INRA, UMR 1136 INRA - University Henri Poincaré, Interactions Arbres/Microorganismes, INRA-Nancy, 54280 Champenoux, France.
Fungal Genet Biol. 2012 Mar;49(3):199-209. doi: 10.1016/j.fgb.2012.01.002. Epub 2012 Jan 28.
Hydrophobins are morphogenetic, small secreted hydrophobic fungal proteins produced in response to changing development and environmental conditions. These proteins are important in the interaction between certain fungi and their hosts. In mutualistic ectomycorrhizal fungi several hydrophobins form a subclass of mycorrhizal-induced small secreted proteins that are likely to be critical in the formation of the symbiotic interface with host root cells. In this study, two genomes of the ectomycorrhizal basidiomycete Laccaria bicolor strains S238N-H82 (from North America) and 81306 (from Europe) were surveyed to construct a comprehensive genome-wide inventory of hydrophobins and to explore their characteristics and roles during host colonization. The S238N-H82 L. bicolor hydrophobin gene family is composed of 12 genes while the 81306 strain encodes nine hydrophobins, all corresponding to class I hydrophobins. The three extra hydrophobin genes encoded by the S238N-H82 genome likely arose via gene duplication and are bordered by transposon rich regions. Expression profiles of the hydrophobin genes of L. bicolor varied greatly depending on life stage (e.g. free living mycelium vs. root colonization) and on the host root environment. We conclude from this study that the complex diversity and range of expression profiles of the Laccaria hydrophobin multi-gene family have likely been a selective advantage for this mutualist in colonizing a wide range of host plants.
水蛋白是形态发生的、小的分泌性真菌疏水蛋白,在发育和环境条件变化时产生。这些蛋白质在某些真菌与其宿主之间的相互作用中很重要。在互惠共生的外生菌根真菌中,几种水蛋白形成了一类菌根诱导的小分泌蛋白,它们可能在与宿主根细胞形成共生界面中起关键作用。在这项研究中,对两个外生菌根担子菌层孔菌属菌株 S238N-H82(来自北美的)和 81306(来自欧洲的)的基因组进行了调查,以构建一个全面的水蛋白全基因组清单,并探讨它们在宿主定殖过程中的特征和作用。S238N-H82 层孔菌水蛋白基因家族由 12 个基因组成,而 81306 菌株编码 9 个水蛋白,均对应于 I 类水蛋白。S238N-H82 基因组编码的三个额外水蛋白基因可能是通过基因复制产生的,并且被转座子丰富的区域所包围。层孔菌水蛋白基因的表达谱因生活阶段(例如自由生活菌丝与根定殖)和宿主根环境而异而有很大差异。我们从这项研究中得出结论,复杂的多样性和广泛的表达谱,使 Laccaria 水蛋白多基因家族成为这种共生菌在广泛宿主植物中定殖的一个优势。