底纹
叶绿素
转录因子
生物
植物
叶绿素a
叶绿素b
基因表达
原叶绿素
细胞生物学
基因
园艺
生物化学
叶绿体
艺术
视觉艺术
作者
Jiaming Chen,Shuhua Wu,Fang Dong,Jianlong Li,Lanting Zeng,Jinchi Tang,Dachuan Gu
标识
DOI:10.3389/fpls.2021.779819
摘要
Besides aroma and taste, the color of dry tea leaves, tea infusion, and infused tea leaves is also an important index for tea quality. Shading can significantly increase the chlorophyll content of tea leaves, leading to enhanced tea leaf coloration. However, the underlying regulatory mechanism remains unclear. In this study, we revealed that the expressions of chlorophyll synthesis genes were significantly induced by shading, specially, the gene encoding protochlorophyllide oxidoreductase ( CsPOR ). Indoor control experiment showed that decreased light intensity could significantly induce the expression of CsPOR , and thus cause the increase of chlorophyll content. Subsequently, we explored the light signaling pathway transcription factors regulating chlorophyll synthesis, including CsPIFs and CsHY5. Through expression level and subcellular localization analysis, we found that CsPIF3-2, CsPIF7-1, and CsHY5 may be candidate transcriptional regulators. Transcriptional activation experiments proved that CsHY5 inhibits CsPORL-2 transcription. In summary, we concluded that shading might promote the expression of CsPORL-2 by inhibiting the expression of CsHY5 , leading to high accumulation of chlorophyll in tea leaves. The results of this study provide insights into the mechanism regulating the improvements to tea plant quality caused by shading.
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