1. INTRODUCTION The purpose of this paper is to provide an overview of the Late Carboniferous floras of Slovenia which is poorly known to potential readers as information is mainly documented in local reports. The flora is generally much poorer, but com- parable to those from the west and central European coal- fields, yet it is indisputably of significant importance for pa- laeogeographic considerations and stratigraphic correlations. The post-Variscan Carboniferous and Permian strata with fossil megafloras in Slovenia crop out in the geotectonic units of the Southern Alps and External Dinarides (Figs. 1, 2). In central Slovenia, Upper Palaeozoic rocks, particularly the clas- tic sedimentary deposits, provide a soft bed for the nappe structure of the External Dinarides (PLACER, 1999). Owing to the complicated tectonic structure, a lack of marker hori- zons and scarce fossil remains, the thick monotonous clastic sedimentary sequence underlying the Val Gardena Formation was assigned both Carboniferous and Permian ages. In central Slovenia, these strata are represented in the Sava Folds (WIN- KLER, 1923) that are composed mainly of quartz conglomer- ate, sandstone, siltstone and shaly claystone. Occurrences of Palaeozoic flora of the Sava Folds were previously reported in the nineteenth century and in the first half of the twentieth century by MORLOT (1850), HAUER (1851), LIPOLD (1857, 1858), KOSSMAT (1913), TORN- QUIST (1929) and RAKOVEC (1932). Later studies on the megaflora of the Sava Folds were published by KOLAR- JURKOVŠEK & JURKOVŠEK (1985, 1986, 1990, 2002a, 2002b, 2007). Sections of the Late Carboniferous in the Southern Ka- ravanke Mountains are commonly exposed in narrow belts or scattered outcrops as a result of strong Alpine tectonics (BUSER, 1980; JURKOVŠEK, 1987). The composite Car- boniferous and Permian lithostratigraphical column can be well correlated with the standard zonation in the Carnic Alps that is formed of the Pontebba Supergroup, (Auernig Forma- tion, Rattendorf Group and Trogkofel Group) (NOVAK, 2007). A Late Carboniferous megaflora from the Southern Karavanke Mountains was reported by MORLOT (1850), STUR (1886) and RAMOVŠ (1978). 2. MATERIAL The Geological Survey of Austria in Vienna hosts the oldest but very small collection of plant fossils that was obtained by various field geologists during the Austrian-Hungarian Monarchy and determined by ETTINGHSAUSEN. More- over, some other specimens are scattered in the collections of the Faculty of Natural Sciences and Engineering of the University of Ljubljana and the Slovenian Natural History Museum in Ljubljana. Ab sTRA CT This paper provides a short review of the Late Carboniferous floras in Slovenia. The Namurian-Westphalian or West- phalian A (Langsettian) flora was collected in the Sava Folds, whereas the late Westphalian and/or Stephanian flora was documented in the Southern Karavanke Mts. The recovered assemblages are well represented by horsetails, ar- borescent lycopsids, fern-like foliage (ferns and pteridosperms) as well as gymnosperms, and they correspond to the general features of the Euramerican flora. Keywords: megaflora, Late Carboniferous, Slovenia Geologia CroaticaGeologia Croatica Late Carboniferous floras of Slovenia – a review  Tea Kolar-Jurkovšek and Bogdan Jurkovšek Geological Survey of Slovenia, Dimičeva ulica 14, SI-1000 Ljubljana, Slovenia; (tea.kolar@geo-zs.si, bogdan.jurkovsek@geo-zs.si) doi: 104154/gc.2012.21 Geologia Croatica 65/3 323–328 9 Figs. 1 Tab. Zagreb 2012 Geologia Croatica 65/3Geologia Croatica 324 A significant flora from the Javorniki area containing about a hundred specimens is housed at the Gornjesavski muzej in Jesenice. This was collected by Jože BEDIČ and it still needs a detailed systematic description. The material collected and studied by the present authors consists of about one hundred specimens and it was derived from the Sava Folds. It is housed in the Jurkovšek Palaeon- tological Collection that has been registered with the Slov- enian Natural History Museum, as well as the Geological Survey of Slovenia, and it is partly exhibited at a permanent exhibition at Ljubljana Castle. 3 GEOLOGICAL sETTINGs AND PALEONTOLOGI- CAL REMARKs 3.1. sava Folds In the wider region of the Sava Folds, the Palaeozoic strata of the Trojane and Litija anticline form the basement of the shallow water (platform) carbonates of the External Dina- rides. The basic lithological members are quartz conglomer- ate, quartz sandstone, siltstone and mudstone. Based on all previous knowledge and his own detailed investigations, MLAKAR (1987, 1994) increased understanding of the Sava Folds geological structure, by proposing subdivision of the Palaeozoic sequence into three superpositional units of the first order (Ca, Cb and Cc), that could represent three forma- tions, or three members of the same formation (Fig. 3). The second superposition unit (Cb) was subdivided into four units. The Cb2 subunit has been dated on palaeontological data and attributed a Namurian – Westphalian A (Langset- tian) age (KOLAR-JURKOVŠEK & JURKOVŠEK, 1985, 1986, 1990, 2002a, 2002b, 2007). The megaflora was col- lected from numerous localities between Ljubljana and Polšnik near Litija (Figs. 4, 5) and it is well-represented by horsetails (Calamites), arborescent lycopsids (Lepidoden- dron, Sigillaria, Stigmaria), fern-like foliage (ferns and pte- ridosperms), and gymnosperms (Cordaites). The westernmost locality of the Sava Folds is at Ljub- ljana Castle Hill and the age of the recovered plant assem- blage here is based on the species Neuropteris tenuifolia Figure 1: Simplified geological map of Slovenia based on data of the Basic Geologic Map of SFRY 1:100000 compiled by BUSER for the Geologic map of the Republic of Slovenia 1:250 000 (BUSER, 2010). A – Southern Alps, B – Sava Folds. Figure 2: Distribution of tectonic plates in the Late Carboniferous. Red dot indicates the palaeogeographic position of Slovenia on the world map (SCOTESE, 2002). Kolar-Jurkovšek and Jurkovšek: Late Carboniferous floras of Slovenia – a review Geologia Croatica 325 SCHLOTHEIM, N. cf. heterophylla BRONGNIART and Cordaites palmaeformis (GOEPPERT), as well as the pres- ence of certain mesocalamite-like forms (Calamites (Meso- calamites) roemeri GOEPPERT, C. (M.) cf. cistiiformis STUR) (Fig. 6). Therefore the strata with flora from this locality are attributed to the lower part of the Westphalian A (Langset- tian Substage) (KOLAR-JURKOVŠEK & JURKOVŠEK, 2007). 3.2. southern Karavanke Mts. Late Palaeozoic beds in the Southern Karavanke Mountains are commonly exposed in narrow bands or scattered out- crops as a result of a strong overprint by Alpine tectonics. However, the composite lithostratigraphic column displays a very similar succession compared to the Pontebba Super- group (Auernig Formation, Rattendorf Group and Trogkofel Group) in the Carnic Alps, which are a morphological and orographic continuation of the Southern Karavanke Moun- tains (KAHLER, 1985; SCHÖNLAUB, 1985; KRAINER, 1993; NOVAK & SKABERNE, 2009). The Pennsylvanian rocks of the western Karavanke Mountains were described as the Javornik beds based on fu- sulinid foraminifera (KOCHANSKY-DEVIDE & RAMOVŠ, 1966; RAMOVŠ & KOCHANSKY-DEVIDE, 1979). Later, NOVAK (2007) considered the Javornik beds to be an equiv- alent of the Auernig Beds, and he presented a new lithostrati- graphic subdivision with the Kasimovian (Protriticites) beds in their lowermost part (Fig. 7). In general the Auernig For- mation consists of conglomerates, sandstones and shales with lenses of limestones containing fusulinid and conodont faunas. Fossil megafloras were collected mostly in the Gzhe- lian strata of the Javornik beds in the area north of Jesenice, and the determined list includes Polymorphopteris polymorpha (BRONGNIART) and Annularia stellata (SCHLOTHEIM) (Fig. 8), as well as Lepidodendron cf. scutatum LESQUER- EUX and Sigillaria brardi BRONGNIART as reported by RAMOVŠ (1978). A small flora from the Planina locality below the Golica Mt. was studied but not illustrated by TAKŠIĆ (1947), and the following species were determined: Pecopteris aff. ar- borescens BROGNIART, Alethopteris serlii BRONGNI- Figure 3: Lithostratigraphic subdivision of the first tectono-sedimentary cycle in the Sava Folds (modified after MLAKAR et al., 1993). Figure 6: Fossil flora from Ljubljana Castle Hill: a – Calamites (Mesocalam- ites) roemeri GOEPPERT, b – Calamites (Mesocalamites) cf. cistiiformis STUR, c – Calamites sp., d – Cyperites bicarinatus LINDLEY & HUTTON, e – Neurop- teris tenuifolia SCHLOTHEIM. Photo Bogdan JURKOVŠEK. Figure 4: One of the richest localities of Carboniferous plant fossils in the Sava Folds at Zavrstnik near Litija. The fossiliferous bed is marked with the geologic hammer (KOLAR-JURKOVŠEK & JURKOVŠEK, 2002a). Photo Bogdan JURKOVŠEK. Figure 5: Plant fossils from Ljubljana environs (locality Bizovik). a – Pecop- teris sp., specimen height 5.5 cm; b – Lepidodendron cf. aculeatum STERN- BERG, specimen height 4 cm. Photo Bogdan JURKOVŠEK. Geologia Croatica 65/3Geologia Croatica 326 ART, Alethopteris grandini BRONGNIART, Neuropteris ovata HOFFMANN, Neuropteris sp., Sphenophyllum sp., Annularia stellata (SCHLOTHEIM) WOOD, Calamites rimosus ARTIS, Calamites sp. and Lepododendron rimosum STERNBERG. TAKŠIĆ (1947) compared this flora with the flora from certain locations in Austria and regarded it as be- ing of Asturian or Early Stephanian age (highest Westphal- ian D or Lower Stephanian), Table 1: Comparison of Pennsylvanian flora in the investigated localities of the Sava Folds based on the original determinations of the authors (af- ter KOLAR-JURKOVŠEK & JURKOVŠEK, 2007). Litija environs Bizovik Ljubljana Castle Hill Calamites (Mesocalamites) haueri STUR x Calamites (Mesocalamites) ramifer STUR x Calamites (Mesocalamites) cf. ramifer STUR x x Calamites (Mesocalamites) roemeri GOEPPERT x x x Calamites (Mesocalamites) cf. roemeri GOEPPERT x Calamites (Mesocalamites) cistiiformis STUR x Calamites (Mesocalamites) cf. cistiiformis STUR x x Calamites (Stylocalamites) suckowi BRONGNIART x x Calamites (Stylocalamites) cf. suckowi BRONGNIART x Calamites (Stylocalamites) cf. cisti BRONGNIART x Calamites (Stylocalamites) undulatus STERNBERG x x Calamites (Stylocalamites) cf. undulatus STERNBERG x x Calamites (Calamitina) sachsei STUR x Calamites (Calamitina) schuetzeiformis KIDSTON & JONGMANS x Calamites sp. x x x Equistetites cf. hemingwayi KIDSTON x Lepidodendron cf. aculeatum STERN- BERG x x Lepidodendron Iycopodioides STERN- BERG x Lepidodendron sp. x x x Lepidostrobus sp. x Asolanus comptotaenia WOOD x ? Asolanus sp. x Sigillaria boblayi BRONGNIART x Sigillaria cf. boblayi BRONGNIART x Sigillaria mamillaris BRONGNIART x Sigillaria elegans (STERNBERG) BRONGNIART x Sigillaria sp. (Syringodendron – Rhytido- lepis) x x x Sigillaria sp. x x Cyperites bicarinatus LINDLEY & HUTTON x Stigmaria ficoides (STERNBERG) BRONGNIART x x Stigmaria ficoides var. undulata GOEPPERT x Figure 8: Upper Carboniferous fossil plants Polymorphopteris polymorpha (BRONGNIART) and Annularia stellata (SCHLOTHEIM). Planina pod Golico, Karavanke Mts. Sample width 14 cm. Photo Jože BEDIČ. Figure 7: Stratigraphic column of Carboniferous strata in the South Kara- vanke Mountains (modified after NOVAK & SKABERNE, 2009). Kolar-Jurkovšek and Jurkovšek: Late Carboniferous floras of Slovenia – a review Geologia Croatica 327 4. CONCLUsIONs The Upper Palaeozoic deposits, exposed in a broad belt be- tween Ljubljana and Polšnik, have been the subject of de- tailed palaeontological, sedimentological, and structural studies for many years. They were the basis for various, and often conflicting interpretations of accurate age, depositional environment, and structure of the so-called Permo-Carbon- iferous beds of the Sava Folds. The recovered assemblages which were collected during recent decades in the second superposition member (Cb2) can be considered as represent- ing the hydrophile to hygrophile flora that populated wet habitats of the swamp area. A large proportion of pterido- sperms and the presence of cordaites suggest growth on somewhat elevated parts of the river bank, at the margin of the flood area, as indicated by the abundant presence of ar- ticulates. The age of the determined assemblages can be estimated based on the stratigraphic ranges of certain neuropterid spe- cies that range in the Westphalian, however some of them already appear in the Namurian. The presence of some mes- ocalamites-like forms in the locations close to Ljubljana in- Table 1: continued. Litija environs Bizovik Ljubljana Castle Hill Stigmaria cf. ficoides (Sternberg) BRONGNIART x Pecopteris (Senftenbergia) cf. plumosa (ARTIS) BRONGNIART x Pecopteris sp. x Eusphenopteris sp. x x ? Mariopteris sp. x Neuropteris tenuifolia SCHLOTHEIM x x Neuropteris cf. heterophylla BRONGNIART x Neuropteris sp. x x ? Neuropteris sp. x Linopteris neuropteroides (GUTBIER) ZEILLER x Linopteris sp. ali Reticulopteris sp. x Linopteris sp. x Trigonocarpus sp. x x x ? Carpolithus sp. x Noeggerathia sp. x Cordaites palmaeformis (GOEPPERT) x Cordaites principalis (GERMAR) x Cordaites cf. principalis (GERMAR) x Cordaites sp. x x x Cordaicladus sp. x Artisia approximata LINDLEY & HUTTON x ? Artisia sp. x dicate the lower part of the Westphalian (KOLAR- JURKOVŠEK & JURKOVŠEK, 2002a, 2007) (Tab. 1). The fossil flora of the Karavanke Mts. occurs in the Javornik beds and shows a great similarity with the flora of the Auernig Beds of the Pontebba Supergroup. A well pre- served megaflora was collected in some locations in the area north from Jesenice. However, most assemblages have not been part of a detailed study. The megaflora is abundantly represented in the Upper Carboniferous strata and the rec- ognized assemblages are similar to the late Westphalian and /or early Stephanian floras of the Carnian Alps. The recovered plant assemblages from the localities of the Sava Folds (Fig. 9) and Southern Karavanke Mountains are similar to the coeval fossil floras of neighbouring areas (FRITZ et al., 1990; RONCHI et al., 2012; SREMAC, 2012) and they correspond in their general features to the Eura- merican flora. 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