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Novel bioresources for studies of Brassica oleracea: identification of a kale MYB transcription factor responsible for glucosinolate production

机译:甘蓝型甘蔗的研究新的生物研究:鉴定葡萄糖苷生产的羽衣甘蓝MYB转录因子

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Plants belonging to the Brassicaceae family exhibit species-specific profiles of glucosinolates (GSLs), a class of defence compounds against pathogens and insects. GSLs also exhibit various human health–promoting properties. Among them, glucoraphanin (aliphatic 4-methylsulphinylbutyl GSL) has attracted the most attention because it hydrolyses to form a potent anticancer compound. Increased interest in developing commercial varieties of Brassicaceae crops with desirable GSL profiles has led to attempts to identify genes that are potentially valuable for controlling GSL biosynthesis. However, little attention has been focused on genes of kale (Brassica oleracea var. acephala). In this study, we established full-length kale cDNA libraries containing 59 904 clones, which were used to generate an expressed sequence tag (EST) data set with 119 204 entries. The EST data set clarified genes related to the GSL biosynthesis pathway in kale. We specifically focused on BoMYB29, a homolog of Arabidopsis MYB29/PMG2/HAG3, not only to characterize its function but also to demonstrate its usability as a biological resource. BoMYB29 overexpression in wild-type Arabidopsis enhanced the expression of aliphatic GSL biosynthetic genes and the accumulation of aliphatic GSLs. When expressed in the myb28myb29 mutant, which exhibited no detectable aliphatic GSLs, BoMYB29 restored the expression of biosynthetic genes and aliphatic GSL accumulation. Interestingly, the ratio of methylsulphinyl GSL content, including glucoraphanin, to that of methylthio GSLs was greatly increased, indicating the suitability of BoMYB29 as a regulator for increasing methylsulphinyl GSL content. Our results indicate that these biological resources can facilitate further identification of genes useful for modifications of GSL profiles and accumulation in kale.
机译:属于Brassicaceae家族的植物表现出葡萄糖苷(GSL)的物种特异性曲线,这类防御化合物对抗病原体和昆虫。 GSL还表现出各种人类健康促进性质。其中,葡萄葡萄花(脂族4-甲基磺酰丁基GSL)引起了最受关注的,因为它水解形成效率的抗癌化合物。增加具有所需GSL型材的铜绿痤疮作物的商业品种的兴趣导致试图识别可能对控制GSL生物合成的可能性有价值的基因。然而,很少关注羽衣甘蓝基因(芸苔属oleracea var。acephala)。在本研究中,我们建立了包含59 904个克隆的全长羽衣甘蓝cDNA文库,用于生成具有119个204条目的表达序列标签(EST)数据集。 EST数据集澄清与羽衣GSL生物合成途径相关的基因。我们专注于BOMYB29,Arabidopsis MyB29 / PMG2 / HAG3的同源物,不仅是其功能,而且还展示其作为生物资源的可用性。野生型拟南芥的BomyB29过表达增强了脂族GSL生物合成基因的表达和脂族GSL的积累。当在MyB28MyB29突变体中表达时,该突变体没有检测到的脂族GSL,BOMYB29恢复了生物合成基因和脂族GSL积累的表达。有趣的是,大大增加了甲基磺酰基GSL含量,包括葡糖苷酰胺与甲硫氨基苯脲的比例大大增加,表明BOMYB29作为用于增加甲基磺酰基GSL含量的调节剂的适用性。我们的结果表明,这些生物学资源可以促进可用于改性GSL谱的基因和羽衣甘蓝的积累。

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