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首页> 外文期刊>Acta Physiologiae Plantarum >Isolation and structural analysis of the Bx6 and Bx7 genes controlling the biosynthesis of benzoxazinoids in rye (Secale cereale L.)
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Isolation and structural analysis of the Bx6 and Bx7 genes controlling the biosynthesis of benzoxazinoids in rye (Secale cereale L.)

机译:BX6和BX7基因的分离与结构分析控制黑麦(Secale Cereale L.)的Benzoxainoids生物合成

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摘要

Benzoxazinoids (BXs) are plant secondary metabolites, first discovered in the 1950s, which are synthesized in many monocotyledonous species from the Poaceae family and in several dicotyledonous plants. They constitute a significant element of the plant's defence mechanism against both biotic (pests and diseases) and abiotic (elevated salinity, heavy metals) stresses. The aim of this research was to gain more information on the genetic background of BXs biosynthesis in rye (Secale cereale L.) by isolating and sequencing the ScBx6(L318) and ScBx7(L318) genes encoding 2-oxoglutarate-dependent dioxygenase and 7-O-methyltransferase, respectively. Using the modified Amplicon Express method, BAC clones containing the ScBx6(L318) and ScBx7(L318) genes were isolated and sequenced. The similarity between the ScBx6(L318) and ZmBx6 genes were, correspondingly, 78% and 68% in the coding sequence (cds) and the amino acid sequence (AA). A lesser similarity was found between the ScBx7(L318) and ZmBx7 genes (72% and 45% at the cds and AA levels, respectively).
机译:Benzoxazinoids(BXS)是植物次生代谢物,首次在20世纪50年代发现,这些植物在来自POACEAE家族的许多单圈种物种中合成,并在几个双象状植物中合成。它们构成了该植物防御机制对抗生物(害虫和疾病)和非生物(盐度升高,重金属)应激的重要因素。该研究的目的是通过分离和测序编码2-氧缺乏依赖性二恶英酶和7-的SCBX6(L318)和SCBX7(L318)基因来获得关于BXS生物合成的BXS生物合成遗传背景的更多信息。分别为甲基转移酶。使用修饰的扩增子表达方法,分离含有SCBX6(L318)和SCBX7(L318)基因的BAC克隆并测序。 SCBX6(L318)和ZMBX6基因之间的相似性在编码序列(CDS)和氨基酸序列(AA)中相应地,78%和68%。在SCBX7(L318)和ZMBX7基因之间发现较少的相似性(分别在CDS和AA水平下72%和45%)。

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