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Comparative transcriptomic analyses of normal and malformed flowers in sugar apple ( Annona squamosa L.) to identify the differential expressed genes between normal and malformed flowers

机译:糖苹果花(Annona squamosa L.)中正常花和畸形花的转录组学比较分析,以鉴定正常花和畸形花之间的差异表达基因

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Sugar apple (Annona squamosa L.), a popular fruit with high medicinal and nutritional properties, is widely cultivated in tropical South Asia and America. The malformed flower is a major cause for a reduction in production of sugar apple. However, little information is available on the differences between normal and malformed flowers of sugar apple. To gain a comprehensive perspective on the differences between normal and malformed flowers of sugar apple, cDNA libraries from normal and malformation flowers were prepared independently for Illumina sequencing. The data generated a total of 70,189,896 reads that were integrated and assembled into 55,097 unigenes with a mean length of 783?bp. A large number of differentially expressed genes (DEGs) were identified. Among these DEGs, 701 flower development-associated transcript factor encoding genes were included. Furthermore, a large number of flowering- and hormone-related DEGs were also identified, and most of these genes were down-regulated expressed in the malformation flowers. The expression levels of 15 selected genes were validated using quantitative-PCR. The contents of several endogenous hormones were measured. The malformed flowers displayed lower endogenous hormone levels compared to the normal flowers. The expression data as well as hormone levels in our study will serve as a comprehensive resource for investigating the regulation mechanism involved in floral organ development in sugar apple.
机译:糖苹果(Annona squamosa L.)是一种具有高药用和营养特性的流行水果,在热带南亚和美洲广泛种植。畸形的花是导致糖苹果产量减少的主要原因。但是,关于糖苹果正常花和畸形花之间差异的信息很少。为了全面了解糖苹果的正常花和畸形花之间的差异,我们分别准备了正常花和畸形花的cDNA文库用于Illumina测序。该数据产生了总共70,189,896个读段,这些读段已整合并组装成55,097个单基因,平均长度为783?bp。鉴定出大量差异表达基因(DEG)。在这些DEG中,包括701个与花发育相关的转录因子编码基因。此外,还鉴定出大量与开花和激素相关的DEG,并且这些基因中的大多数在畸形花中被下调表达。使用定量PCR验证了15个选定基因的表达水平。测量了几种内源激素的含量。与正常花朵相比,畸形花朵显示出较低的内源激素水平。我们的研究中的表达数据以及激素水平将作为研究糖苹果花器官发育所涉及的调控机制的综合资源。

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