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首页> 外文期刊>Frontiers in Plant Science >From Chloroplast Biogenesis to Chlorophyll Accumulation: The Interplay of Light and Hormones on Gene Expression in Camellia sinensis cv. Shuchazao Leaves
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From Chloroplast Biogenesis to Chlorophyll Accumulation: The Interplay of Light and Hormones on Gene Expression in Camellia sinensis cv. Shuchazao Leaves

机译:从叶绿素生物发生到叶绿素积累:光和激素的相互作用在<斜斜肌中的 CV中的基因表达。蜀卓叶

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Chloroplast development and chlorophyll metabolism have been well described in model plants but not in perennial woody crops. Of particular interest is the interplay between light and hormones under shade conditions. We report that the shade induced accumulation of chlorophylls in Camellia sinensis cv. Shuchazao leaves is at least as a result of (a) positive changes in chloroplast development and (b) light/hormonal regulation of genes and transcription factors involved in the chlorophyll biosynthesis pathway. Under shade conditions, leaves developed an abundance of enlarged chloroplasts encapsulating more prominent thylakoid membranes. Four major metabolites in the chlorophyll biosynthesis pathway namely Chl a , Chl b , DPP, and Mg-Proto IX increased under shade conditions while PBG decreased significantly. Significant changes were found at the transcription level of regulators of chloroplast biogenesis ( GLK1 and LHCB ), the structural genes in the chlorophyll biosynthesis pathway ( HEMA1 , CLH1 , PORA , and CAO ) and potential components involved in light signaling ( PHYA , CRY1 , HY5 , and DELLAs ). Two central signal integrators ( GLK1 and LHCB) between the nucleus and chloroplast showed clear responses to shade, suggesting a crucial role of light in regulating chloroplast development in tea leaves. Concurrent with the changes in gene expression, the concentrations of endogenous phytohormones (auxin, cytokinin, and gibberellins) increased significantly in the later stages of shade conditions. Two key integrators involved in the hormone signal pathways, EIN3 and EBF1/2, increased under shade conditions suggesting that shade induced changes to hormone levels may play some role in modulating chlorophyll biosynthesis in the tea leaves. Overall, this data suggests that the light and hormone influence over chloroplast development and chlorophyll biosynthesis in Camellia is similar to that of Arabidopsis . This study provides new insights into the molecular mechanisms that regulate chlorophyll biosynthesis in response to light and hormones in a commercially important woody plant such as Camellia , which may facilitate the breeding of high-chlorophyll tea cultivars for the improvement of sensory features of the green tea product.
机译:在模型植物中已经很好地描述了叶绿体的开发和叶绿素代谢,但在多年生的木本作物中是很好的描述。特别感兴趣的是阴影条件下的光和激素之间的相互作用。我们报告说,山茶花中叶绿素的阴影诱导叶绿素CV。水川叶的叶子至少是(a)叶绿体发育的阳性变化和(b)叶绿素生物合成途径中的基因和转录因子的光/激素调节。在遮荫条件下,叶片开发了一种封装更突出的囊体膜的大量扩大叶片。叶绿素生物合成途径中的四个主要代谢物即CHL A,CHL B,DPP和MG-PROTO IX在阴凉条件下增加,而PBG显着降低。在叶绿素生物发生(GLK1和LHCB)的调节剂的转录水平,叶绿素生物合成途径(HEMA1,ClH1,Pora和CaO)的结构基因以及涉及光信号(Phya,Cry1,Hy5的潜在部件,发现显着的变化和戴尔斯)。细胞核和叶绿体之间的两个中央信号积分器(GLK1和LHCB)显示出对阴影的澄清反应,这表明光在调节茶叶中叶绿体发育的关键作用。随着基因表达的变化,在遮荫条件的后期阶段中,内源性植物表达的变化,内源性植物激素(植物素,细胞素蛋白和赤霉素)的浓度显着增加。涉及激素信号途径,EIN3和EBF1 / 2的两个关键集成商在阴影条件下增加,表明阴影诱导对激素水平的变化可能在调节茶叶中的叶绿素生物合成中起作用。总体而言,这种数据表明,山茶花对叶绿体发育和叶绿素生物合成的光和激素的影响与拟南芥相似。本研究为调节叶绿素生物合成的分子机制提供了新的洞察,以响应于山茶花等商业上重要的木质植物中的光和激素,这可能促进高叶绿素茶草品种的育种,从而改善绿茶的感官特征产品。

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