Fu Yong-Ping, Liang Yuan, Dai Yue-Ting, Yang Chen-Tao, Duan Ming-Zheng, Zhang Zhuo, Hu Song-Nian, Zhang Zhi-Wu, Li Yu
Engineering Research Center of Chinese Ministry of Education for Edible and Medicinal Fungi, College of Agriculture, Jilin Agricultural University, Changchun 130118, China.
Department of Crop and Soil Sciences, Washington State University, Pullman, WA 99163, USA.
Molecules. 2016 May 17;21(5):560. doi: 10.3390/molecules21050560.
Cold stimulation of Bailinggu's mycelia is the main factor that triggers primordia initiation for successful production of fruiting bodies under commercial cultivation. Yet, the molecular-level mechanisms involved in mycelia response to cold stimulation are still unclear. Here, we performed comparative transcriptomic analysis using RNA-Seq technology to better understand the gene expression regulation during different temporal stages of cold stimulation in Bailinggu. A total of 21,558 Bailinggu mycelia unigenes were de novo assembled and annotated from four libraries (control at 25 °C, plus cold stimulation treatments at -3 °C for a duration of 1-2 days, 5-6 days, and 9-10 days). GO and KEGG pathway analysis indicated that functional groups of differentially expressed unigenes associated with cell wall and membrane stabilization, calcium signaling and mitogen-activated protein kinases (MAPK) pathways, and soluble sugars and protein biosynthesis and metabolism pathways play a vital role in Bailinggu's response to cold stimulation. Six hundred and seven potential EST-based SSRs loci were identified in these unigenes, and 100 EST-SSR primers were randomly selected for validation. The overall polymorphism rate was 92% by using 10 wild strains of Bailinggu. Therefore, these results can serve as a valuable resource for a better understanding of the molecular mechanisms associated with Bailinggu's response to cold stimulation.
对白玉菇菌丝体进行冷刺激是在商业栽培条件下成功产生子实体从而实现出菇的主要触发因素。然而,菌丝体对冷刺激响应所涉及的分子水平机制仍不清楚。在此,我们利用RNA-Seq技术进行了比较转录组分析,以更好地了解白玉菇在冷刺激不同时间阶段的基因表达调控。从四个文库(25℃对照,以及在-3℃下分别进行1 - 2天、5 - 6天和9 - 10天冷刺激处理)中从头组装并注释了总共21,558个白玉菇菌丝体单基因。GO和KEGG通路分析表明,与细胞壁和膜稳定、钙信号和丝裂原活化蛋白激酶(MAPK)通路以及可溶性糖和蛋白质生物合成与代谢通路相关的差异表达单基因功能组在白玉菇对冷刺激的响应中起着至关重要的作用。在这些单基因中鉴定出607个潜在的基于EST的SSR位点,并随机选择100对EST-SSR引物进行验证。使用10株白玉菇野生菌株,总体多态性率为92%。因此,这些结果可为更好地理解与白玉菇对冷刺激响应相关的分子机制提供有价值的资源。