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Gene Expressing and sRNA Sequencing Show That Gene Differentiation Associates with a Yellow Acer palmatum Mutant Leaf in Different Light Conditions

机译:基因表达和sRNA测序表明在不同光照条件下基因差异与黄色枫叶槭突变叶相关。

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摘要

Acer palmatum Thunb., like other maples, is a widely ornamental-use small woody tree for leaf shapes and colors. Interestingly, we found a yellow-leaves mutant “Jingling Huangfeng” turned to green when grown in shade or low-density light condition. In order to study the potential mechanism, we performed high-throughput sequencing and obtained 1,082 DEGs in leaves grown in different light conditions that result in A. palmatum significant morphological and physiological changes. A total of 989 DEGs were annotated and clustered, of which many DEGs were found associating with the photosynthesis activity and pigment synthesis. The expression of CHS and FDR gene was higher while the expression of FLS gene was lower in full-sunlight condition; this may cause more colorful substance like chalcone and anthocyanin that were produced in full-light condition, thus turning the foliage to yellow. Moreover, this is the first available miRNA collection which contains 67 miRNAs of A. palmatum, including 46 conserved miRNAs and 21 novel miRNAs. To get better understanding of which pathways these miRNAs involved, 102 Unigenes were found to be potential targets of them. These results will provide valuable genetic resources for further study on the molecular mechanisms of Acer palmatum leaf coloration.
机译:像其他枫树一样,槭树槭树(Acer palmatum Thunb。)是一种广泛用于树叶形状和颜色的观赏用小木本树。有趣的是,我们发现在阴暗或低密度光照条件下生长的黄叶突变体“金陵黄枫”变成绿色。为了研究潜在的机制,我们进行了高通量测序,并在不同光照条件下生长的叶片中获得了1,082个DEG,这些叶片导致了棕榈树的显着形态和生理变化。总共对989个DEG进行了注释和聚类,其中发现许多DEG与光合作用活性和色素合成有关。在阳光充足的条件下,CHS和FDR基因的表达较高,而FLS基因的表达较低。这可能会导致在全光照条件下产生更鲜艳的物质,如查尔酮和花青素,从而使叶子变黄。此外,这是第一个可用的miRNA集合,其中包含67个棕榈棕的miRNA,包括46个保守的miRNA和21个新颖的miRNA。为了更好地了解这些miRNA涉及哪些途径,发现102个Unigenes是它们的潜在靶标。这些结果将为进一步研究鸡爪枫叶片着色的分子机制提供有价值的遗传资源。

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