Takikawa Y, Senga Y, Nonomura T, Matsuda Y, Kakutani K, Toyoda H
Plant Center, Institute of Advanced Technology, Kinki University, Wakayama, Japan.
Laboratory of Plant Protection and Biotechnology, Department of Agricultural Science and Technology, Faculty of Agriculture, Kinki University, Nara, Japan.
Plant Biol (Stuttg). 2014 Jan;16(1):291-5. doi: 10.1111/plb.12089. Epub 2013 Aug 19.
In this study, we observed the germination behaviour of airborne conidia from powdery mildews that settle on thalloid surfaces. We inoculated thalli (flat, sheet-like leaf tissues) and gemmae (small, flat, sheet-like leaf tissues that propagate asexually via bud-like structures) of the common liverwort (Marchantia polymorpha) with conidia from tomato powdery mildew (Oidium neolycopersici; KTP-02) and red clover powdery mildew (Erysiphe trifoliorum; KRCP-4N) and examined their germination and subsequent appressorium formation under a high-fidelity digital microscope. Conidial bodies and germ tubes of the inoculated KRCP-4N conidia were destroyed on both the thalli and gemmae. The destruction of these fungal structures was observed only for KRCP-4N conidia inoculated onto M. polymorpha on both leaf surfaces. No differences in destruction of the KRCP-4N fungal structures between thalli and gemmae were observed. At 4 h post-inoculation, destruction of the germ tube tip was observed when it reached the gemmae leaf surface. At 6 h post-inoculation, the conidial bodies and germ tubes were destroyed. In contrast, KTP-02 conidia were not destroyed and formed normal, well-lobed appressoria on the surface of M. polymorpha gemmae.
在本研究中,我们观察了落在叶状体表面的白粉菌气传分生孢子的萌发行为。我们用来自番茄白粉菌(新番茄粉孢;KTP - 02)和红三叶草白粉菌(三叶草白粉菌;KRCP - 4N)的分生孢子接种了地钱(多形钱苔)的叶状体(扁平、片状的叶组织)和芽孢(通过芽状结构进行无性繁殖的小的、扁平、片状的叶组织),并在高保真数码显微镜下检查它们的萌发及随后附着胞的形成情况。接种的KRCP - 4N分生孢子的分生孢子体和芽管在叶状体和芽孢上均被破坏。仅在两面接种于多形钱苔上的KRCP - 4N分生孢子中观察到这些真菌结构的破坏。在叶状体和芽孢之间未观察到KRCP - 4N真菌结构破坏情况的差异。接种后4小时,当芽管尖端到达芽孢叶表面时,观察到芽管尖端被破坏。接种后6小时,分生孢子体和芽管被破坏。相比之下,KTP - 02分生孢子未被破坏,并在多形钱苔芽孢表面形成了正常的、有良好裂片的附着胞。