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Expression Profiling of Glucosinolate Biosynthetic Genes in Brassica oleracea L. var. capitata Inbred Lines Reveals Their Association with Glucosinolate Content

机译:甘蓝型油菜中芥子油苷生物合成基因的表达谱分析capitata自交系揭示了其与芥子油苷含量的关联

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摘要

Glucosinolates are the biochemical compounds that provide defense to plants against pathogens and herbivores. In this study, the relative expression level of 48 glucosinolate biosynthesis genes was explored in four morphologically-different cabbage inbred lines by qPCR analysis. The content of aliphatic and indolic glucosinolate molecules present in those cabbage lines was also estimated by HPLC analysis. The possible association between glucosinolate accumulation and related gene expression level was explored by principal component analysis (PCA). The genotype-dependent variation in the relative expression level of different aliphatic and indolic glucosinolate biosynthesis genes is the novel result of this study. A total of eight different types of glucosinolates, including five aliphatic and three indolic glucosinolates, was detected in four cabbage lines. Three inbred lines BN3383, BN4059 and BN4072 had no glucoraphanin, sinigrin and gluconapin detected, but the inbred line BN3273 had these three aliphatic glucosinolate compounds. PCA revealed that a higher expression level of ST5b genes and lower expression of GSL-OH was associated with the accumulation of these three aliphatic glucosinolate compounds. PCA further revealed that comparatively higher accumulation of neoglucobrassicin in the inbred line, BN4072, was associated with a high level of expression of MYB34 (Bol017062) and CYP81F1 genes. The Dof1 and IQD1 genes probably trans-activated the genes related to biosynthesis of glucoerucin and methoxyglucobrassicin for their comparatively higher accumulation in the BN4059 and BN4072 lines compared to the other two lines, BN3273 and BN3383. A comparatively higher progoitrin level in BN3273 was probably associated with the higher expression level of the GSL-OH gene. The cabbage inbred line BN3383 accounted for the significantly higher relative expression level for the 12 genes out of 48, but this line had comparatively lower total glucosinolates detected compared to the other three cabbage lines. The reason for the genotypic variation in gene expression and glucosinolate accumulation is a subject of further investigation.
机译:芥子油苷是可为植物防御病原体和食草动物的生化化合物。在这项研究中,通过qPCR分析了四个形态不同的甘蓝自交系中48个芥子油苷生物合成基因的相对表达水平。还通过HPLC分析估计了那些甘蓝系中存在的脂肪族和吲哚芥子油苷分子的含量。通过主成分分析(PCA)探索了芥子油苷积累与相关基因表达水平之间的可能联系。基因型依赖的不同脂肪族和吲哚芥子油苷生物合成基因的相对表达水平的变化是这项研究的新结果。在四个甘蓝系中共检测到八种不同类型的芥子油苷,包括五种脂肪族和三种吲哚芥子油苷。三个自交系BN3383,BN4059和BN4072没有检测到葡萄糖尿素,芥子苷和葡糖苷,但是自交系BN3273具有这三个脂肪族芥子油苷化合物。 PCA揭示ST5b基因的较高表达水平和GSL-OH的较低表达与这三种脂族芥子油苷化合物的积累有关。 PCA进一步揭示,在近交系BN4072中新葡聚糖的积累相对较高,与MYB34(Bol017062)和CYP81F1基因的高水平表达有关。 Dof1和IQD1基因很可能反式激活了与生物活性相关的基因,与其他两个BN3273和BN3383相比,它们在BN4059和BN4072中的蓄积相对较高。 BN3273中较高的progoitrin水平可能与GSL-OH基因的较高表达水平有关。甘蓝自交系BN3383占48个基因中12个基因的相对表达水平的显着较高,但与其他三个甘蓝系相比,该系检测到的总芥子油苷含量相对较低。基因表达和硫代芥子油苷积累的基因型变异的原因是进一步研究的主题。

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