Angel-Cuapio Alejandro, Figueroa-Montero Arturo, Favela-Torres Ernesto, Viniegra-González Gustavo, Perraud-Gaime Isabelle, Loera Octavio
Departamento de Biotecnología, Universidad Autónoma Metropolitana, Unidad Iztapalapa, CP 09340, Iztapalapa, Mexico, DF, Mexico.
Appl Biochem Biotechnol. 2015 Sep;177(2):446-57. doi: 10.1007/s12010-015-1754-4. Epub 2015 Jul 17.
Conidia of the entomopathogenic fungus Isaria fumosorosea are used to control insect pests in crops. Commercially available mycoinsecticides manufactured with this fungus are produced on a large scale via solid-state cultures (SSC). In order to favour gaseous exchange in SCC, texturizers can be added to increase porosity fraction (ε). This work presents results of water hyacinth (Eichhornia crassipes) as a novel texturizer. A mixture of parboiled rice (PR), with a ε = 0.23, was used as a substrate, which was then mixed with water hyacinth (WH amendment) as a texturizer at different proportions affecting ε. Strains CNRCB1 and ARSEF3302 of I. fumosorosea yielded 1.6 (1.49-1.71) × 10(9) and 7.3 (7.02-7.58) × 10(9) conidia per gram of initial dry rice after 8 days, at ε values of 0.34 and 0.36, respectively. Improvement of conidial yields corresponded to 1.33 and 1.55 times, respectively, compared to rice alone using WH amendment in the mixtures PR:WH (%) at 90-10 and 80-20. In addition, infectivity against Galleria mellonella larvae was maintained. This is the first report of the use of water hyacinth as a texturizer in SSC, affecting ε, which is proposed a key parameter in conidia production by I. fumosorosea, without affecting conidial infectivity.
昆虫病原真菌玫烟色棒束孢的分生孢子被用于防治农作物中的害虫。用这种真菌生产的市售杀真菌剂是通过固态培养(SSC)大规模生产的。为了促进固态培养中的气体交换,可以添加增孔剂以增加孔隙率(ε)。这项工作展示了凤眼莲(水葫芦)作为一种新型增孔剂的效果。将孔隙率ε = 0.23的预煮米(PR)混合物用作底物,然后将其与凤眼莲(WH改良剂)以不同比例混合,这些比例会影响孔隙率ε。玫烟色棒束孢的菌株CNRCB1和ARSEF3302在8天后,每克初始干米分别产生1.6(1.49 - 1.71)×10⁹和7.3(7.02 - 7.58)×10⁹个分生孢子,此时孔隙率ε值分别为0.34和0.36。与单独使用米相比,在预煮米:凤眼莲(%)为90 - 10和80 - 20的混合物中使用凤眼莲改良剂时,分生孢子产量的提高分别相当于1.33倍和1.55倍。此外,对大蜡螟幼虫的感染力得以保持。这是关于在固态培养中使用凤眼莲作为增孔剂影响孔隙率ε的首次报道,孔隙率ε被认为是玫烟色棒束孢分生孢子生产中的关键参数,且不影响分生孢子的感染力。