Institute of Edible Fungi, Shanghai Academy of Agricultural Sciences, Shanghai 201403, China.
J Agric Food Chem. 2024 Oct 23;72(42):23592-23605. doi: 10.1021/acs.jafc.4c03506. Epub 2024 Oct 9.
To explore the reason for cytoplasmic replacement's significant effect on browning, transcriptomic data of nuclear (N) and mitochondrial (M) mRNAs and long noncoding RNAs (lncRNAs) in L808 and two cytoplasmic hybrids (cybrids) (L808-A2 and L808-B) of at three different culturing times (80, 100, and 120 days) were obtained. The results showed that the expression of N and M genes and lncRNAs changed with the culture time and cytoplasmic source. Cytoplasmic replacement significantly affected some M and N genes related to the internal mechanism and external morphological characteristics of browning. The internal browning mechanism should be the nicotinamide adenine dinucleotide phosphate (NADPH)-mediated antioxidant machinery to protect mycelia against oxidative stress induced by the generation of reactive oxygen species under light irradiation. External morphological characteristics were the changing features of brown films by melanin (an antioxidant) aggregation on the surface of the mycelia of the bag or log. Especially, some genes were related to the remodeling of the plasma membrane, extracellular enzymes of celluloses and hemicellulases, small molecules, and NADPH metabolic processes. Additionally, communication between the nucleus and mitochondria mediated by M- was reported for the first time, and it is mainly appreciated in M structural assembly, functional implementation, and cooperation with other organelles.
为了探究细胞质替换对褐变影响显著的原因,我们获取了在三个不同培养时间(80、100 和 120 天)下,核(N)和线粒体(M)mRNA 和长链非编码 RNA(lncRNA)的转录组数据,研究对象为 L808 及其两个细胞质杂种(L808-A2 和 L808-B)。结果表明,N 和 M 基因以及 lncRNA 的表达随培养时间和细胞质来源而变化。细胞质替换显著影响了一些与褐变内部机制和外部形态特征相关的 M 和 N 基因。内部褐变机制可能是烟酰胺腺嘌呤二核苷酸磷酸(NADPH)介导的抗氧化机制,以保护菌丝体免受光照下活性氧产生引起的氧化应激。外部形态特征是由于黑色素(一种抗氧化剂)在菌袋或菌棒菌丝表面聚集而导致的棕褐色薄膜的变化特征。特别是,一些基因与质膜重塑、纤维素和半纤维素外切酶、小分子和 NADPH 代谢过程有关。此外,我们首次报道了由 M-介导的核与线粒体之间的通讯,主要表现在 M 结构组装、功能实现以及与其他细胞器的合作。