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首页> 外文期刊>Planta: An International Journal of Plant Biology >One amino acid substitution in phytoene desaturase makes Chlorella zofingiensis resistant to norflurazon and enhances the biosynthesis of astaxanthin
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One amino acid substitution in phytoene desaturase makes Chlorella zofingiensis resistant to norflurazon and enhances the biosynthesis of astaxanthin

机译:八氢番茄红素去饱和酶中的一个氨基酸取代可使小叶绿藻对甲氟氟磺虫具有抗性并增强虾青素的生物合成

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摘要

A stable Chlorella zofingiensis mutant (E17) produced by chemical mutagen was characterized with respect to growth, astaxanthin biosynthesis, and phytoene desaturation. The mutant E17 could grow well and produce normal levels of colored carotenoids in the presence of 0.25 μM norflurazon, in which the growth of wild type (WT) cells was greatly limited due to inhibited carotenoid formation. Induced by high-light irradiation or glucose, E17 produced 44 or 36% more astaxanthin than WT when cultured in media without norflurazon. A point mutation (C-T) was revealed to occur in the PDS gene of E17, leading to an amino acid change (L516F) in its coding region. The mutated PDS exhibited 31-fold resistance to norflurazon when compared to WT as determined by an in vitro assay. Surprisingly, the mutated PDS exhibited higher efficiency in converting phytoene to ζ-carotene. No difference in PDS transcripts was found between E17 and WT cells cultured either in normal or induced conditions. In contrast, higher transcript levels of β-carotene ketolase and hydroxylase were found in the E17 cells. Taken together, we conclude that a point mutation in Chlorella PDS gene makes E17 resistant to norflurazon and synthesize higher amounts of carotenoids including astaxanthin.
机译:通过化学诱变产生的稳定的小绿藻小球藻突变体(E17)具有生长,虾青素生物合成和八氢番茄红素去饱和的特性。在0.25μMnorflurazon存在下,突变体E17可以生长良好并产生正常水平的有色类胡萝卜素,其中由于抑制类胡萝卜素的形成,野生型(WT)细胞的生长受到极大限制。在没有去氟氟龙的培养基中培养时,E17受到强光照射或葡萄糖的诱导,比WT产生的虾青素多出44%或36%。已发现在E17的PDS基因中发生了点突变(C-T),导致其编码区发生了氨基酸变化(L516F)。通过体外试验确定,与野生型相比,突变的PDS对氟氟龙显示出31倍的抗性。出人意料的是,突变的PDS在将八氢番茄红素转化为ζ-胡萝卜素方面表现出更高的效率。在正常或诱导条件下培养的E17细胞和WT细胞之间,PDS转录本均未发现差异。相反,在E17细胞中发现了更高水平的β-胡萝卜素酮醇酶和羟化酶的转录本。综上所述,我们得出的结论是,小球藻PDS基因中的点突变使E17对去甲氟柔松具有抗性,并合成了更高数量的类胡萝卜素,包括虾青素。

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