Departamento de Biologia Celular, Instituto de Ciências Biológicas, Universidade de Brasília, Campus Universitário Darcy Ribeiro, Brasília, DF, 70910-900, Brazil.
Instituto Federal de Goiás (IFG), Águas Lindas, GO, 72910-733, Brazil.
Sci Rep. 2023 Jul 29;13(1):12296. doi: 10.1038/s41598-023-39115-4.
Jatropha curcas is an oilseed crop with biorefinery applications. Whilst cake generated following oil extraction offers potential as a protein source for animal feed, inactivation of toxic phorbol esters present in the material is necessary. Pleurotus pulmonarius is a detoxifying agent for jatropha cake with additional potential as animal feed, edible mushroom and for enzyme production. For the characterization of fungal genes involved in phorbol ester degradation, together with other industrial applications, reverse transcription-quantitative PCR (RT-qPCR) is a tool that enables accurate quantification of gene expression. For this, reliable analysis requires reference genes for normalization of mRNA levels validated under conditions employed for target genes. The stability of potential reference genes β-TUB, ACTIN, GAPDH, PHOS, EF1α, TRPHO, LAC, MNP3, MYP and VP were evaluated following growth of P. pulmonarius on toxic, non-toxic jatropha cake and a combined treatment, respectively. NormFinder and geNorm algorithms for expression stability analysis identified PHOS, EF1α and MNP3 as appropriate for normalizing gene expression. Reference gene combinations contrasting in ranking were compared following normalization of relative expression of the CHU_2040 gene, encoding an esterase enzyme potentially involved in phorbol ester degradation. The reference genes for P. pulmonarius will facilitate the elucidation of mechanisms involved in detoxification of phorbol esters as well as analysis of target genes for application in biorefinery models.
麻疯树是一种具有生物炼制应用的油料作物。虽然油提取后产生的饼粕可以作为动物饲料的蛋白质来源,但必须使材料中存在的有毒佛波酯失活。肺形侧耳是麻疯树饼粕的解毒剂,具有作为动物饲料、食用蘑菇和生产酶的额外潜力。为了研究参与佛波酯降解的真菌基因,以及其他工业应用,反转录定量 PCR(RT-qPCR)是一种能够准确量化基因表达的工具。为此,需要参考基因来对 mRNA 水平进行归一化,这些参考基因在目标基因所使用的条件下经过验证。在肺形侧耳分别生长在有毒、无毒麻疯树饼粕和组合处理条件下,评估了β-TUB、ACTIN、GAPDH、PHOS、EF1α、TRPHO、LAC、MNP3、MYP 和 VP 等潜在参考基因的稳定性。NormFinder 和 geNorm 算法用于表达稳定性分析,鉴定 PHOS、EF1α 和 MNP3 适合归一化基因表达。在归一化编码潜在参与佛波酯降解的酯酶酶基因 CHU_2040 的相对表达后,比较了排名差异较大的参考基因组合。麻疯树的参考基因将有助于阐明佛波酯解毒的机制,以及分析生物炼制模型中应用的靶基因。