Molecular Plant Sciences, Washington State University, Pullman, Washington, USA.
Department of Horticulture, Washington State University, Pullman, Washington, USA.
Sci Rep. 2020 May 21;10(1):8478. doi: 10.1038/s41598-020-65275-8.
European pear (Pyrus communis L.) cultivars require a genetically pre-determined duration of cold-temperature exposure to induce autocatalytic system 2 ethylene biosynthesis and subsequent fruit ripening. The physiological responses of pear to cold-temperature-induced ripening have been well characterized, but the molecular mechanisms underlying this phenomenon continue to be elucidated. This study employed previously established cold temperature conditioning treatments for ripening of two pear cultivars, 'D'Anjou' and 'Bartlett'. Using a time-course transcriptomics approach, global gene expression responses of each cultivar were assessed at four stages of developmental during the cold conditioning process. Differential expression, functional annotation, and gene ontology enrichment analyses were performed. Interestingly, evidence for the involvement of cold-induced, vernalization-related genes and repressors of endodormancy release was found. These genes have not previously been described to play a role in fruit during the ripening transition. The resulting data provide insight into cultivar-specific mechanisms of cold-induced transcriptional regulation of ripening in European pear, as well as a unique comparative analysis of the two cultivars with very different cold conditioning requirements.
欧洲梨(Pyrus communis L.)品种需要经历一定时长的低温环境才能诱导自身催化系统 2 型乙烯生物合成和随后的果实成熟。梨对低温诱导成熟的生理反应已得到很好的描述,但这一现象的分子机制仍在阐明之中。本研究采用先前建立的梨品种“安久”和“巴特利特”的成熟低温处理方法。通过时间进程转录组学方法,在低温处理过程的四个发育阶段评估了每个品种的整体基因表达反应。进行了差异表达、功能注释和基因本体富集分析。有趣的是,我们发现了与冷诱导、春化相关基因以及内休眠释放抑制剂相关的证据。这些基因以前并未被描述在果实成熟过程中发挥作用。所得数据深入了解了欧洲梨低温诱导成熟过程中品种特异性转录调控的机制,以及对两个具有非常不同低温处理需求的品种的独特比较分析。