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1

Lambkin, KJ. "Revision of the Australian scorpion-fly genus Harpobittacus (Mecoptera : Bittacidae)." Invertebrate Systematics 8, no. 4 (1994): 767. http://dx.doi.org/10.1071/it9940767.

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Harpobittacus Gerstaecker is the largest of the six genera of Australian Bittacidae. Adults occur in eastern, south-eastern and south-western Australian eucalypt woodland and coastal heathland during spring and summer and sometimes autumn. The genus contains 11 species, which are diagnosed in the present revision: H. australis (Klug) [= australis rubripes Riek, syn. nov., = corethrarius (Rambur), = intermedius (Selys-Longchamps)] (south-east Australia, including Tasmania); H. albatus Riek, stat. nov. (= limnaeus Smithers, syn. nov.) (coastal eastern Australia); H. christine, sp. nov. (inland s
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2

Harvey, A. S., Wm J. Woelkerling, and A. J. K. Millar. "The genus Lithophyllum (Lithophylloideae, Corallinaceae, Rhodophyta) in south-eastern Australia, with the description of L. riosmenae, sp. nov." Australian Systematic Botany 22, no. 4 (2009): 296. http://dx.doi.org/10.1071/sb08051.

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The genus Lithophyllum (Lithophylloideae, Corallinaceae, Rhodophyta) is represented by six species in south-eastern Australia L. chamberlainianum Woelkerling & Campbell, L. corallinae (Crouan & Crouan) Heydrich, L. cuneatum Keats, L. pustulatum (Lamouroux) Foslie, L. riosmenae, sp. nov., and L. stictaeforme (Areschoug in Agardh) Hauck. Four of these taxa are commonly found in Australia, whereas L. cuneatum was previously known only from Fiji and L. riosmenae is newly described. Morphological and anatomical accounts are provided, including keys, information on distribution, nomenclature
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3

Panetta, FD. "Isozyme Variation in Australian and South-African Populations of Emex australis Steinh." Australian Journal of Botany 38, no. 2 (1990): 161. http://dx.doi.org/10.1071/bt9900161.

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Isozyme variation was surveyed at 25 loci in 65 Australian (colonial) and 21 South African (native) populations of Emex australis. Only one polymorphism, restricted in distribution to the eastern States, was observed in Australia. Three additional polymorphisms were detected in South African populations, but most (16) South African populations were indistinguishable from the Australian ones. Thus, the relative uniformity of colonial populations of E. australis reflects the low level of isozyme variation in many populations within its native range.
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4

Casanova, Michelle T., and Kenneth G. Karol. "Monoecious Nitella species (Characeae, Charophyta) from south-eastern mainland Australia, including Nitella paludigena sp. nov." Australian Systematic Botany 21, no. 3 (2008): 201. http://dx.doi.org/10.1071/sb07026.

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Identification of Australian species of Nitella is problematic. Several species of monoecious Nitella have been described from south-eastern mainland Australia, but identification of these based on current treatments has been difficult. In response to the discovery of a new monoecious Nitella from the swamps of the Fleurieu Peninsula in South Australia, the monoecious species of Nitella from south-eastern mainland Australia were examined and compared. N. paludigena M.T.Casanova & K.G.Karol is distinguished from other monoecious species on the basis of its overall vegetative morphology and
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5

Broadhurst, Matt K., Michael E. L. Wooden, Damian J. Young, and William G. Macbeth. "Selectivity of penaeid trap nets used in south eastern Australia." Scientia Marina 68, no. 3 (September 30, 2004): 445–55. http://dx.doi.org/10.3989/scimar.2004.68n3445.

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Harvey, A. S., L. E. Phillips, W. J. Woelkerling, and A. J. K. Millar. "The Corallinaceae, subfamily Mastophoroideae (Corallinales, Rhodophyta) in south-eastern Australia." Australian Systematic Botany 19, no. 5 (2006): 387. http://dx.doi.org/10.1071/sb05029.

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The first monographic account of the south-eastern Australian representatives of the Corallinaceae, subfamily Mastophoroideae (Corallinales, Rhodophyta) is presented. The Mastophoroideae contains eight extant genera, four of which [Hydrolithon, Mastophora, Neogoniolithon, Pneophyllum] were confirmed to occur in south-eastern Australia. Hydrolithon is represented by six species (H. farinosum, H. improcerum, H. munitum, H. onkodes, H. rupestre and H. samoënse). Pneophyllum is represented by three species (P. coronatum, P. fragile and P. submersiporum) while Mastophora and Neogoniolithon are repr
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7

Watson, Mandy, Kasey Stamation, and Claire Charlton. "Calving rates, long-range movements and site fidelity of southern right whales (Eubalaena australis) in south-eastern Australia." J. Cetacean Res. Manage. 22, no. 1 (July 1, 2021): 17–28. http://dx.doi.org/10.47536/jcrm.v22i1.210.

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Within New Zealand and eastern Australia, over 58,000 southern right whales were harvested by commercial whalers between 1790 and 1980, with approximately 19,000 harvested from south-eastern Australia. Local extirpation is believed to have led to a loss of cultural memory of calving areas, contributing to the limited recovery of the south-eastern Australian population. While the number of whales observed using the south-eastern Australian coastline is increasing, there has been no change over three decades in the annual abundance of cow-calf pairs at Logans Beach in Warrnambool, Victoria, the
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8

Ayres, Renae M., Vincent J. Pettigrove, and Ary A. Hoffmann. "Genetic structure and diversity of introduced eastern mosquitofish (Gambusia holbrooki) in south-eastern Australia." Marine and Freshwater Research 63, no. 12 (2012): 1206. http://dx.doi.org/10.1071/mf11279.

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The closely related eastern mosquitofish (Gambusia holbrooki) and western mosquitofish (Gambusia affinis) have been introduced into many countries and collectively represent the most widely distributed freshwater fish in the world. We investigated genetic patterns associated with the spread of G. holbrooki in its introduced range in south-eastern Australia, by sampling 60 G. holbrooki populations (n = 1771) from major regions where G. holbrooki was initially introduced into Australia, and characterising the genetic diversity and population structure of G. holbrooki, using five polymorphic nucl
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9

Campbell, T. D. "Joint South Australian-Victorian Expedition to the Lower South-Eastern Region, South Australia." Mankind 3, no. 12 (February 10, 2009): 380. http://dx.doi.org/10.1111/j.1835-9310.1947.tb00146.x.

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10

Helweg, David, Peter Jenkins, Douglas Cat, Robert McCauley, and Claire Garrigue. "Geograpmc Variation in South Pacific Humpback Whale Songs." Behaviour 135, no. 1 (1998): 1–27. http://dx.doi.org/10.1163/156853998793066438.

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AbstractEvery winter, (male) humpback whales (Megaptera novaeangliae) produce long complex songs. Song content is dynamic and singers incorporate changes as they occur, thus song is shared through cultural transmission. We compared songs recorded in winter migratory termini in Tonga, New Caledonia, Eastern Australia, and on migration paths off Eastern Australia and New Zealand, in the winter of 1994. Seven themes were shared by all regions, with an additional two themes shared by all but Tonga. Differences in regional variants were most pronounced between Tongan and Eastern Australian song. Ne
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11

SMIT, HARRY. "The water mite genus Aspidiobates Lundblad, 1941 from Australia (Acari: Hydrachnidia: Hygrobatidae) with the description of two new species." Zootaxa 4550, no. 1 (January 22, 2019): 115. http://dx.doi.org/10.11646/zootaxa.4550.1.5.

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Two new species of the water mite genus Aspidiobates are described from Queensland, Australia, i.e. A. imperfectus n. sp. and A. neogeometricus n. sp. Many new records are given for eastern and south-eastern Australia. Finally, a key is provided for all Australian Aspidiobates species.
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12

Lindenmayer, David B., Ross B. Cunningham, Chris MacGregor, Rebecca Montague-Drake, Mason Crane, Damian Michael, and Bruce D. Lindenmayer. "Aves, Tumut, New South Wales, South-eastern Australia." Check List 3, no. 3 (July 1, 2007): 168. http://dx.doi.org/10.15560/3.3.168.

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A large-scale, long-term study of the impacts on vertebrates of landscape change and habitat fragmentation is taking place at Tumut in southern New South Wales, south-eastern Australia. Field surveys focus on counting birds within three broad kinds of sites in the study region. These are: (1) A randomized and replicated set of 85 sites in remnants or fragments of native Eucalyptus forest located within the boundaries of the Radiata Pine plantation. (2) Sites dominated by Radiata Pine plantation trees (N = 40 sites). (3) Sites in the large areas of continuous Eucalyptus forest adjacent to the p
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13

Martins, Nuno Tavares, Carlos Frederico D. Gurgel, Tracey M. Spokes, and Valéria Cassano. "species from south and south-eastern Australia (Ectocarpales, Phaeophyceae): a DNA barcoding approach." Australian Systematic Botany 34, no. 6 (October 14, 2021): 587–94. http://dx.doi.org/10.1071/sb21021.

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Defining species in the brown algal genus Colpomenia is a challenging endeavour because of their morphological similarity, overlapping phenotypic variation, the absence of conspicuous diagnostic characters, and often lack of reproductive structures crucial for their identification. Thus, the use of molecular tools has become widely used to study Colpomenia taxonomy and evolution. The following four Colpomenia species are described along the Australian coast: C. claytoniae M.Boo, K.M.Lee, G.Y.Cho & W.Nelson, C. ecuticulata M.J.Parsons, C. peregrina Sauvageau, and C. sinuosa (Mertens ex Roth
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14

Dauncey, Elizabeth A., M. I. H. Brooker, J. R. Connors, A. V. Slee, and K. R. Thiele. "EUCLID, Eucalypts of South-Eastern Australia." Kew Bulletin 54, no. 2 (1999): 493. http://dx.doi.org/10.2307/4115834.

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15

Talbot, Frank H., Rudie H. Kuiter, Martin F. Gomon, J. C. M. Glover, and R. H. Kuiter. "Coastal Fishes of South-Eastern Australia." Copeia 1995, no. 3 (August 18, 1995): 752. http://dx.doi.org/10.2307/1446779.

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16

Phillips, Ryan D., Gary Backhouse, Andrew P. Brown, and Stephen D. Hopper. "Biogeography of Caladenia (Orchidaceae), with special reference to the South-west Australian Floristic Region." Australian Journal of Botany 57, no. 4 (2009): 259. http://dx.doi.org/10.1071/bt08157.

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Caladenia contains 376 species and subspecies, of which almost all are endemic to temperate and southern semiarid Australia. Eleven species occur in New Zealand, 10 of which are endemic, and one species is widely distributed in eastern Australia and the western Pacific. Only three species occur in both south-western and south-eastern Australia. At subgeneric level, Drakonorchis is endemic to the South-west Australian Floristic Region (SWAFR), Stegostyla to eastern Australia and New Zealand, whereas three subgenera, Calonema, Phlebochilus and Elevatae occur on both sides of the Nullarbor Plain.
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17

Roberts, Jane. "Changes inPhragmites australis in south-eastern Australia: A habitat assessment." Folia Geobotanica 35, no. 4 (December 2000): 353–62. http://dx.doi.org/10.1007/bf02803548.

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18

Loughran, R. J., B. L. Campbell, G. L. Elliott, D. Cummings, and D. J. Shelly. "A caesium-137-sediment hillslope model with tests from south-eastern Australia." Zeitschrift für Geomorphologie 33, no. 2 (July 12, 1989): 235–50. http://dx.doi.org/10.1127/zfg/33/1989/235.

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19

Naughton, Kate M., and Timothy D. O'Hara. "A new brooding species of the biscuit star Tosia (Echinodermata:Asteroidea:Goniasteridae), distinguished by molecular, morphological and larval characters." Invertebrate Systematics 23, no. 4 (2009): 348. http://dx.doi.org/10.1071/is08021.

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The biscuit star Tosia australis Gray, 1840 is a well known component of the shallow rocky reef fauna of south-eastern Australia. The putative T. australis species complex was subjected to reproductive, morphometric and molecular analyses. Molecular analyses of the data from three markers (mitochondrial COI and 16S rRNA and the nuclear non-coding region ITS2) confirmed the presence of a cryptic species, the morphology of which does not agree with any of the existing nominal species. Two separate reproductive modes were observed within the complex and documented via scanning electron microscopy
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20

Chessman, Bruce C., Nina Bate, Peter A. Gell, and Peter Newall. "A diatom species index for bioassessment of Australian rivers." Marine and Freshwater Research 58, no. 6 (2007): 542. http://dx.doi.org/10.1071/mf06220.

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The Diatom Index for Australian Rivers (DIAR), originally developed at the genus level, was reformulated at the species level with data from diatom sampling of rivers in the Australian Capital Territory, New South Wales, Queensland, South Australia and Victoria. The resulting Diatom Species Index for Australian Rivers (DSIAR) was significantly correlated with the ARCE (Assessment of River Condition, Environment) index developed in the Australian National Land and Water Resources Audit (NLWRA), and with nine of the ARCE’s constituent indices and sub-indices, across 395 river reaches in south-ea
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21

Coates, Fiona, and J. B. Kirkpatrick. "Is Geographic Range Correlated with Climatic Range in Australian Spyridium Taxa?" Australian Journal of Botany 47, no. 5 (1999): 755. http://dx.doi.org/10.1071/bt97066.

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The major centres of local endemism and richness at the species level and below in Spyridium Fenzl are located on the southern coast of Western Australia and in south-eastern South Australia. There are only a few Spyridium taxa with ranges that transgress the boundaries of the following four regions: south- western Western Australia; south-eastern South Australia and western Victoria; eastern Victoria, New South Wales and southern Queensland; Tasmania. Synthetic climatic variables were generated for all recorded populations of Spyridium taxa. Variabilities in these were related to the maximum
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22

FRAMENAU, VOLKER W., PEDRO DE S. CASTANHEIRA, and JUNG-SUN YOO. "The artoriine wolf spiders of Australia: the new genus Kochosa and a key to genera (Araneae: Lycosidae)." Zootaxa 5239, no. 3 (February 10, 2023): 301–57. http://dx.doi.org/10.11646/zootaxa.5239.3.1.

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A key to the six Australian genera of the wolf spider (Lycosidae Sundevall, 1833) subfamily Artoriinae Framenau, 2007 is provided, now including Artoria Thorell, 1877, Artoriopsis Framenau, 2007, Diahogna Roewer, 1960, Kangarosa Framenau, 2010, Kochosa gen. nov. and Tetralycosa Roewer, 1960. Kochosa gen. nov. is described to include 16 species: K. australia sp. nov. (type species; from New South Wales, Queensland, South Australia, Victoria, Western Australia), K. aero sp. nov. (Western Australia), K. asterix sp. nov. (New South Wales, Queensland, Tasmania and Victoria), K. confusa sp. nov. (Qu
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23

Maslin, BR, and L. Pedley. "Patterns of Distribution of Acacia in Australia." Australian Journal of Botany 36, no. 4 (1988): 385. http://dx.doi.org/10.1071/bt9880385.

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Patterns of distribution are described for the three subgenera and nine sections that make up the Australian Acacia flora. Subgenus Phyllodineae (833 species) is widespread and contains 99% of the species; subgenus Acacia (six species) and subgenus Aculeiferum (one species) are poorly represented and virtually confined to the north of the continent. The geographic patterns of species-richness are strongly influenced by sections Phyllodineae (352 species), Juliflorae (219 species) and Plurinerves (178 species). Section Phyllodineae has centres of richness south of the Tropic of Capricorn in tem
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24

Sewell, Kim B., and Robert J. G. Lester. "Stock composition and movement of gemfish, Rexea solandri, as indicated by parasites." Canadian Journal of Fisheries and Aquatic Sciences 52, S1 (August 1, 1995): 225–32. http://dx.doi.org/10.1139/f95-530.

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The parasite fauna of gemfish, Rexea solandri, from seven areas off southern Australia, was examined for evidence of isolated gemfish populations. Canonical multivariate analyses of data on larval nematodes (Anisakis spp. and Terranova sp.), cestode plerocercoids (Hepatoxylon trichiuri and Nybelinia sp.), acanthocephalans (Rhadinorhynchus sp. and Corynosoma sp.), and a hemiuroid digenean from a total of 763 gemfish showed that the parasite faunas of fish from eastern Australia were similar except for a sample taken off New South Wales at the end of the spawning season whose affinities are unkn
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25

Matthews, Chris, and Graeme Beardsmore. "New heat flow data from south-eastern South Australia." Exploration Geophysics 38, no. 4 (December 1, 2007): 260–69. http://dx.doi.org/10.1071/eg07028.

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Michael, Damian R., David B. Lindenmayer, Mason Crane, Christopher MacGregor, Rebecca Montague-Drake, and Lachlan McBurney. "Reptilia, Murray catchment, New South Wales, south-eastern Australia." Check List 7, no. 1 (January 1, 2011): 025. http://dx.doi.org/10.15560/7.1.25.

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Two large-scale, long-term biodiversity monitoring programs examining vertebrate responses to habitat fragmentation and landscape change in agricultural landscapes are taking place in the Murray Catchment Management Area of New South Wales, south-eastern Australia. Field surveys involve counting reptiles under a range of management conditions and across a broad range of vegetation types in two bioregions, the South-western Slopes of New South Wales and the Riverina. We list reptiles recorded during surveys conducted between 2002 and 2009. We include additional species recorded between 1997 and
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WHITE, WILLIAM T., PETER R. LAST, and JOHN D. STEVENS. "Cirrhigaleus australis n. sp., a new Mandarin dogfish (Squaliformes: Squalidae) from the south-west Pacific." Zootaxa 1560, no. 1 (August 27, 2007): 19–30. http://dx.doi.org/10.11646/zootaxa.1560.1.2.

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A new species of Mandarin dogfish, Cirrhigaleus australis n. sp., is described based on specimens from southeastern Australia. Australian populations were previously considered to be conspecific with Cirrhigaleus barbifer from the western North Pacific and Indonesia, but recent investigations revealed that the two forms differ in morphology and in the structure of the CO1 gene. Cirrhigaleus australis has a smaller eye, shorter dorsal-caudal space, and smaller pectoral fins and dorsal fins and spines. These species are clearly separable from the only other congener, C. asper, and all other memb
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Gibson, Robert, Barry J. Conn, and Jeremy J. Bruhl. "Morphological evaluation of the Drosera peltata complex (Droseraceae)." Australian Systematic Botany 25, no. 1 (2012): 49. http://dx.doi.org/10.1071/sb11030.

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A phenetic study of morphological characters of the Drosera peltata complex (Droseraceae) supports the recognition of the following taxa: D. peltata from wetlands of south-eastern Australia; D. auriculata from south-eastern Australia and New Zealand; the morphologically variable D. hookeri from south-eastern Australia and northern New Zealand; the widespread D. lunata from southern and South-East Asia, as well as northern and north-eastern Australia; and the new species D. yilgarnensis R.P.Gibson & B.J.Conn is here described, from around granite outcrops of south-western Australia. D. bico
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García, Adriana. "Charophyte Flora of South-eastern South Australia and South-western Victoria, Australia: Systematics, Distribution and Ecology." Australian Journal of Botany 47, no. 3 (1999): 407. http://dx.doi.org/10.1071/bt97084.

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The charophytes (Charales, Charophyta) from south-eastern South Australia and south-western Victoria were studied on the basis of collections from 56 waterbodies, 39 of which included charophytes. Chara globularis var. globularis (Thuillier) Wood, C. globularis var. virgata (KÜtzing) Wood, C. fibrosa var. fibrosa (Agardh ex Bruzelius) Wood, C. fibrosa var. acanthopitys (Braun) Wood, C. hookeri Braun, C. preissii (Braun) Wood, Lamprothamnium macropogon (Braun) Ophel, Nitella ignescens García, N. ungula García, N. lhotzkyi (Braun) Braun, N. aff. lhotzkyi, and N. congesta (Brown) Braun were recog
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30

Cardinal, B. R., and L. Christidis. "Mitochondrial DNA and morphology reveal three geographically distinct lineages of the large bentwing bat (Miniopterus schreibersii) in Australia." Australian Journal of Zoology 48, no. 1 (2000): 1. http://dx.doi.org/10.1071/zo99067.

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A combined molecular and morphological analysis was undertaken to resolve the systematics of the Miniopterus schreibersii complex in Australia. The study of skull morphology and sequence analysis of two mitochondrial genes, nicotinamine dehydrogenase subunit 2 and cytochrome-b, revealed three distinct Australian forms of M. schreibersii which are treated as subspecies. M. s. orianae occurs in northern Australia, M. s. oceanensis occurs in eastern Australia from Queensland through to central Victoria and M. s. bassanii, sp. nov. occurs in Western Victoria and eastern South Australia. The biogeo
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31

Baba, Keiji, and Gary Poore. "Munidopsis (Decapoda, Anomura) from south-eastern Australia." Crustaceana 75, no. 3 (March 1, 2002): 231–52. http://dx.doi.org/10.1163/156854002760095363.

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Zhu, X. C., H. W. Wu, R. Stanton, G. E. Burrows, D. Lemerle, and H. Raman. "Morphological variation ofSolanum elaeagnifoliumin south-eastern Australia." Weed Research 53, no. 5 (June 14, 2013): 344–54. http://dx.doi.org/10.1111/wre.12032.

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Pollock, Alexander B. "Rainforest Restoration Manual for South-Eastern Australia." Ecological Management & Restoration 12, no. 3 (November 29, 2011): e18-e18. http://dx.doi.org/10.1111/j.1442-8903.2011.00616.x.

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Wallbrink, P. J., and A. S. Murray. "Fallout of 7Be in South Eastern Australia." Journal of Environmental Radioactivity 25, no. 3 (January 1994): 213–28. http://dx.doi.org/10.1016/0265-931x(94)90074-4.

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Rhind, S. G., J. S. Bradley, and N. K. Cooper. "Morphometric variation and taxonomic status of brush-tailed phascogales, Phascogale tapoatafa (Meyer, 1793) (Marsupialia: Dasyuridae)." Australian Journal of Zoology 49, no. 4 (2001): 345. http://dx.doi.org/10.1071/zo01002.

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This study details morphometric variation among the marsupial brush-tailed phascogale, Phascogale tapoatafa. The validity of phascogales from south-western and south-eastern Australia being classified as the single subspecies P. t. tapoatafa was questioned because of the substantial isolation of the south-west population; the northern Australian subspecies P. t. pirata was included in the inquiry. Discriminant function analysis performed on 18 skull characteristics (n = 50 skulls) produced separation between P. t. pirata, south-western P. t. tapoatafa, and south-eastern P. t. tapoatafa. Separa
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36

Huyer, A., RL Smith, PJ Stabeno, JA Church, and NJ White. "Currents off south-eastern Australia: results from the Australian coastal experiment." Marine and Freshwater Research 39, no. 3 (1988): 245. http://dx.doi.org/10.1071/mf9880245.

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The Australian Coastal Experiment was conducted off the east coast of New South Wales between September 1983 and March 1984. The experiment was conducted with arrays of current meters spanning the continental margin at three latitudes (37.5�, 34.5�, and 33.0�S.), additional shelf moorings at 29� and 42�S. coastal wind and sea-level measurements, monthly conductivity-temperature-depth probe/expendable bathythermograph (CTD/XBT) surveys, and two satellite-tracked buoys. Over the continental shelf and slope, the alongshore component of the current generally exceeded the onshore component, and the
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37

LI, XUANKUN, and DAVID K. YEATES. "One hundred years of solitude ended: A second species of Marmasoma White, 1916 (Diptera, Bombyliidae, Bombyliinae, Eclimini) from Australia." Zootaxa 4420, no. 1 (May 14, 2018): 34. http://dx.doi.org/10.11646/zootaxa.4420.1.2.

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Known as a monotypic genus for over a century, Marmasoma White, 1916 is an endemic Australian bee fly genus belonging to the tribe Eclimini of the subfamily Bombyliinae. A new species: Marmasoma hortorum sp. nov. is described based on a series of specimens from Western Australia and South Australia. This new species can be easily distinguished from the congener by the inconspicuous pale wing markings and mostly white to pale yellow scales on the body, as well as characters of both male and female genitalia. M. sumptuosum is found in south-eastern Australia, including Tasmania, and some specime
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38

Lewis, F., and AJA Green. "Four new species of Actaeciidae (Isopoda : Oniscidea) from Australia, with a review of the family." Invertebrate Systematics 8, no. 6 (1994): 1421. http://dx.doi.org/10.1071/it9941421.

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Four new species of Actaecia Dana are described from Australia; three of these (A. bipleura, A. cyphotelson and A. nasuta) are from beaches in south-eastem Australia and one (A. forrnida) is from the mid-eastern coast of Queensland. Specimens from Tasmania identified previously as Actaecia pallida Nicholls & Barnes belong to A. bipleura. The same probably applies to others from New South Wales and Lord Howe Island. The distributions of the six Australian species are noted. A review of the monogeneric family Actaeciidae includes a new diagnosis of Actaecia and a key to species. The distribu
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39

Maino, James L., Matthew Binns, and Paul Umina. "No longer a west-side story – pesticide resistance discovered in the eastern range of a major Australian crop pest, Halotydeus destructor (Acari: Penthaleidae)." Crop and Pasture Science 69, no. 2 (2018): 216. http://dx.doi.org/10.1071/cp17327.

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The redlegged earth mite, Halotydeus destructor (Tucker) (Acari: Penthaleidae), is an important pest of pastures, broad-acre crops, and vegetables across southern Australia. Populations of H. destructor in Western Australia have been known to be resistant to pyrethroid and organophosphorus pesticides since 2006 and 2014, respectively. Resistant populations are currently widespread across Western Australia’s southern growing region but have, until now, remained undetected in the large south-eastern Australian range of H. destructor, despite ongoing resistance screening since 2006. Following rep
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40

Harvey, Adele S., Wm J. Woelkerling, and Alan J. K. Millar. "An account of the Hapalidiaceae (Corallinales, Rhodophyta) in south-eastern Australia." Australian Systematic Botany 16, no. 6 (2003): 647. http://dx.doi.org/10.1071/sb03008.

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This paper provides the first monographic account of south-eastern Australian representatives of the Hapalidiaceae (Corallinales, Rhodophyta). The Hapalidiaceae includes those Corallinales whose tetrasporangia produce zonately arranged spores, and whose tetrasporangia/bisporangia are borne in conceptacles, produce apical plugs, develop beneath multiporate plates or roofs, and are not enclosed individually within calcified sporangial compartments. The Hapalidiaceae contains the subfamilies Choreonematoideae, Melobesioideae and Austrolithoideae, all formerly placed in the Corallinaceae sensu lat
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41

van Rensch, Peter, and Wenju Cai. "Indo-Pacific–Induced Wave Trains during Austral Autumn and Their Effect on Australian Rainfall." Journal of Climate 27, no. 9 (April 23, 2014): 3208–21. http://dx.doi.org/10.1175/jcli-d-13-00611.1.

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Abstract During austral winter and spring, the El Niño–Southern Oscillation (ENSO) and the Indian Ocean dipole (IOD), individually or in combination, induce equivalent-barotropic Rossby wave trains, affecting midlatitude Australian rainfall. In autumn, ENSO is at its annual minimum, and the IOD has usually not developed. However, there is still a strong equivalent-barotropic Rossby wave train associated with tropical Indian Ocean sea surface temperature (SST) variability, with a pressure anomaly to the south of Australia. This wave train is similar in position, but opposite in sign, to the IOD
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42

Raoult, V., V. Peddemors, and J. E. Williamson. "Biology of angel sharks (Squatina sp.) and sawsharks (Pristiophorus sp.) caught in south-eastern Australian trawl fisheries and the New South Wales shark-meshing (bather-protection) program." Marine and Freshwater Research 68, no. 2 (2017): 207. http://dx.doi.org/10.1071/mf15369.

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Two species of angel shark (Squatina australis, S. albipunctata) and two species of sawshark (Pristiophorus nudipinnis, P. cirratus) are frequently caught in south-eastern Australia. Little is known of the biology of these elasmobranchs, despite being caught as secondary target species in large numbers. The present study collected morphometric and reproductive data from sharks caught in shark-control nets, commercial fishing trawlers and research trawlers in south-eastern Australia. All four species had female-biased sexual size dimorphism, but growth curves between sexes did not differ. Male
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43

Carpenter, Raymond J., Myall Tarran, and Robert S. Hill. "Leaf fossils of Proteaceae subfamily Persoonioideae, tribe Persoonieae: tracing the past of an important Australasian sclerophyll lineage." Australian Systematic Botany 30, no. 2 (2017): 148. http://dx.doi.org/10.1071/sb16045.

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Fossils from the Eocene of South Australia and Western Australia and the Oligo–Miocene of Victoria represent the first known Australian leaf fossils of subfamily Persoonioideae, tribe Persoonieae. Persoonieaephyllum blackburnii sp. nov. is described from Middle Eocene Nelly Creek sediments near Lake Eyre, South Australia. Persoonieae are an important clade for understanding vegetation transitions in Australasia. The Nelly Creek leaf fossils are small (~6mm wide) and belong to an assemblage that has some characteristics of open vegetation, which is also inferred for the Oligo–Miocene of the Lat
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44

Rotstayn, L. D., M. A. Collier, R. M. Mitchell, Y. Qin, S. K. Campbell, and S. M. Dravitzki. "Simulated enhancement of ENSO-related rainfall variability due to Australian dust." Atmospheric Chemistry and Physics 11, no. 13 (July 12, 2011): 6575–92. http://dx.doi.org/10.5194/acp-11-6575-2011.

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Abstract. Australian dust emissions are highly episodic, and this may increase the importance of Australian dust as a climate feedback agent. We compare two 160-year coupled atmosphere-ocean simulations of modern-day climate using the CSIRO Mark 3.6 global climate model (GCM). The first run (DUST) includes an interactive treatment of mineral dust and its direct radiative effects. The second run (NODUST) is otherwise identical, but has the Australian dust source set to zero. We focus on the austral spring season, when the correlation between rainfall and the El Niño Southern Oscillation (ENSO)
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45

LOWRY, J. K., and R. T. SPRINGTHORPE. "A revision of the tropical/temperate amphipod genus Dulichiella Stout, 1912, and the description of a new Atlantic genus Verdeia gen. nov. (Crustacea: Amphipoda: Melitidae)." Zootaxa 1424, no. 1 (March 12, 2007): 1–62. http://dx.doi.org/10.11646/zootaxa.1424.1.1.

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The melitid amphipod genus Dulichiella Stout, 1912, is revised. Based on examination of type material or new material from near type localities, we redescribe D. anisochir (Krøyer, 1845) from Brazil, D. appendiculata (Say, 1818) from the south-eastern United States, D. australis (Haswell, 1879) from eastern Australia, D. cotesi (Giles, 1890) from the Andaman Islands, D. cuvettensis Appadoo & Myers, 2005 from Mauritius, D. fresnelii (Audouin, 1826) from the Red Sea, D. pacifica Lowry & Springthorpe, 2005 from Australasia and D. spinosa Stout, 1912 from California. Based on published ill
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WELLS, ALICE, and ARTURS NEBOISS. "Australian Diplectroninae reviewed (Insecta: Trichoptera), with description of 21 new species, most referred to a new genus." Zootaxa 4415, no. 1 (April 27, 2018): 1. http://dx.doi.org/10.11646/zootaxa.4415.1.1.

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The history of studies on Australian caddisflies in the hydropsychid subfamily Diplectroninae is outlined against a broader background of uncertainties in the delineation of the worldwide type genus, Diplectrona Westwood. For the Australian fauna, keys are given to genera of Diplectroninae that occur in Australia and to adult males of species in Diplectrona (including a newly synonymised genus, Diemeniluma Neboiss), Austropsyche Banks, and Arcyphysa gen. nov. Of the 32 diplectronine species recognised, six are referred to each of Diplectrona and Austropsyche, among them one and four newly desc
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Stewart, Alistair. "Becoming-Speckled Warbler: Re/creating Australian Natural History Pedagogy." Australian Journal of Environmental Education 27, no. 1 (2011): 68–80. http://dx.doi.org/10.1017/s0814062600000082.

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AbstractThe speckled warbler and other woodland birds of south-eastern Australia have declined dramatically since European settlement; many species are at risk of becoming locally and/or nationally extinct. Coincidently, Australian environmental education research of the last decade has largely been silent on the development of pedagogy that refects the natural history of this continent (Stewart, 2006). The current circumstances that face the speckled warbler, I argue, is emblematic of both the state of woodland birds of south-eastern Australia, and the condition of natural history pedagogy wi
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48

Millar, AJK. "Marine red algae of the Coffs Harbour region, northern New South Wales." Australian Systematic Botany 3, no. 3 (1990): 293. http://dx.doi.org/10.1071/sb9900293.

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The marine benthic red algae of the Coffs Harbour region are described and illustrated in detail. The survey constitutes the first ever detailed descriptive and illustrative mainland regional monograph of any area along the entire eastern Australian seaboard. Collections made intertidally and to depths of 20 m have included 119 species in 74 genera, 26 families, and 8 orders of Rhodophyta, of which 54 (45%) were previously unrecorded from eastern Australia, 22 (18%) are new records for the whole of Australia (16 being new Southern Hemisphere records), 1 (Dictyothumnion) constitutes a new genus
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Reid, AL. "Review of the Peripatopsidae (Onychophora) in Australia, with comments on peripatopsid relationships." Invertebrate Systematics 10, no. 4 (1996): 663. http://dx.doi.org/10.1071/it9960663.

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The Peripatopsidae (Onychophora) are analysed by cladistic techniques. In all, 64 taxa, including 41 new Australian species, are included, and 369 character states are studied for these taxa; 36 genera are recognised, 22 of which are new from Australia. New species are described and redescriptions provided for the 13 Australian taxa recognised prior to the present study. A neotype is designated for Euperipatoides leuckartii (Saenger, 1869) and a lectotype is designated for Ooperipatus oviparus (Dendy, 1895). The phylogenetic relationships of the genera and a selection of characters used in the
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Hill, MJ. "Potential adaptation zones for temperate pasture species as constrained by climate: a knowledge-based logical modelling approach." Australian Journal of Agricultural Research 47, no. 7 (1996): 1095. http://dx.doi.org/10.1071/ar9961095.

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Potential adaptation zones were modelled for major temperate pasture species using climate data and knowledge-based logical rules. A GIs database was constructed using a 0.025 degree digital elevation model and the Australian Climate Surfaces to create layers of monthly mean climate data for Australia. Soil pH maps for New South Wales, Victoria, and south-eastern South Australia were digitised and added to the database. Simple models using logical operators were constructed using estimates of temperature and aridity thresholds for the main temperate pasture species. The logical models were exe
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