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Release of the extracellular matrix from conidia ofBlumeria graminis in relation to germination
Authors:Akane Meguro  Keiko Fujita  Hitoshi Kunoh  Timothy L W Carver  Ralph L Nicholson
Institution:(1) Faculty of Bioresources, Mie University, 514-8507 Tsu, Japan;(2) Iristitute of Grassland and Environmental Research, SY23 3EB Aberystwyth, UK;(3) Department of Botany and Plant Pathology, Purdue University, 47907 West Lafayette, IN, USA
Abstract:The release of extracellular matrix (ECM) and the emergence of germ tubes from conidia ofBlumeria graminis were studied by light microscopy and micromanipulation. More prompt and frequent ECM release was confirmed on an artificial hydrophobic substratum than on an artificial hydrophilic substratum. Conidia initially incubated on the hydrophilic substratum were transferred by micromanipulation to either the hydrophobic or the hydrophilic substrata. Immediately after transfer onto the hydrophobic substratum, 75% of conidia released ECM, whereas only 16% did so upon transfer to the hydrophilic substratum. Conidia transferred onto the hydrophobic substratum produced a primary germ tube (PGT) more promptly and frequently than those transferred to the hydrophilic substratum. Thus, conidia recognize and respond to substratum hydrophobicity perhaps immediately after contact. When inoculated onto either isolated barley cuticle or the hydrophobic artificial substratum, 2/3 of the conidia produced a PGT from their polar regions. By contrast, on the hydrophilic substratum 2/3 of conidia did so from the side region. These results show that substratum hydrophobicity affects the location of PGT emergence from conidia. Furthermore, the study indicates that very rapid recognition of surface hydrophobicity by conidia promotes ECM release and this in turn may influence the location of PGT emergence.
Keywords:Blumeria graminis            conidia contact  extracellular matrix  germination
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