Ye Liyun, He Xiaofang, Su Congbao, Feng Haiying, Meng Guoliang, Chen Bingzhi, Wu Xiaoping
College of Life Sciences, Fujian Agriculture and Forestry University, Fuzhou 350002, China.
College of Food Sciences, Fujian Agriculture and Forestry University, Fuzhou 350002, China.
J Fungi (Basel). 2022 Nov 9;8(11):1182. doi: 10.3390/jof8111182.
Mitochondria are the power source of living cells and implicated in the oxidative metabolism. However, the effect of mitochondria on breeding is usually ignored in conventional research. In this study, the effect of mitochondria on morphology, yield, and main primary bioactive components was analyzed via structuring and comparing isonuclear alloplasmic strains. The crucial biological pathways were then explored based on the transcriptome. The results showed that isonuclear alloplasmic exhibited difference in mycelial growth rate in potato dextrose agar medium (PDA), basidiospore yield, and polysaccharide and triterpenoid content. Otherwise, mitochondria did not change colony and fruit body morphology, mushroom yield, or mycelial growth rate in solid-state fermentation cultivation material. The transcriptome data of two significant isonuclear alloplasmic strains S1 and S5 revealed that the involvement of differentially expressed genes (DEGs) was mainly in pentose and glucuronate interconversions, starch and sucrose metabolism, and steroid biosynthesis. The result was further confirmed by the other isonuclear alloplasmic strains. The above results further proved that mitochondria could affect the active components of . Our results provide information which will contribute to understanding of mitochondria and will be helpful for breeding improved varieties.
线粒体是活细胞的能量来源,与氧化代谢有关。然而,在传统研究中,线粒体对育种的影响通常被忽视。在本研究中,通过构建和比较同核异质菌株,分析了线粒体对形态、产量和主要生物活性成分的影响。然后基于转录组探索关键的生物学途径。结果表明,同核异质菌株在马铃薯葡萄糖琼脂培养基(PDA)中的菌丝生长速率、担孢子产量以及多糖和三萜含量存在差异。此外,线粒体在固态发酵栽培基质中并未改变菌落和子实体形态、蘑菇产量或菌丝生长速率。两个重要的同核异质菌株S1和S5的转录组数据显示,差异表达基因(DEGs)主要参与戊糖和葡萄糖醛酸相互转化、淀粉和蔗糖代谢以及类固醇生物合成。其他同核异质菌株进一步证实了这一结果。上述结果进一步证明线粒体可影响(某种物质的)活性成分。我们的研究结果为理解线粒体提供了信息,将有助于培育改良品种。