Fungalpedia – Note 1942, Polystigmataceae
Polystigmataceae Höhn.
Citation when using this data: Hyde KD et al. 2020 – Fungalpedia, Ascomycota.
Index Fungorum, Facesoffungi, MycoBank, GenBank.
Classification: Incertae sedis, Sordariomycetidae, Sordariomycetes, Pezizomycotina, Ascomycota, Fungi
Parasitic on deciduous living leaves and shoots of Rosaceae. Stromata typically developing in late spring and summer on living leaves, producing conidia in summer and autumn, and ascospores from fallen overwintered leaves the following spring, irregular, bright red or orange, surrounded apparently by healthy leaf tissue. Sexual morph: Ascostromata usually roughly circular and covering a large area of the leaf, significantly raising the adaxial surface of the leaf, reddishbrown to black, the ostioles occasionally conspicuous. Ascomata sphaerical, immersed, distinct walls, thin-walled. Paraphyses thinly dispersed, gradually tapering towards the apex, very thinwalled, strongly inflated between the septa. Asci 8-spored, unitunicate, clavate, long-pedicellate, thin-walled in every stage, the apex obtuse, with an apical ring. Ascospores biseriate, cylindrical to ellipsoidal or obovoid, occasionally slightly curved (fabiform), hyaline, aseptate, with or without gelatinous sheath. Asexual morph: Conidial stromata irregular, yellowish-brown in very young lesions, changing to orange to reddish-brown to black on maturity, occasionally causing small creases on the leaves but without apparent significant hypertrophic lesion, composed of an upper layer of epidermal cells filled with bright orange-brown material, a middle layer of hyaline fungal cells which are angular to vertically elongated, and the lower layer resembling the upper one. Conidiomata sphaerical, epigenous or hologenous, the ostiole unnoticeable and whose quantity corresponds to the number of conidiomata, papillate or apapillate. Conidiomatal wall poorly developed and not clearly distinguishable, composed of thin layer of small hyaline thick-walled textura angularis. Conidiogenous cells nearly cylindrical, narrowing towards the upper region, which appears somewhat irregular as a result of successive conidial scars, undergoing sympodial proliferation, spreading the entire conidiomatal wall inner surface, emerging as lateral or terminal branches from short and relatively undifferentiated conidiophores. Conidia hyaline, aseptate, apparently smooth-walled, widest nearly at the base which is lanceolate to fusiform and truncate, the upper part filiform, sigmoidally curved (adapted from Cannon 1996, Dayarathne et al. 2017).
Notes: Polystigmataceae was earlier considered a synonym of Phyllachoraceae and, consequently, all taxa belonging to Phyllachoraceae were accommodated in Polystigmataceae (Dennis 1968, Müller & von Arx 1973). Polystigmataceae was later raised to Polystigmatales (syn. Phyllachorales) and this order accommodated Phyllachoraceae as the sole family (Hawksworth et al. 1983, Mehrotra & Aneja 1990). This led to all Polystigma species then being placed in Phyllachoraceae (Hawksworth et al. 1983, Mehrotra & Aneja 1990). Phylogenetic analyses involving DNA sequence data for Polystigma amygdalinumis, however, showed that Polystigma grouped in the subclass Xylariomycetidae, where it diverged from the Xylariales around 90 Million years ago in the late Cretaceous (Habibi et al. 2015, Habibi & Banihashemi 2017). Therefore, it cannot be accommodated in Phyllachorales (Sordariomycetidae) (Habibi et al. 2015, Habibi & Banihashemi 2017). Phylogenetic analyses by Dayarathne et al. (2017) confirm that taxa of Polystigma are phylogenetically distant from the Phyllachorales, and belong to Xylariales. They have thus re-established Polystigmataceae in the subclass Xylariomycetidae (Dayarathne et al. 2017).
Type species: Polystigma DC.
References
Dennis RWG. 1968 – British Ascomycetes. J Cramer, Lehre, Germany, 455 pp.
Habibi A, Banihashemi Z. 2017 – Dating divergence of Polystigma and other Sordariomycetes. Mycologia Iranica 4, 29–37.
Mehrotra RS, Aneja KR. 1990 – An introduction to mycology. New Age International, India.
Entry by
Kevin David Hyde, Institute of Plant Health, Zhongkai University of Agriculture and Engineering, Haizhu District, Guangzhou 510225, P.R. China, Center of Excellence in Fungal Research, Mae Fah Luang University, Chiang Rai 57100, Thailand, Mushroom Research Foundation, 128 M.3 Ban Pa Deng T. Pa Pae, A. Mae Taeng, Chiang Mai 50150, Thailand, Department of Biology, Faculty of Science, Chiang Mai University, Chiang Mai 50200, Thailand, Key Laboratory for Plant Diversity and Biogeography of East Asia, Kunming Institute of Botany, Chinese Academy of Science, Kunming 650201, Yunnan, P.R. China, School of Science, Mae Fah Luang University, Chiang Rai 57100, Thailand, World Agroforestry Centre, East and Central Asia, Kunming 650201, Yunnan, P.R. China
Published online 6 March 2026