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Comparative transcription analysis of photosensitive and non-photosensitive eggplants to identify genes involved in dark regulated anthocyanin synthesis

机译:光敏和非光敏茄子的比较转录分析,以鉴定暗管暗管型合成中涉及的基因

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Light is a key environmental factor in regulation of anthocyanin biosynthesis. Through a large number of bagging screenings, we obtained non-photosensitive eggplants that still have decent amount of anthocyanin synthesized after bagging. In the present study, transcriptome was made to explore the molecular mechanism of dark-regulated anthocyanin synthesis in non-photosensitive eggplant. The transcriptome of the pericarp at 0?h, 0.5?h, 4?h, and 8?h after bag removal were sequenced and analyzed. Comparison of the sequencing data with those of photosensitive eggplant for the same time period showed that anthocyanin synthesis genes had different expression trends. Based on the expression trends of the structural genes, it was discovered that 22 transcription factors and 4 light signal transduction elements may be involved in the anthocyanin synthesis in two types of eggplants. Through transcription factor target gene prediction and yeast one-hybrid assay, SmBIM1, SmAP2, SmHD, SmMYB94, SmMYB19, SmTT8, SmYABBY, SmTTG2, and SmMYC2 were identified to be directly or indirectly bound to the promoter of the structural gene SmCHS. These results indicate that the identified 9 genes participated in the anthocyanin synthesis in eggplant peel and formed a network of interactions among themselves. Based on the comparative transcription, the identified 22 transcription factors and 4 light signal transduction elements may act as the key factors in dark regulated anthocyanin synthesis in non-photosensitive eggplant. The results provided a step stone for further analysis of the molecular mechanism of dark-regulated anthocyanin synthesis in non-photosensitive eggplant.
机译:光是一种调节花青素生物合成的关键环境因素。通过大量的装袋筛选,我们获得了非光敏茄子,袋装后仍然具有体积的花青素。在本研究中,进行转录组以探讨非光敏茄子中深调节的花青素合成的分子机制。在测序并分析后,PERICARP的转录组在0≤H,0.5℃,0.5℃,4·H和8ΩH。与光敏茄子的相同时间段的测序数据的比较显示,花青素合成基因具有不同的表达趋势。基于结构基因的表达趋势,发现22种转录因子和4个光信号转导元件可以参与两种类型的茄子中的花青素合成。通过转录因子靶基因预测和酵母单杂交测定,SMBIM1,SMAP2,SMHD,SMMYB94,SMMYB19,SMTT8,SMYABBY,SMTTG2和SMMYC2直接或间接地与结构基因SMCH的启动子结合。这些结果表明,所鉴定的9基因参与了茄子剥离中的花青素合成,并形成了自身之间的相互作用网络。基于对比转录,所鉴定的22种转录因子和4个光信号转导元件可以作为非光敏茄子在黑暗调节的花青素合成中的关键因素。结果提供了一种阶梯石,用于进一步分析非光敏茄子在非光敏茄子中的黑暗调节的花青素合成的分子机制。

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