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A basic helix loop helix transcription factor, AaMYC2-Like positively regulates artemisinin biosynthesis in Artemisia annua L.

机译:一种基本的螺旋回路螺旋转录因子,类似于Artemisia Annua L中的Artemisinin生物合成的AAMYC2。

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Artemisinin based combination therapies are still an extensively used remedy for the cure of Malaria. Although artemisinin biosynthetic pathway has been fully worked out, only few information is available on its regulatory mechanism in plants. In the present study, a new member of MYC type basic helix loop helix transcription factor was isolated from Artemisia annua and named as, AaMYC2-Like. The deduced protein sequence of AaMYC2-Like confirmed the presence of conserved DNA binding, dimerization, nuclear localization and helix loop helix domains. The expression analysis of AaMYC2-Like in various tissues established the highest transcript levels in leaves and lowest in roots which were in accordance with the trichome density, the biofactories for artemisinin biosynthesis. Moreover AaMYC2-Like was induced in presence of methyl jasmonate (MeJA), abscisic acid 2,4-dichlorophenoxy acetic acid, methyl viologen, heat, cold etc. The maximum elicitation of AaMYC2-Like transcript levels in presence of MeJA as compared to other phytohormones confirmed AaMYC2-Like as jasmonic acid responsive MYC type transcription factor. Further AaMYC2-Like was found to be transcriptionally active protein and localized to the nucleus. The transient overexpression of AaMYC2-Like in Artemisia annua leaves increased transcript levels of three key enzymes involved in artemisinin biosynthetic pathway such as cytochrome P-450 dependent hydroxylase, double bond reductase and aldehyde dehydrogenase. Consequently artemisinin content was also dramatically elevated in transiently over expressing AaMYC2-Like transgenic plants, confirming prominent role of AaMYC2-Like in the regulation of key biosynthetic genes. Taken together these results strongly suggest that AaMYC2-Like is an important MYC homolog which plays prominent role in the regulation of artemisinin biosynthetic pathway.
机译:阿尔甘氨酸基组合疗法仍然是疟疾治愈的广泛使用的补救措施。虽然青蒿素生物合成途径已经完全制定,但在其植物的监管机制中只有很少的信息。在本研究中,从Artemisia Annua中分离出Myc型基本螺旋环螺旋转录因子的新成员,并命名为AAMYC2样。所推出的AAMYC2的蛋白质序列证实了保守的DNA结合,二聚,核定位和螺旋环螺旋域的存在。各种组织中AAMYC2样的表达分析在叶片中的最高转录物水平和最低的根部,其符合胎儿的毛状体密度,用于蒿属生物合成的生物暗症。此外,与甲基丙酸甲酯(MEJA),脱胶2,4-二氯苯氧基乙酸,甲基viologen,热,冷等诱导诱导αaAmyc2样。与其他相比,Meja的存在amayc2样转录水平的最大诱导植物肠酮证实了AAMYC2样为茉莉酸响应性Myc型转录因子。发现另外的AAMYC 2样是转录活性蛋白质并局限于细胞核。 AAMSIA Annua的AAMYC2样的瞬时过度表达留下了三种关键酶的转录水平,所述三种关键酶如细胞色素p-450依赖性羟化酶,双键还原酶和醛脱氢酶。因此,青蒿素含量在表达AAMYC2样转基因植物的情况下瞬时致致显着升高,证实AAMYC2样在关键生物合成基因的调节中的突出作用。这些结果表明AAMYC2样的是一种重要的Myc同性恋,在蒿属植物生物合成途径的调节中起着突出的作用。

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