Wu Weifang, Deng Qin, Shi Pibiao, Yang Jinghua, Hu Zhongyuan, Zhang Mingfang
Laboratory of Germplasm Innovation and Molecular Breeding, Institute of Vegetable Science, Zhejiang University, Hangzhou, Zhejiang, P. R. China.
Key laboratory of Horticultural Plant Growth, Development & Quality Improvement, Ministry of Agriculture, Hangzhou, Zhejiang, P. R. China.
PLoS One. 2016 Oct 17;11(10):e0164725. doi: 10.1371/journal.pone.0164725. eCollection 2016.
Watermelon (Citrullus lanatus) is a globally important crop belonging to the family Cucurbitaceae. The grafting technique is commonly used to improve its tolerance to stress, as well as to enhance its nutrient uptake and utilization. It is believed that miRNA is most likely involved in its nutrient-starvation response as a graft-transportable signal. The quantitative real-time reverse transcriptase polymerase chain reaction is the preferred method for miRNA functional analysis, in which reliable reference genes for normalization are crucial to ensure the accuracy. The purpose of this study was to select appropriate reference genes in scion (watermelon) and rootstocks (squash and bottle gourd) of grafted watermelon plants under normal growth conditions and nutrient stresses (nitrogen and phosphorus starvation). Under nutrient starvation, geNorm identified miR167c and miR167f as two most stable genes in both watermelon leaves and squash roots. miR166b was recommended by both geNorm and NormFinder as the best reference in bottle gourd roots under nutrient limitation. Expression of a new Cucurbitaceae miRNA, miR85, was used to validate the reliability of candidate reference genes under nutrient starvation. Moreover, by comparing several target genes expression in qRT-PCR analysis with those in RNA-seq data, miR166b and miR167c were proved to be the most suitable reference genes to normalize miRNA expression under normal growth condition in scion and rootstock tissues, respectively. This study represents the first comprehensive survey of the stability of miRNA reference genes in Cucurbitaceae and provides valuable information for investigating more accurate miRNA expression involving grafted watermelon plants.
西瓜(Citrullus lanatus)是一种全球重要的葫芦科作物。嫁接技术常用于提高其抗逆性,以及增强其养分吸收和利用能力。据信,miRNA很可能作为一种可通过嫁接运输的信号参与其营养饥饿反应。定量实时逆转录聚合酶链反应是miRNA功能分析的首选方法,其中可靠的标准化内参基因对于确保准确性至关重要。本研究的目的是在正常生长条件和营养胁迫(氮和磷饥饿)下,选择嫁接西瓜植株的接穗(西瓜)和砧木(南瓜和瓠瓜)中的合适内参基因。在营养饥饿条件下,geNorm鉴定出miR167c和miR167f是西瓜叶片和南瓜根中最稳定的两个基因。在营养限制条件下,geNorm和NormFinder均推荐miR166b作为瓠瓜根中的最佳内参。利用一种新的葫芦科miRNA miR85的表达来验证营养饥饿条件下候选内参基因的可靠性。此外,通过比较qRT-PCR分析中的几个靶基因表达与RNA-seq数据中的表达,证明miR166b和miR167c分别是在接穗和砧木组织正常生长条件下标准化miRNA表达的最合适内参基因。本研究是对葫芦科miRNA内参基因稳定性的首次全面调查,为研究涉及嫁接西瓜植株的更准确miRNA表达提供了有价值的信息。