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禾本科内生真菌黑麦草内生菌中用于吲哚二萜生物合成的一个复杂基因簇。

A complex gene cluster for indole-diterpene biosynthesis in the grass endophyte Neotyphodium lolii.

作者信息

Young Carolyn A, Felitti Silvina, Shields Katherine, Spangenberg German, Johnson Richard D, Bryan Gregory T, Saikia Sanjay, Scott Barry

机构信息

Centre for Functional Genomics, Institute of Molecular BioSciences, Massey University, Private Bag 11222, Palmerston North, New Zealand.

出版信息

Fungal Genet Biol. 2006 Oct;43(10):679-93. doi: 10.1016/j.fgb.2006.04.004. Epub 2006 Jun 12.

Abstract

Lolitrems are a structurally diverse group of indole-diterpene mycotoxins synthesized by Epichloë/Neotyphodium endophytes in association with Pooid grasses. Using suppression subtractive hybridization combined with chromosome walking, two clusters of genes for lolitrem biosynthesis were isolated from Neotyphodium lolii, a mutualistic endophyte of perennial ryegrass. The first cluster contains five genes, ltmP, ltmQ, ltmF, ltmC, and ltmB, four of which appear to be orthologues of functionally characterized genes from Penicillium paxilli. The second cluster contains two genes, ltmE and ltmJ, that appear to be unique to lolitrem biosynthesis. The two clusters are separated by a 16 kb AT-rich sequence that includes two imperfect direct repeats. A previously isolated ltm cluster composed of ltmG, ltmM, and ltmK, is linked to these two new clusters by 35 kb of AT-rich retrotransposon relic sequence. All 10 genes at this complex LTM locus were highly expressed in planta but expression was very low or undetectable in mycelia. ltmM and ltmC were shown to be functional orthologues of P. paxilli paxM and paxC, respectively. This work provides a genetic foundation for elucidating the metabolic grid responsible for the diversity of indole-diterpenes synthesized by N. lolii.

摘要

洛利特菌素是由Epichloë/Neotyphodium内生真菌与早熟禾属禾本科植物共生合成的一组结构多样的吲哚-二萜霉菌毒素。利用抑制性消减杂交结合染色体步移技术,从多年生黑麦草的互惠内生真菌——黑麦草内生菌中分离出两个洛利特菌素生物合成基因簇。第一个基因簇包含五个基因,即ltmP、ltmQ、ltmF、ltmC和ltmB,其中四个基因似乎是来自青霉的功能已明确的基因的直系同源基因。第二个基因簇包含两个基因,ltmE和ltmJ,它们似乎是洛利特菌素生物合成所特有的。这两个基因簇被一个16 kb富含AT的序列隔开,该序列包含两个不完全的直接重复序列。一个先前分离的由ltmG、ltmM和ltmK组成的ltm基因簇,通过35 kb富含AT的逆转座子遗迹序列与这两个新基因簇相连。在这个复杂的LTM基因座上的所有10个基因在植物中都高度表达,但在菌丝体中表达非常低或无法检测到。已证明ltmM和ltmC分别是青霉paxM和paxC的功能直系同源基因。这项工作为阐明负责黑麦草内生菌合成的吲哚-二萜多样性的代谢网络提供了遗传基础。

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