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Altered Glucosinolate Profiles and Expression of Glucosinolate Biosynthesis Genes in Ringspot-Resistant and Susceptible Cabbage Lines

机译:耐环斑病和易感白菜株系中改变的硫代葡萄糖苷谱和硫代葡萄糖苷合成基因的表达

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Ringspot, caused by the fungus Mycosphaerella brassicicola , is a serious disease of Brassica crops worldwide. Despite noteworthy progress to reveal the role of glucosinolates in pathogen defense, the host–pathogen interaction between cabbage ( Brassica oleracea ) and M. brassicicola has not been fully explored. Here, we investigated the glucosinolate profiles and expression of glucosinolate biosynthesis genes in the ringspot-resistant (R) and susceptible (S) lines of cabbage after infection with M. brassicicola . The concomitant rise of aliphatic glucoiberverin (GIV) and indolic glucobrassicin (GBS) and methoxyglucobrassicin (MGBS) was linked with ringspot resistance in cabbage. Pearson’s correlation and principle component analysis showed a significant positive association between GIV contents and the expression of the glucosinolate biosynthesis gene ST5b-Bol026202 and between GBS contents and the expression of the glucosinolate biosynthesis gene MYB34-Bol017062 . Our results confirmed that M. brassicicola infection induces the expression of glucosinolate biosynthesis genes in cabbage, which alters the content of individual glucosinolates. This link between the expression of glucosinolate biosynthesis genes and the accumulation of their respective glucosinolates with the resistance to ringspot extends our molecular sense of glucosinolate-negotiated defense against M. brassicicola in cabbage.
机译:由真菌Mycosphaerella brasicicola引起的环斑病是全世界芸苔属作物的严重病害。尽管在揭示芥子油苷在病原体防御中的作用方面取得了显着进展,但尚未充分研究甘蓝(甘蓝)和芸苔分枝杆菌之间的宿主-病原体相互作用。在这里,我们调查了甘蓝型油菜(M. brasiciicicola)感染后,在甘蓝的环斑抗性(R)和易感性(S)系中,芥子油苷的概况和芥子油苷生物合成基因的表达。甘蓝中脂族葡萄糖铁蛋白(GIV)和吲哚葡糖苷(GBS)和甲氧基葡糖苷(MGBS)的同时升高与抗黑斑性有关。皮尔逊(Pearson)的相关性和主成分分析显示,GIV含量与芥子油苷生物合成基因ST5b-Bol026202的表达之间以及GBS含量与芥子油苷生物合成基因MYB34-Bol017062的表达之间呈显着正相关。我们的结果证实了芸苔分枝杆菌感染可诱导甘蓝中芥子油苷生物合成基因的表达,从而改变单个芥子油苷的含量。芥子油苷生物合成基因的表达与它们各自的芥子油苷的积累以及对环斑的抗性之间的这种联系扩展了我们的芥子油酸酯谈判抗白菜型油菜分枝杆菌防御的分子意义。

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