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Transcriptional analyses reveal the molecular mechanism governing shade tolerance in the invasive plant Solidago canadensis

机译:转录分析揭示了治疗侵袭性植物SolidaGo Canadensis的阴影耐受的分子机制

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Solidago canadensis is an invasive plant that is capable of adapting to variable light conditions. To elucidate the shade tolerance mechanism in S.?canadensis at the molecular level, transcriptome analyses were performed for leaves growing under natural light and three shade level conditions. Many differentially expressed genes (DEGs) were found in the comparative analysis, including those involved in photosynthesis, antioxidant, and secondary metabolism of phenol‐ and flavonoid‐related pathways. Most genes encoding proteins involved in photosynthesis, such as photosystem I reaction center subunit (Psa), photosystem II core complex protein (Psb), and light‐harvesting chlorophyll protein (Lhca and Lhcb), and reactive oxygen species (ROS) scavenging‐related enzymes, such as superoxide dismutase (SOD), peroxidase (POD), and catalase (CAT), were upregulated with the shade levels. Furthermore, most of the DEGs related to secondary metabolite synthesis were also upregulated in the shade conditions. Our study indicates that S. canadensis can respond to shade stress by modulating the expression of several photosynthesis‐related, free radical scavenging‐related, and secondary metabolism‐related genes; thus, this species has the ability to adapt to different light conditions.
机译:SolidaGo Canadensis是一种能够适应可变光条件的侵入性植物。为了在分子水平下阐明S.Canadensis中的阴影耐受机制,对在自然光下生长的叶片和三个阴影水平条件进行转录组分析。在比较分析中发现许多差异表达的基因(DEGS),包括参与光合作用,抗氧化剂和苯酚和类黄酮相关途径的次生代谢的那些。编码参与光合作用的蛋白质的大多数基因,例如光系统I反应中心亚基(PSA),光系统II核心复合蛋白(PSB)和光收获叶绿素蛋白(LHCA和LHCB)和活性氧(ROS)清除相关用遮阳水平上调酶,例如超氧化物歧化酶(SOD),过氧化物酶(POD)和过氧化氢酶(猫)。此外,在阴影条件下也上调了与次级代谢物合成相关的大多数次数。我们的研究表明,CANADensis可以通过调节多种与光合作用的自由基清除相关的和次生代谢相关基因的表达来响应阴影压力;因此,该物种具有适应不同光线条件的能力。

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