首页> 美国卫生研究院文献>The Plant Cell >Alkylresorcinol Synthases Expressed in Sorghum bicolor Root Hairs Play an Essential Role in the Biosynthesis of the Allelopathic Benzoquinone Sorgoleone
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Alkylresorcinol Synthases Expressed in Sorghum bicolor Root Hairs Play an Essential Role in the Biosynthesis of the Allelopathic Benzoquinone Sorgoleone

机译:高粱双色根毛中表达的烷基间苯二酚合酶在化感苯并醌高粱油酮的生物合成中起重要作用

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摘要

Sorghum bicolor is considered to be an allelopathic crop species, producing phytotoxins such as the lipid benzoquinone sorgoleone, which likely accounts for many of the allelopathic properties of Sorghum spp. Current evidence suggests that sorgoleone biosynthesis occurs exclusively in root hair cells and involves the production of an alkylresorcinolic intermediate (5-[(Z,Z)-8′,11′,14′-pentadecatrienyl]resorcinol) derived from an unusual 16:3Δ9,12,15 fatty acyl-CoA starter unit. This led to the suggestion of the involvement of one or more alkylresorcinol synthases (ARSs), type III polyketide synthases (PKSs) that produce 5-alkylresorcinols using medium to long-chain fatty acyl-CoA starter units via iterative condensations with malonyl-CoA. In an effort to characterize the enzymes responsible for the biosynthesis of the pentadecyl resorcinol intermediate, a previously described expressed sequence tag database prepared from isolated S. bicolor (genotype BTx623) root hairs was first mined for all PKS-like sequences. Quantitative real-time RT-PCR analyses revealed that three of these sequences were preferentially expressed in root hairs, two of which (designated ARS1 and ARS2) were found to encode ARS enzymes capable of accepting a variety of fatty acyl-CoA starter units in recombinant enzyme studies. Furthermore, RNA interference experiments directed against ARS1 and ARS2 resulted in the generation of multiple independent transformant events exhibiting dramatically reduced sorgoleone levels. Thus, both ARS1 and ARS2 are likely to participate in the biosynthesis of sorgoleone in planta. The sequences of ARS1 and ARS2 were also used to identify several rice (Oryza sativa) genes encoding ARSs, which are likely involved in the production of defense-related alkylresorcinols.
机译:双色高粱被认为是一种化感作物,产生植物毒素,例如脂质苯醌高粱酮,这可能解释了高粱属植物的许多化感特性。目前的证据表明,高粱油酮生物合成仅发生在根毛细胞中,并且涉及从异常的16:3Δ衍生的烷基间苯二酚中间体(5-[(Z,Z)-8',11',14'-十五碳三烯基]间苯二酚)的产生 9,12,15 脂肪酰基辅酶A起始单元。这提示了一种或多种烷基间苯二酚合酶(ARS),III型聚酮化合物合酶(PKS)的参与,该酶使用中至长链脂肪酰基-CoA起始单元通过丙二酰-CoA的迭代缩合反应生成5-烷基间苯二酚。为了表征负责十五烷基间苯二酚中间体的生物合成的酶,首先针对所有PKS样序列挖掘了从分离的双色链霉(基因型BTx623)根毛制备的先前描述的表达序列标签数据库。实时定量RT-PCR分析表明,这些序列中的三个优先在根毛中表达,其中两个(称为ARS1和ARS2)编码能够在重组中接受各种脂肪酰基辅酶A起始单元的ARS酶。酶研究。此外,针对ARS1和ARS2的RNA干扰实验导致产生了多个独立的转化子事件,这些事件表现出高降低的高粱油酮水平。因此,ARS1和ARS2都可能参与植物中高粱油酮的生物合成。 ARS1和ARS2的序列还用于鉴定几种编码ARS的水​​稻基因,这些基因可能与防御相关的烷基间苯二酚的生产有关。

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