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Genome-Wide Analysis of the Biosynthesis and Deactivation of Gibberellin-Dioxygenases Gene Family in Camellia sinensis (L.) O. Kuntze

机译:茶树赤霉素双加氧酶基因家族的生物合成和失活的全基因组分析

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Gibberellins (GAs), a class of diterpenoid phytohormones, play a key role in regulating diverse processes throughout the life cycle of plants. Bioactive GA levels are rapidly regulated by Gibberellin-dioxygenases (GAox), which are involved in the biosynthesis and deactivation of gibberellin. In this manuscript, a comprehensive genome-wide analysis was carried out to find all GAox in Camellia sinensis . For the first time in a tea plant, 14 CsGAox genes, containing two domains, DIOX_N (PF14226) and 2OG-FeII_Oxy, were identified (PF03171). These genes all belong to 2-oxoglutarate-dependent dioxygenases (2-ODD), including four CsGA20ox (EC: 1.14.11.12), three CsGA3ox (EC: 1.14.11.15), and seven CsGA2ox (EC: 1.14.11.13). According to the phylogenetic classification as in Arabidopsis , the CsGAox genes spanned five subgroups. Each CsGAox shows tissue-specific expression patterns, although these vary greatly. Some candidate genes, which may play an important role in response to external abiotic stresses, have been identified with regards to patterns, such as CsGA20ox2 , CsGA3ox2 , CsGA3ox3 , CsGA2ox1 , CsGA2ox2 , and CsGA2ox4 . The bioactive GA levels may be closely related to the GA20ox , GA3ox and GA2ox genes. In addition, the candidate genes could be used as marker genes for abiotic stress resistance breeding in tea plants.
机译:赤霉素(GAs)是一类双萜类植物激素,在调节植物整个生命周期的各种过程中起着关键作用。赤霉素双加氧酶(GAox)快速调节生物活性GA的水平,赤霉素双加氧酶参与赤霉素的生物合成和失活。在此手稿中,进行了全面的全基因组分析,以发现山茶中的所有GAox。在茶树中,首次鉴定出14个CsGAox基因,其中包含两个域DIOX_N(PF14226)和2OG-FeII_Oxy(PF03171)。这些基因均属于2-氧戊二酸依赖性双加氧酶(2-ODD),包括四个CsGA20ox(EC:1.14.11.12),三个CsGA3ox(EC:1.14.11.15)和七个CsGA2ox(EC:1.14.11.13)。根据在拟南芥中的系统发育分类,CsGAox基因跨越五个亚组。每个CsGAox均显示组织特异性表达模式,尽管这些表达模式差异很大。关于模式,已经确定了一些候选基因,这些基因可能在响应外部非生物胁迫方面起重要作用,例如CsGA20ox2,CsGA3ox2,CsGA3ox3,CsGA2ox1,CsGA2ox2和CsGA2ox4。 GA的生物活性可能与GA20ox,GA3ox和GA2ox基因密切相关。此外,候选基因可以用作茶树非生物胁迫抗性育种的标记基因。

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