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首页> 外文期刊>BMC Plant Biology >Biochemical and transcriptome analyses of a novel chlorophyll-deficient chlorina tea plant cultivar
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Biochemical and transcriptome analyses of a novel chlorophyll-deficient chlorina tea plant cultivar

机译:新型叶绿素缺陷型粉红色茶树栽培品种的生化和转录组分析

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Background The tea plant ( Camellia sinensis (L.) O. Kuntze) is one of the most economically important woody crops. Recently, many leaf color genotypes have been developed during tea plant breeding and have become valuable materials in the processing of green tea. Although the physiological characteristics of some leaf color mutants of tea plants have been partially revealed, little is known about the molecular mechanisms leading to the chlorina phenotype in tea plants. Results The yellow-leaf tea cultivar Zhonghuang 2 (ZH2) was selected during tea plant breeding. In comparison with Longjing 43 (LJ43), a widely planted green tea cultivar, ZH2 exhibited the chlorina phenotype and displayed significantly decreased chlorophyll contents. Transmission electron microscopy analysis revealed that the ultrastructure of the chloroplasts was disrupted, and the grana were poorly stacked in ZH2. Moreover, the contents of theanine and free amino acids were significantly higher, whereas the contents of carotenoids, catechins and anthocyanin were lower in ZH2 than in LJ43. Microarray analysis showed that the expression of 259 genes related to amino acid metabolism, photosynthesis and pigment metabolism was significantly altered in ZH2 shoots compared with those of LJ43 plants. Pathway analysis of 4,902 differentially expressed genes identified 24 pathways as being significantly regulated, including ‘cysteine and methionine metabolism’, ‘glycine, serine and threonine metabolism’, ‘flavonoid biosynthesis’, ‘porphyrin and chlorophyll metabolism’ and ‘carotenoid biosynthesis’. Furthermore, a number of differentially expressed genes could be mapped to the ‘theanine biosynthesis’, ‘chlorophyll biosynthesis’ and ‘flavonoid biosynthesis’ pathways. Changes in the expression of genes involved in these pathways might be responsible for the different phenotype of ZH2. Conclusion A novel chlorophyll-deficient chlorina tea plant cultivar was identified. Biochemical characteristics were analyzed and gene expression profiling was performed using a custom oligonucleotide-based microarray. This study provides further insights into the molecular mechanisms underlying the phenotype of the chlorina cultivar of Camellia sinensis .
机译:背景技术茶树(山茶(L.)O。Kuntze)是经济上最重要的木本作物之一。近来,在茶树育种期间已经开发了许多叶色基因型,并且已经成为绿茶加工中的有价值的材料。尽管已部分揭示了茶树的一些叶片颜色突变体的生理特性,但对导致茶树表型的分子机制了解甚少。结果在茶树育种中选择了黄叶茶品种中黄2号(ZH2)。与广泛种植的绿茶品种龙井43(LJ43)相比,ZH2表现出叶绿素表型,并且叶绿素含量明显降低。透射电子显微镜分析表明,叶绿体的超微结构被破坏,并且晶状体在ZH2中的堆积较差。此外,ZH2中的茶氨酸和游离氨基酸含量明显高于LJ43,而类胡萝卜素,儿茶素和花色苷的含量则较低。芯片分析表明,与LJ43植物相比,ZH2芽中与氨基酸代谢,光合作用和色素代谢有关的259个基因的表达发生了显着改变。对4,902个差异表达基因的通路分析确定了24个通路被显着调节,包括“半胱氨酸和蛋氨酸代谢”,“甘氨酸,丝氨酸和苏氨酸代谢”,“类黄酮生物合成”,“卟啉和叶绿素代谢”和“类胡萝卜素生物合成”。此外,许多差异表达的基因可以定位到“茶氨酸生物合成”,“叶绿素生物合成”和“类黄酮生物合成”途径。这些通路中涉及的基因表达的变化可能是ZH2不同表型的原因。结论确定了一种新的叶绿素缺乏型叶绿素茶植物品种。分析生化特性,并使用基于寡核苷酸的定制微阵列进行基因表达谱分析。这项研究提供了进一步的认识茶树的叶绿素品种表型的分子机制。

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