首页> 外文期刊>Scientia horticulturae >Differential expression analysis of different albescent stages of 'Anji Baicha' ( Camellia sinensis (L.) O. Kuntze) using cDNA microarray.
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Differential expression analysis of different albescent stages of 'Anji Baicha' ( Camellia sinensis (L.) O. Kuntze) using cDNA microarray.

机译:利用cDNA微阵列分析'Anji Baicha'(山茶(L.)O. Kuntze)不同月牙期的差异表达分析。

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Tea cultivar 'Anji Baicha' is a special green-revertible albino mutant and is widely cultivated in China for producing high price, high quality green tea with jade color, high aroma and nice taste. However, the molecular mechanism of the albino mutation is still unclear until now. The first tea plant cDNA microarray with 4866 clones was developed to analyze gene expression profiling of different albescent stages. A total of 671 differentially expressed genes at different albescent stages were found via the microarray analysis, which could be grouped into five clusters. The corresponding genes were involved in energy metabolism, carbon fixation, cell expansion, secondary metabolism, plant growth and defence, and other physiological processes including protein, nucleotide synthesis, etc. Particularly, some differentially expressed genes encoding important catalyzing enzymes or regulatory proteins which took part in chlorophyll biosynthesis or chloroplast development were identified. Some candidate genes possibly related to the albino process were further analyzed by using real-time PCR. The present study gave some useful clues for genes worthy of further understanding the albino phenotype of 'Anji Baicha' and also provided a model for utilization of the microarray technology in the tea plant.
机译:茶树品种“安吉白茶”是一种特殊的绿色可逆白化突变体,在中国广泛种植,用于生产价格高,品质高的绿茶,翡翠色,香气浓郁,口感好。然而,白化突变的分子机制至今仍不清楚。开发了第一个具有4866个克隆的茶树cDNA微阵列,以分析不同白炽阶段的基因表达谱。通过微阵列分析发现了在不同的白炽阶段共有671个差异表达基因,可以将其分为五个簇。相应的基因参与能量代谢,碳固定,细胞扩展,次级代谢,植物生长和防御以及其他生理过程,包括蛋白质,核苷酸合成等。特别是一些差异表达的基因编码重要的催化酶或调节蛋白,确定叶绿素生物合成或叶绿体发育的部分。通过使用实时PCR进一步分析了可能与白化病过程有关的一些候选基因。本研究为值得进一步了解“安吉白茶”的白化病表型的基因提供了一些有用的线索,并提供了在茶树中利用微阵列技术的模型。

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