Image analysis of hyphal morphogenesis in Saprolegniaceae (Oomycetes)

被引:16
作者
Diéguez-Uribeondo, J
Gierz, G
Bartnicki-García, S
机构
[1] Univ Calif Riverside, Dept Plant Pathol, Riverside, CA 92521 USA
[2] Univ Calif Riverside, Dept Math, Riverside, CA 92521 USA
[3] Ctr Invest Cientificas & Estudios Super Ensenada, Ensenada 22830, Baja California, Mexico
[4] CSIC, Real Jardin Bot, Madrid 28014, Spain
关键词
conoid tips; growth; hyphae; hyphal diameter; hyphoid model; morphogenesis; morphology; oomycetes; VSC;
D O I
10.1016/j.fgb.2003.10.012
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Because of their wide range of apical morphology, several members of saprolegniaceous fungi (Oomycetes) were chosen to examine concordance with the vesicle supply center (VSC) model of hyphal morphogenesis. Two computer routines were devised to measure diameter changes over long stretches of hyphae and to test compatibility with the theoretical hyphoid shape, y = xcot(xV/N). In all four genera examined, the apex followed closely the contour described by the hyphoid equation; divergences became evident in the subapex. The hyphae of Saprolegnia parasitica showed maximum concordance with the VSC model, i.e., their profile matched a hyphoid curve from the apex to the entire length of the mature hyphal tube. In Aphanomyces and Leptolegnia, growth in the subapical region subsided becoming less than that specified by the hyphoid equation. In Achlya bisexualis, the reverse was true, the subapical region expanded beyond that specified by the hyphoid equation. The two divergent subapical tendencies gave the hyphal tips a cylindroid or conoid appearance, respectively. Since the hyphal apex of all four species conformed to the curvature dictated by the hyphoid equation, we concluded that a basic VSC mechanism operates in all of these oomycetous fungi. Accordingly, we suggest that the shape of an oomycetous hypha is generated by a VSC-driven gradient of wall formation, which is subject to additional modification in the subapex to produce a range of hyphal tip morphologies. The mathematical basis for generating a conoid hyphal tip by elongating the VSC is described in Appendix A. (C) 2003 Elsevier Inc. All rights reserved.
引用
收藏
页码:293 / 307
页数:15
相关论文
共 30 条
[1]  
[Anonymous], MICROBIAL DIFFERENTI
[2]  
BARTNICKI DD, 1994, 5 INT MYC C VANC CAN
[3]   Mapping the growth of fungal hyphae:: Orthogonal cell wall expansion during tip growth and the role of turgor [J].
Bartnicki-Garcia, S ;
Bracker, CE ;
Gierz, G ;
López-Franco, R ;
Lu, HS .
BIOPHYSICAL JOURNAL, 2000, 79 (05) :2382-2390
[4]  
Bartnicki-García S, 2002, MYCOLOGY S, V15, P29
[5]  
Bartnicki-Garcia Salomon, 1996, P105
[6]   DETERMINANTS OF FUNGAL CELL-WALL MORPHOLOGY - THE VESICLE SUPPLY CENTER [J].
BARTNICKIGARCIA, S ;
BARTNICKI, DD ;
GIERZ, G .
CANADIAN JOURNAL OF BOTANY-REVUE CANADIENNE DE BOTANIQUE, 1995, 73 :S372-S378
[7]   EVIDENCE THAT SPITZENKORPER BEHAVIOR DETERMINES THE SHAPE OF A FUNGAL HYPHA - A TEST OF THE HYPHOID MODEL [J].
BARTNICKIGARCIA, S ;
BARTNICKI, DD ;
GIERZ, G ;
LOPEZFRANCO, R ;
BRACKER, CE .
EXPERIMENTAL MYCOLOGY, 1995, 19 (02) :153-159
[8]   COMPUTER-SIMULATION OF FUNGAL MORPHOGENESIS AND THE MATHEMATICAL BASIS FOR HYPHAL (TIP) GROWTH [J].
BARTNICKIGARCIA, S ;
HERGERT, F ;
GIERZ, G .
PROTOPLASMA, 1989, 153 (1-2) :46-57
[9]   POLARIZATION OF CELL-WALL SYNTHESIS DURING SPORE GERMINATION OF MUCOR-ROUXII [J].
BARTNICKIGARCIA, S ;
LIPPMAN, E .
EXPERIMENTAL MYCOLOGY, 1977, 1 (03) :230-240
[10]   FUNGAL MORPHOGENESIS - CELL WALL CONSTRUCTION IN MUCOR ROUXII [J].
BARTNICKIGARCIA, S ;
LIPPMAN, E .
SCIENCE, 1969, 165 (3890) :302-+