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一类新的环状寡肽家族,其来源于禾本科植物内生真菌Epichloë中一个植物诱导基因gigA的核糖体肽合成。

A novel family of cyclic oligopeptides derived from ribosomal peptide synthesis of an in planta-induced gene, gigA, in Epichloë endophytes of grasses.

作者信息

Johnson Richard D, Lane Geoffrey A, Koulman Albert, Cao Mingshu, Fraser Karl, Fleetwood Damien J, Voisey Christine R, Dyer Jolon M, Pratt Jennifer, Christensen Michael, Simpson Wayne R, Bryan Gregory T, Johnson Linda J

机构信息

AgResearch, Grasslands Research Centre, Tennent Drive, Private Bag 11008, Palmerston North, New Zealand.

AgResearch, Grasslands Research Centre, Tennent Drive, Private Bag 11008, Palmerston North, New Zealand.

出版信息

Fungal Genet Biol. 2015 Dec;85:14-24. doi: 10.1016/j.fgb.2015.10.005. Epub 2015 Oct 27.

DOI:10.1016/j.fgb.2015.10.005
PMID:26519220
Abstract

Fungal endophytes belonging to the genus Epichloë form associations with temperate grasses belonging to the sub-family Poöideae that range from mutualistic through to pathogenic. We previously identified a novel endophyte gene (designated gigA for grass induced gene) that is one of the most abundantly expressed fungal transcripts in endophyte-infected grasses and which is distributed and highly expressed in a wide range of Epichloë grass associations. Molecular and biochemical analyses indicate that gigA encodes a small secreted protein containing an imperfect 27 amino acid repeat that includes a kexin protease cleavage site. Kexin processing of GigA liberates within the plant multiple related products, named here as epichloëcyclins, which we have demonstrated by MS/MS to be cyclic peptidic in nature. Gene deletion of gigA leads to the elimination of all epichloëcyclins with no conspicuous phenotypic impact on the host grass, suggesting a possible bioactive role. This is a further example of a ribosomal peptide synthetic (RiPS) pathway operating within the Ascomycetes, and is the first description of such a pathway from a mutualistic symbiotic fungus from this Phylum.

摘要

属于Epichloë属的真菌内生菌与禾本科亚科的温带禾本科植物形成关联,这种关联范围从互利共生到致病。我们之前鉴定出一个新的内生菌基因(命名为gigA,即草诱导基因),它是内生菌感染的禾本科植物中表达量最高的真菌转录本之一,并且在广泛的Epichloë - 禾本科植物关联中分布且高表达。分子和生化分析表明,gigA编码一种小的分泌蛋白,含有一个不完美的27个氨基酸的重复序列,其中包括一个枯草杆菌蛋白酶切割位点。GigA经枯草杆菌蛋白酶加工后在植物体内释放出多种相关产物,在此命名为epichloëcyclins,我们通过串联质谱法证明其本质上是环肽。gigA基因缺失导致所有epichloëcyclins消失,对宿主禾本科植物没有明显的表型影响,这表明其可能具有生物活性作用。这是子囊菌内运行的核糖体肽合成(RiPS)途径的又一个例子,也是首次对来自该门的互利共生真菌的这种途径进行描述。

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A novel family of cyclic oligopeptides derived from ribosomal peptide synthesis of an in planta-induced gene, gigA, in Epichloë endophytes of grasses.一类新的环状寡肽家族,其来源于禾本科植物内生真菌Epichloë中一个植物诱导基因gigA的核糖体肽合成。
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