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The R2R3-MYB transcription factor HAG1/MYB28 is a regulator of methionine-derived glucosinolate biosynthesis in Arabidopsis thaliana

机译:R2R3-mYB转录因子HaG1 / mYB28是拟南芥中蛋氨酸衍生的硫代葡萄糖苷生物合成的调节因子

摘要

Methionine-derived glucosinolates belong to a class of plant secondary metabolites that serve as chemoprotective compounds in plant biotic defense reactions and also exhibit strong anticancerogenic properties beneficial to human health. In a screen for the trans-activation potential of various transcription factors toward glucosinolate biosynthetic genes, we could identify the HAG1 (HIGH ALIPHATIC GLUCOSINOLATE 1, also referred to as MYB28) gene as a positive regulator of aliphatic methionine-derived glucosinolates. The content of aliphatic glucosinolates as well as transcript levels of aliphatic glucosinolate biosynthetic genes were elevated in gain-of-function mutants and decreased in HAG1 RNAi knock-down mutants. ProHAG1:GUS expression analysis revealed strong HAG1 promoter activity in generative organs and mature leaves of A. thaliana plants, the main sites of accumulation of aliphatic glucosinolates. Mechanical stimuli such as touch or wounding transiently induced HAG1/MYB28 expression in inflorescences of flowering plants, and HAG1/MYB28 over-expression reduced insect performance as revealed by weight gain assays with the generalist lepidopteran herbivore Spodoptera exigua. Expression of HAG1/MYB28 was significantly induced by glucose, indicating a novel transcriptional regulatory mechanism for the integration of carbohydrate availability upon biotic challenge. We hypothesize that HAG1/MYB28 is a novel regulator of aliphatic glucosinolate biosynthesis that controls the response to biotic challenges.
机译:蛋氨酸衍生的芥子油苷属于一类植物次生代谢产物,在植物的生物防御反应中用作化学保护性化合物,并且还展现出有益于人体健康的强大抗癌特性。在筛选各种转录因子对芥子油苷生物合成基因的反式激活潜能的过程中,我们可以鉴定出HAG1(高脂葡糖苷1,也称为MYB28)基因是脂肪族蛋氨酸衍生的芥子油苷的正调节剂。在获得功能的突变体中,脂肪族芥子油苷的含量以及脂肪族芥子油苷生物合成基因的转录水平升高,而在HAG1 RNAi敲低突变体中降低。 ProHAG1:GUS表达分析表明,拟南芥植物的生殖器官和成熟叶片中HAG1启动子活性很强,这是脂肪族芥子油苷积累的主要部位。机械刺激(例如触摸或受伤)会在开花植物的花序中短暂诱导HAG1 / MYB28的表达,而HAG1 / MYB28的过表达降低了昆虫的表现,这是通过用普通鳞翅目草食性食虫夜蛾(Spodoptera exigua)进行的增重测定揭示的。葡萄糖显着诱导了HAG1 / MYB28的表达,表明在生物激发后整合了碳水化合物可利用性的新型转录调控机制。我们假设HAG1 / MYB28是脂肪族芥子油苷生物合成的新型调节剂,可控制对生物挑战的反应。

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