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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Identification of differentially-expressed genes potentially implicated in drought response in pitaya (Hylocereus undatus) by suppression subtractive hybridization and cDNA microarray analysis
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Identification of differentially-expressed genes potentially implicated in drought response in pitaya (Hylocereus undatus) by suppression subtractive hybridization and cDNA microarray analysis

机译:通过抑制减法杂交和cDNA微阵列分析,鉴定差异表达基因可能涉及鳕鱼(Hylocereus Undatus)的干旱反应

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Drought is one of the most severe threats to the growth, development and yield of plant In order to unravel the molecular basis underlying the high tolerance of pitaya (Hylocereus undatus) to drought stress, suppression subtractive hybridization (SSH) and cDNA microarray approaches were firstly combined to identify the potential important or novel genes involved in the plant responses to drought stress. The forward (drought over drought-free) and reverse (drought-free over drought) suppression subtractive cDNA libraries were constructed using in vitro shoots of cultivar 'Zihonglong' exposed to drought stress and drought-free (control). A total of 2112 clones, among which half were from either forward or reverse SSH library, were randomly picked up to construct a pitaya cDNA microarray. Microarray analysis was carried out to verify the expression fluctuations of this set of clones upon drought treatment compared with the controls. A total of 309 expressed sequence tags (ESTs), 153 from forward library and 156 from reverse library, were obtained, and 138 unique ESTs were identified after sequencing by clustering and blast analyses, which included genes that had been previously reported as responsive to water stress as well as some functionally unknown genes. Thirty six genes were mapped to 47 KEGG pathways, including carbohydrate metabolism, lipid metabolism, energy metabolism, nucleotide metabolism, and amino acid metabolism of pitaya. Expression analysis of the selected ESTs by reverse transcriptase polymerase chain reaction (RT-PCR) corroborated the results of differential screening. Moreover, time-course expression patterns of these selected ESTs further confirmed that they were closely responsive to drought treatment Among the differentially expressed genes (DEGs), many are related to stress tolerances including drought tolerance. Thereby, the mechanism of drought tolerance of this pitaya genotype is a very complex physiological and biochemical process, in which multiple metabolism pathways and many genes were implicated. The data gained herein provide an insight into the mechanism underlying the drought stress tolerance of pitaya, as well as may facilitate the screening of candidate genes for drought tolerance.
机译:干旱是植物生长,发展和产量最严重的威胁之一,以解开脱脂酵母(Hylocereus Undatus)对干旱胁迫的高耐受性,首先是抑制减去杂交(SSH)和cDNA微阵列方法的分子基础结合以鉴定植物对干旱胁迫的潜在重要或新基因。使用栽培品种“Zihonglong”的体外射击暴露于干旱胁迫和无干旱(对照)构建前向(无干旱)和逆转(无干旱)抑制减去CDNA文库。随机拾取总共2112个克隆,其中来自前向或反向SSH文库的一半,以构建筏细胞cDNA微阵列。进行微阵列分析以验证与对照相比干旱治疗时该组克隆的表达波动。得到总共309个表达的序列标签(EST),来自反向文库的前进文库和156,通过聚类和喷射分析测序后鉴定了138个独特的EST,其中包括先前响应于水的基因压力以及一些功能未知的基因。将三十六个基因映射到47 kegg途径,包括碳水化合物代谢,脂质代谢,能量代谢,核苷酸代谢和脱皮氨基酸代谢。逆转录酶聚合酶链反应(RT-PCR)对所选EST的表达分析证实了差异筛选的结果。此外,这些所选EST的时间过程表达模式进一步证实,它们对差异表达基因(DEGS)之间的干旱处理密切敏感,许多与胁迫耐受性有关。由此,这种猪基因型的耐旱耐受的机制是一种非常复杂的生理和生化过程,其中涉及多种代谢途径和许多基因。本文获得的数据能够深入了解筏的干旱胁迫耐受性的机制,以及可以有助于筛选候选基因的耐旱性。

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