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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 flowering-related genes between early flowering trifoliate orange mutant and wild-type trifoliate orange (Poncirus trifoliata L. Raf.) by suppression subtraction hybridization (SSH) and macroarray.
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Identification of flowering-related genes between early flowering trifoliate orange mutant and wild-type trifoliate orange (Poncirus trifoliata L. Raf.) by suppression subtraction hybridization (SSH) and macroarray.

机译:通过抑制减法杂交(SSH)和大分子阵列鉴定早开花三叶橙突变体和野生型三叶橙(Poncirus trifoliata L. Raf。)之间的开花相关基因。

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To gain a better understanding of gene expression in early flowering trifoliate orange mutant (precocious trifoliate orange, Poncirus trifoliata L. Raf.), we performed suppression subtractive hybridization, which allowed identification of flowering-related genes in the mutant and the wild type in the juvenile phase. Using macroarray analysis, we identified 125 and 149 non-redundant expressed sequence tags (ESTs) in the forward-subtracted and the reverse-subtracted library. These cDNAs covered a broad repertoire of flowering development related genes, provided helpful information for understanding genetic mechanism underlying the signaling and regulation in transition from the vegetative to reproductive phase. We have investigated the temporal and spatial expression pattern of some SSH-enriched flowering-related genes in the mutant and the wild type. Of these genes, three genes (BARELY ANY MERITED, FLOWERING LOCUS T and TERMINAL FLOWER1) encoding proteins previously reported to be associated with, or involved in, developmental processes in other species were identified and further investigated by in situ hybridization. Specific spatial and/or temporal patterns were detected, and differences were observed between the mutant and the wild type during flower development. Meanwhile, the temporal expression of these genes was further examined by real-time PCR, the results showed that FT and BAM transcripts accumulated to higher levels and TFL1 transcripts accumulated to lower levels in mutant juvenile tissues relative to wild-type juvenile tissues. In the adult stage, FT, BAM and TFL1 expression patterns were closely correlated with flowering development, suggesting that these three genes may play a critical role in the early flowering process of precocious trifoliate orange.
机译:为了更好地了解早期开花的三叶形橙色突变体(早熟的三叶形橙色,Poncirus trifoliata L. Raf。)中的基因表达,我们进行了抑制消减杂交,从而鉴定了该突变体中与开花相关的基因和野生型。少年阶段。使用宏阵列分析,我们在前减和后减文库中鉴定了125和149个非冗余表达序列标签(EST)。这些cDNA涵盖了与开花发育相关的基因的广泛组成部分,为理解从营养期到生殖期的信号转导和调控的遗传机制提供了有用的信息。我们调查了突变体和野生型中一些SSH丰富的开花相关基因的时空表达模式。在这些基因中,鉴定了三个以前编码与其他物种的发育过程相关或参与其发育过程的蛋白的基因(几乎没有任何人介导的FLOWERING LOCUS T和TERMINAL FLOWER1),并通过原位杂交进一步研究。检测到特定的空间和/或时间模式,并且在花发育过程中观察到突变体和野生型之间的差异。同时,通过实时PCR进一步检查了这些基因的时间表达,结果表明,与野生型少年组织相比,突变少年组织中FT和BAM转录物积累较高水平,而TFL1转录物积累较低水平。在成年期,FT,BAM和TFL1的表达方式与开花发育密切相关,表明这三个基因可能在早熟的三叶橙的早期开花过程中起关键作用。

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