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Genome-Wide Identification and Comparative Analysis of Conserved and Novel MicroRNAs in Grafted Watermelon by High-Throughput Sequencing

机译:高通量测序技术在嫁接西瓜中保守和新型MicroRNA的全基因组鉴定和比较分析

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摘要

MicroRNAs (miRNAs) are a class of endogenous small non-coding RNAs involved in the post-transcriptional gene regulation and play a critical role in plant growth, development and stresses response. However less is known about miRNAs involvement in grafting behaviors, especially with the watermelon (Citrullus lanatus L.) crop, which is one of the most important agricultural crops worldwide. Grafting method is commonly used in watermelon production in attempts to improve its adaptation to abiotic and biotic stresses, in particular to the soil-borne fusarium wilt disease. In this study, Solexa sequencing has been used to discover small RNA populations and compare miRNAs on genome-wide scale in watermelon grafting system. A total of 11,458,476, 11,614,094 and 9,339,089 raw reads representing 2,957,751, 2,880,328 and 2,964,990 unique sequences were obtained from the scions of self-grafted watermelon and watermelon grafted on-to bottle gourd and squash at two true-leaf stage, respectively. 39 known miRNAs belonging to 30 miRNA families and 80 novel miRNAs were identified in our small RNA dataset. Compared with self-grafted watermelon, 20 (5 known miRNA families and 15 novel miRNAs) and 47 (17 known miRNA families and 30 novel miRNAs) miRNAs were expressed significantly different in watermelon grafted on to bottle gourd and squash, respectively. MiRNAs expressed differentially when watermelon was grafted onto different rootstocks, suggesting that miRNAs might play an important role in diverse biological and metabolic processes in watermelon and grafting may possibly by changing miRNAs expressions to regulate plant growth and development as well as adaptation to stresses. The small RNA transcriptomes obtained in this study provided insights into molecular aspects of miRNA-mediated regulation in grafted watermelon. Obviously, this result would provide a basis for further unravelling the mechanism on how miRNAs information is exchanged between scion and rootstock in grafted watermelon, and its relevance to diverse biological processes and environmental adaptation.
机译:微小RNA(miRNA)是一类内源性小非编码RNA,参与转录后基因调控,在植物生长,发育和胁迫响应中起关键作用。然而,人们对miRNA参与嫁接行为的了解较少,特别是西瓜(Citrullus lanatus L.)作物是世界上最重要的农作物之一。嫁接方法通常用于西瓜生产中,以试图改善其对非生物和生物胁迫的适应性,特别是对土壤传播的枯萎病的适应性。在这项研究中,Solexa测序已用于发现小的RNA种群,并在西瓜嫁接系统中在全基因组范围内比较miRNA。从自嫁接的西瓜和在两个真叶阶段分别嫁接到葫芦和南瓜上的西瓜的接穗中分别获得11,458,476、11,614,094和9,339,089个原始读数,分别代表2,957,751、2,880,328和2,964,990个独特序列。在我们的小型RNA数据集中鉴定出39个已知的miRNA,它们属于30个miRNA家族和80个新颖的miRNA。与自移植西瓜相比,嫁接在葫芦和南瓜上的西瓜分别表达了20个(5个已知的miRNA家族和15个新的miRNA)和47个(17个已知的miRNA家族和30个新的miRNA)显着不同。当将西瓜嫁接到不同的砧木上时,miRNA的表达有所不同,这表明miRNA可能在西瓜的各种生物和代谢过程中发挥重要作用,并且嫁接可能通过改变miRNA的表达来调节植物的生长发育以及适应胁迫来实现。在这项研究中获得的小RNA转录组提供了对嫁接西瓜中miRNA介导调控的分子方面的见解。显然,该结果将为进一步阐明嫁接西瓜的接穗和砧木之间如何交换miRNA信息的机制提供基础,以及其与多种生物过程和环境适应性的相关性。

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