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首页> 外文期刊>Planta >Cloning and characterisation of a maize carotenoid cleavage dioxygenase (ZmCCD1) and its involvement in the biosynthesis of apocarotenoids with various roles in mutualistic and parasitic interactions
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Cloning and characterisation of a maize carotenoid cleavage dioxygenase (ZmCCD1) and its involvement in the biosynthesis of apocarotenoids with various roles in mutualistic and parasitic interactions

机译:玉米类胡萝卜素裂解双加氧酶(ZmCCD1)的克隆,鉴定及其在互生和寄生相互作用中具有多种作用的类胡萝卜素的生物合成中

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摘要

Colonisation of maize roots by arbuscular mycorrhizal (AM) fungi leads to the accumulation of apocarotenoids (cyclohexenone and mycorradicin derivatives). Other root apocarotenoids (strigolactones) are involved in signalling during early steps of the AM symbiosis but also in stimulation of germination of parasitic plant seeds. Both apocarotenoid classes are predicted to originate from cleavage of a carotenoid substrate by a carotenoid cleavage dioxygenase (CCD), but the precursors and cleavage enzymes are unknown. A Zea mays CCD (ZmCCD1) was cloned by RT-PCR and characterised by expression in carotenoid accumulating E. coli strains and analysis of cleavage products using GC–MS. ZmCCD1 efficiently cleaves carotenoids at the 9, 10 position and displays 78% amino acid identity to Arabidopsis thaliana CCD1 having similar properties. ZmCCD1 transcript levels were shown to be elevated upon root colonisation by AM fungi. Mycorrhization led to a decrease in seed germination of the parasitic plant Striga hermonthica as examined in a bioassay. ZmCCD1 is proposed to be involved in cyclohexenone and mycorradicin formation in mycorrhizal maize roots but not in strigolactone formation.
机译:丛枝菌根(AM)真菌在玉米根部定植会导致类胡萝卜素(环己烯酮和mycorradicin衍生物)的积累。其他根类阿片类胡萝卜素(类固醇内酯)也参与AM共生早期阶段的信号传导,但也刺激了寄生植物种子的萌发。两种类胡萝卜素类都预计源于类胡萝卜素裂解双加氧酶(CCD)对类胡萝卜素底物的裂解,但是前体和裂解酶尚不清楚。通过RT-PCR克隆了Zea mays CCD(ZmCCD1),其特征是在类胡萝卜素积聚的大肠杆菌菌株中表达,并使用GC-MS分析裂解产物。 ZmCCD1在9、10位有效切割类胡萝卜素,并与具有相似特性的拟南芥CCD1显示78%的氨基酸同一性。 ZmCCD1转录物水平显示在AM真菌根定殖后升高。通过生物测定法,菌根导致寄生植物Striga hermonthica的种子发芽减少。 ZmCCD1被提议参与菌根玉米根中的环己烯酮和mycorradicin的形成,但不参与stragolactone的形成。

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