对溶菌酶过表达真菌进行了筛选。然后,浓缩并部分表征了酶粗提物(ECE)。该表征包括测量酶活性(脂肪酶、蛋白酶和几丁质酶)并确定在-80°C、-20°C 和 4°C 下储存后的酶稳定性。最后,证明了这些浓缩酶粗提物(C-ECE)作为孢子真菌生物农药增强剂的应用。球孢白僵菌不如木霉和绿僵菌产生的溶菌酶。选择 M. robertsii Mt015 进行几丁质酶和蛋白酶的共生产;选择 T. harzianum Th180 进行几丁质酶、脂肪酶和蛋白酶的共生产。Mt015 的 C-ECE 具有 18.6±1.1 U ml 的蛋白酶活性、0.28±0.01 U ml 的几丁质酶活性和无脂肪酶活性。同时,Th180 的 C-ECE 达到了 0.75 U ml 的几丁质酶活性、0.32 U ml 的脂肪酶活性和 0.24 U ml 的蛋白酶活性。最后,观察到 M. robertsii(66.7%)和 T. harzianum(43.5%)酶提取物对 B. bassiana Bv064 对 Diatraea saccharalis 幼虫的增效作用。这项工作证明了酶提取物对基于孢子的生物农药杀虫活性的非物种特异性增强作用,这是对生物防治剂性能的改进的贡献。