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Comparative Transcriptomic Analyses of Chlorogenic Acid Biosynthesis Pathways in Diploid and Triploid Camellia sinensis

机译:二倍体和三倍体山茶叶中绿原酸生物合成途径的比较转录组分析

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Chlorogenic acid (CGA), as a kind of depside in plants, has a variety of beneficial effects on human health, which also plays an important role in helping plants resist a variety of stresses. Therefore, the biosynthetic pathway of CGA has been studied in many plants, however, the synthesis of CGA has not been well elucidated in Camellia sinensis. In our research, different CGA levels were detected between triploid tea variety ?Qianfu 4? and diplont tea variety ?Qianmei 419? using HPLC and the CGA content in triploid Camellia sinensis was greater than that in diploid Camellia sinensis. Transcriptome sequencing for diploid and triploid Camellia sinensis was employed to explore genes associated with CGA biosynthesis. Finally, 154,097 unigenes were obtained in total, of which 891 may be related to the biosynthesis of CGA. Furthermore, differentially expressed genes (DEGs) were screened between diploid and triploid Camellia sinensis, 32 DEGs were discovered to be related to CGA biosynthesis, including sixteen phenylalanine ammonia lyase (PAL) genes, three 4-coumarate coenzyme A ligase (4CL) genes, nine cinnamate 4-Hydroxylase (C4H) genes, four Hydroxycinnamoyl-CoA shikimate/quinate hydroxycinnamoyl transferase (HQT/HCT), and two hundred and twenty-one TFs including eighty-eight ERFs, forty-one bZIPs, forty-two MYBs and fifty WRKYs, which may also play an important role in the biosynthesis of CGA. Our results will lay the foundation for further exploration of the biosynthesis of CGA and revealing the related regulatory network in Camellia sinensis.
机译:作为一种植物中的一种Depside的绿原酸(CGA)对人类健康有各种有益影响,这也在帮助植物抵抗各种压力方面发挥着重要作用。因此,在许多植物中已经研究了CGA的生物合成途径,然而,CGA的合成在山茶花中没有很好地阐明。在我们的研究中,三倍体茶叶品种之间检测到不同的CGA水平?Qianfu 4?和茶叶品种?千梅419?使用HPLC和三倍体山茶花中的CGA含量大于二倍体茶叶中的Sinensis。用于二倍体和三倍体山茶花的转录组测序,用于探讨与CGA生物合成相关的基因。最后,总共获得了154,097个unigenes,其中891个可能与CGA的生物合成有关。此外,差异表达基因(DEGS)在二倍体和三倍体山茶花之间进行筛查,发现32只待与CGA生物合成有关,其中包括十六个苯丙氨酸氨裂解酶(PAL)基因,三种4-香豆素辅酶A连接酶(4CL)基因,九肉桂酸酯4-羟化酶(C4h)基因,四种羟基氨基酰基 - COA Seakimate / Quinate羟基氨基酰基酰基转移酶(HQT / HCT),以及二百二十一TFS,包括八十八个ERF,四十一只Bz​​IPS,四十二个MYBS和五十Wrkys,也可能在CGA的生物合成中发挥重要作用。我们的结果将为进一步探索CGA生物合成以及揭示山茶花中的相关监管网络的基础。

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