Received for publication: November 15, 2014; Accepted: December 21, 2014.

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Original Research Article Annals of Plant Sciences ISSN: 2287-688X OPEN ACCESS www.annalsofplantsciences.com Fresh Water Fungi from Pachmarhi (Madhya Pradesh) Suhas A Chaudhari 1* and Patil VR 2 1 Dr.Annasaheb G.D.Bendale Mahila Mahavidiyalya, Jalgaon-425501, Maharashtra State, India 2 S.V.S. Naik Arts, Comm. & Sci. College, Raver-425508, Maharashtra State, India Received for publication: November 15, 2014; Accepted: December 21, 2014. Abstract: The present paper deals with four species of fungi encountered on submerged woody debris in freshwater habitats. Among them Trinacrium subtile Riess Varicosporium elodeae W. Kegel. Canalisporium pallidum Goh et al., and Delortia palmicola Pat. are new records for the fungi of India Chen et al., Sporoschisma saccadoi Mason and Hughes, and Sporoschisma uniseptatum Bhat and Kendrick are being recorded for the first time from Maharashtra state. The data provides information on the distribution of these fungi in India, apart from their description and illustrations. Key words: Freshwater, Hyphomycetes, submerged wood Introduction The Submerged freshwater Hyphomycetes is one of the ecological groups of freshwater mitosporic fungi, first addressed by Ingold (1975), represent a heterogeneous assemblage of fungi growing on submerged decaying plant materials. These fungi can be classified into two main types based on Park (1972), namely indwellers and immigrants. Species in several genera of freshwater mitosporic fungi like Aquaphila, Camposporidium, Canalisporium etc., can be classified as indwellers because they have been reported only from freshwater habitats. Whereas, species that belong to genera such as Delortia, Dictyosporium, Sporochisma, etc. can be classified as immigrants because they are reported from terrestrial as well as freshwater habitats. Goh and Tsui (2003) provide a key to some common genera of freshwater dematiaceous mitosporic fungi that have been reported from worldwide. Recent biodiversity studies have revealed a number of undiscovered Submergewd freshwater Hyphomycetes from different parts of the world (Su et al., 2011; Yang et al., 2012; Liu and Cai, 2013). The present paper deals with six species of fungi encountered on submerged woody debris in freshwater habitats. Among them Canalisporium pallidum Goh et al., and Delortia palmicola Pat. are being recorded for the first time from India. Sporoschisma saccadoi Mason and Hughes, and Sporoschisma uniseptatum Bhat and Kendrick are new addition to the fungi of Maharashtra state which are described and illustrated in the present paper. *Corresponding Author: Suhas A Chaudhari Dr. Annasaheb G.D. Bendale Mahila Mahavidiyalya, Jalgaon-425501, Maharashtra State, India. Materials and Methods Samples of submerged woody debris were collected randomly during 2013-14 from different lentic and lotic habitats from Pachmarhi region. The samples were placed in plastic bags. On returning to the laboratory, samples were incubated in plastic boxes and kept moist by spraying with distilled water and periodically examined for presence of fungal growth. Permanent voucher slides of fungi were prepared according to the method double cover glass provided by Volkmann-Kohlmeyer and Kohlmeyer (1996). Identifications of isolated fungi were confirmed with the help of Nawawi & Kuthubudeen (1989), Goh et al., (1998), Goh and Hyde (1997), Chan et al., (1991), Goh et al., (1997), and Bhat and Kendrick (1993). Reports of fungi studied were confirmed with the help of Bilgrami et al., (1991), Jamaluddin et al., (2004) and relevant literature. Systematic account: 1) Varicosporium elodeae W. Kegel Ber. Dtsch. Bot. Ges., 24: 213 (1906). Conidia: consisting of a main axis 60-100µm long, 3µm wide, with one to three laterals of the same width developed on one side only of the main axis. Each of these laterals may branch again usually in the same one-sided manner. The degree of branching of the conidia varies considerably. At the point of origin of each branch of the conidium, is a narrow constriction or isthmus. The conidia may fragment to some extent by a part of the conidium breaking off at an isthmus. Habitat: Conidia in foam samples; On submerged wood; Apsara vihar (Pachmarhi, M.P.); 11 Nov., 2014; Leg., Page 921

Distribution in India: Assam: On submerged leaves (Bhattacharya and Baruh, 1953); Karnataka: Conidia in foam samples (Sridhar and Kaverippa, 1984); Andhra Pradesh: Conidia in water samples (Manoharachary and Galiah, 1987); Madhypardesh: Conidia in foam samples (Present studies). 2) Trinacrium subtile Riess Beitrage zur mykologie, Haft. 2: (1852). Conidia: Y-shaped, hyaline, main axis 30-47µm long, 3-4µm thick, 2-4-septate; two divergent arms, 1-5-septate, 20-45µm long. Ando (1992) noted that T. subtile has an affinity for aquatic environment. Habitat: Conidia in foam samples; On submerged wood; Denva river (Pachmarhi, M.P.); 11 Nov., 2014; Leg., S.A. Chaudhari bracket leaves of fern Drynaria quercifolia (Sridhar et al., 2006); Madhypardesh: Conidia in foam samples (Present studies). 3) Canalisporium pallidum Goh, Ho & Hyde Can. J. Bot., 76: 148 (1998). Sporodochia: scattered, punctiform, granular, dark grey, up to 200µm diam. Mycelium: mostly immersed in the substratum, composed of branched, septate, subhyline, 1.5-2.5µm wide, smooth hyphae. Conidiophores: macronematous or semimacronematous, mononematous, fasciculate, simple or sparsely branched, smooth, hyaline or subhyaline, up to 25µm long x 2-3µm wide. Conidiogenous cells: integrated, terminal, determinate, cylindrical and slightly vescculate. Conidial secession: schizolytic. Conidia: 25-39µm long x 16-20µm wide x 8-10µm thick, acrogenous, solitary, one-cell thick and flattened, smooth, more or less ellipsoidal or obovoid in surface view, slightly curved, cylindrical or broadly clavate in lateral view, pale olivaceous or very pale olivaceous brown, muriform, mostly with a slightly curved column of vertical septa and 4-5 rows of transverse septa, occasionally one or two of the central rows of cells may have additional 1-2 vertical septa, septa unpigmented, thin and canals visible, basal cell cuneiform, 2.5-3.5µm wide, thin-walled. Canals are also present in the transverse septa, only those on the concave side of the conidium, those on the convex side are not perforated. Habitat: On submerged wood; Denva river Distribution in India: Madhya Pardesh: Present work Remarks: The present fungus is rare in Canalisporium pallidum Goh, Ho & Hyde (1998). Therefore, it is assigned to that species. It is an addition to the fungi of M.P. 4) Delortia palmicola Pat. Bull. De la Soc. Mycol. De France, 4: 7-46 (1888). Conidiomata: sporodochial, tuberculiform, gelatinous and milky white when fresh, up to 1 cm diam. becoming much smaller, ambercoloured, hard and inconspicuous when dried, composed of hyaline, septate, branched hyphae embedded in a gelatinous matrix. Conidiophores: arise laterally as alternate or opposite branches of the vegetative hyphae near the surface of the sporodochium, multiseptate, hyaline thin-walled, determinate to indeterminate, 1.5-3µm wide, up to 100µm long, bearing terminal or lateral conidiogenous cells. Conidiogenous cells: intergrated, terminal or lateral, slightly inflated, clavate to ampulliform, 8-13 x 4-5µm, each producing a single conidium. Conidia: holoblastic, acrogenous, thin-walled, hyaline, surrounded by hyaline gelatinous sheath, (2-) 3 (-4) septate, 8-12µm wide, tightly coiled, U- or horseshoe-shaped, 15-22µm diam., the distal end rounded and the proximal end somewhat towards a wide flat, thin-walled, basal scar ca. 1.5µm diam. Habitat: On submerged wood; Apsara river Distribution in India: Maharashtra, M.P: On submerged wood Delortia palmicola Pat. as provided by Goh and Hyde (1997). Therefore, it is assigned to that species. It is being reported for the first time from M.P. 5) Sporoschisma saccadoi E.W. Mason & S. Hughes Mycolo. Pap., 31: 20 (1949). = Sphaeria hemipsila Berk. & Br., Fungi of Cylon, Thwaites, Nr. 1098 (1875). = Lasiosphaeria hemipsila (Berk. & Br.) Sacc., Syl. Fung., 2: 198 (1883). www.annalsofplantsciences.com Page 922

= Chaetosphaeria hemipsila (Berk. & Br.) Petch, Am. R. Bot. Gard., Peradenijia, 6: 336 (1917). = Chaetosphaeria coelestina Hohn., Akad. Der Wissens. In Wein, 118: 275-452 (1909). Colonies: effuse, velutinous, composed of mixed tufts of conidiophores and strile capitate hyphae. Mycelium: immersed, composed of pale to dark brown hyphae 2.5-4µm wide. Capitate setae: pale brown, becoming paler towards the apex, straight or slightly flexuous, 1-3-septate, 150-200µm long and 5-6.5µm wide below the terminal swelling which is 10-12µm wide and subhyaline, arising from a bulbous stroma 45-60µm diam. Conidiophores: solitary or rarely in groups of 2-3, also arising from stroma, often with one or two capitate hyphae, 250-270µm long, 9-13µm wide below and 17-21µm wide above, venter up to 22µm wide, dark brown, paler at the torn apex. Conidia: formed enteroblastically inside the tubular collarette of the conidiogenous cell and emerging in a false chain, doliiform, (-32) 42-48 x (10-) 12.5-15µm, 5-septate, often constricted at the septa, the four inner cells dark brown and the two end cells much paler, shorter and somewhat truncate, giving the appearance of constriction between successive conidia of a chain. Two central cells are 6.5-8µm long, penultimate cells 6.5-9µm long. Thus the four inner cells are of almost equal length, but penultimate once are often slightly longer than the two central ones. Habitat: On submerged wood; Denva river submerged wood (Sridhar et al., 2010). M.P Sporoschisma saccadoi Mason & Hughes as given by Goh et al., (1997). Therefore, it is assigned to that species. It is an addition to the fungi of M.P. state. 6) Sporoschisma uniseptatum Bhat & W.B. Kendrick Mycotaxon, 49: 71 (1993). Colonies: effuse, black, velvety. Capitate setae: arising from the same stromat, erect, flexuous, medium brown, smooth, up to 175µm tall, 8-10µm wide, up to 12.5µm wide at the flared apex, 3-6-septate, regenerating precurrently 2-3 times. Conidiophores: mononematous, differentiated, erect, straight or flexupos, 140-205µm tall, 10-12.5µm wide, 1-2-septate, unbrached, thick-walled, dark brown, arising from dark brown stromata up to 65µm acroos. Conidiogenous cells: phialids, up to 160µm long, terminal, integrated, thick-walled, dark brown, consisting of a slightly swollen ventre up to 22µm wide and a tubular collarette 70-80 x 12-16.5µm. Conidia: blasic-phialidic, cylindrical, truncate at both ends, 1-septate, very rarely 2-septate, thick-walled, verruculose, pale brown, 27-32 x 11-12.5µm, often in slimy false chains of 10-15 conidia. Habitat: On decaying twigs; Denva river submerged wood (Sudheep and Sridhar, 2011); M.P.: Present work Sporoschisma uniseptatum Bhat & Kendrick (1993). Therefore, it is assigned to that species. It is being recorded for the first time from M.P. Fig.1: Trinacrium subtile Riess Fig.2: Varicosporium elodeae W. Kegel. www.annalsofplantsciences.com Page 923

Acknowledgments Authors are thankful to the Principal of the G.D.Bendale Mahila Mahavidyalya, Jalgaon-425501, Principal of the S.V.S. Naik Arts, Comm. and Sci. College, Raver - 425508; for providing laboratory and library facilities. References 1. Bhat DJ & Kendrick B. (1993) Twenty-five new conidial fungi from the Western Ghats and the Andaman Islands (India). Mycotaxon, 49: 19-90. Fig. 3: Conidium of Canalisporium pallidum 2. Bilgrami KS, Jamaludeen S. & Rizwi MA. (1991) Fungi of India, Today and Tomorrow s Printers and Publishers, New Delhi, pp. 798. 3. Chen JL, Hwang CH & Tzean SS. (1991) Dictyosporium digitatum, a new Hyphomycete from Taiwan. Mycol. Res., 95: 1145-1149. 4. Goh TK & Hyde KD. (1997) Delortia palmicola and two new species from wood submerged in a freshwater streams in Australia. Mycol. Res. 101: 42-40. 5. Goh TK & Tsui, CKM. (2003). Key to common dematiaceous Hyphomycetes from freshwater. In: Freshwater Mycology (Eds. Tsui, C.K.M. & Hyde, K.D.), Fungal Diversity Press, Hong Kong, pp. 325-343. Fig. 4: Conidium of Delortia palmicola 6. Goh TK, Ho WH, Hyde KD & Umali TE. (1997) New records and species of Sporoschisma and Sporoschismopsis from submerged wood in the tropics. Mycol. Res., 101: 1295-1307. 7. Goh TK, Ho WH, Hyde KD, Whitton SR & Umali TE. (1998) New records and species of Canalisporium (Hyphomycetes), with a revision of the genus. Can. J. Bot., 76: 142-152. 8. Ingold CT. (1975) An illustrated guide to Aquatic and Water-borne Hyphomycetes (Fungi Imperfect) with notes on their Biology. Freshwater Biological Association Scientific Publications, No. 30, pp. 1-96. Fig. 5: Conidia of Sporoschisma saccadoi 9. Jamaludeen S, Goswami MG & Ojha BM. (2004) Fungi of India (1989-2001), Scientific Publishers (India), Jodhpur, pp. 308. 10. Liu F & Cai L. (2013). A novel species of Gliocladiopsis from freshwater habitat in China. Cryptogamie Mycologie, 34: 233-241. 11. Park D. (1972) On the ecology of heterotrophic Micro-organisms in freshwater. Trans. Br. Mycol. Soc., 58: 291-299. 12. Sridhar KR, Karamchand KS & Hyde KD. (2010) Wood-inhabiting filamentous fungi in high-altitude streams of the Western Ghats by damp incubation and bubble chamber incubation. Mycoscience, 51: 104-115. Fig. 6: Conidia of Sporoschisma uniseptatum 13. Su H, Hao Y, Liu S, Li Y, Cao Y, Chen M, Su X & Yang X. (2011). Dactylella qiluensis, a new species of aquatic hyphomycete from China. Cryptogamie Mycologie, 32: 177-183. www.annalsofplantsciences.com Page 924

14. Yang GZ, Lu, KP, Yang Y, Ma LB, Qiao M, Zhang KQ. & Yu ZF. (2012). Sympodioplanus yunnanensis, a new aquatic species from submerged decaying leaves. Mycotaxon, 120: 287-290. 15. Sudheep NM & Sridhar KR. (2011) Diversity of lignicolous and Ingoldian fungi on woody litter from the River Kali (Western Ghats, India). Mycology, 2: 98-108. 16. Volkmann-Kohlmeyer B & Kohlmeyer J. (1996). How to prepare truly permanent microscopic slides. Mycologist, 10: 107-108. 17. Yang GZ, Lu KP, Yang Y, Ma LB., Qiao M, Zhang, KQ & Yu ZF. (2012). Sympodioplanus yunnanensis, a new aquatic species from submerged decaying leaves. Mycotaxon, 120: 287-290. Source of support: Nil Conflict of interest: None Declared www.annalsofplantsciences.com Page 925