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A Resource Inventory and Management Information System
A RESOURCE INVENTORY AND MANAGEMENT INFORMATION SYSTEM Department of Conservation and Environment Western Australia AR OURCE INVENTORY AND MANAGEMENT INFORMATION SYSTEM WILSON INLET, WESTERN AUSTRALIA A rt prepared for the Department of Conservation Environment R.B. i es cLG.M. Robertson and F.E. Robertson 1982 Ecosystem Analysis 7 Katrine Street FLOREAT PARK WA Patrick Hesp, Department of Agriculture, Soils and Conservation Colin Pearce, Forests Department Nick Schofield, Western Australian Institute of Technology Ian Eliot, Geography Department, University of t4estern Australia Bill Collins, Water Resources Branch, Public Works Department Paul Wilson, State Herbarium Barry Smith, ESRI Graham Chittleborough, Department of Conservation and Environment Peter Birch 11 11 11 Ernest Hodgkin 11 11 11 Ian Parker 11 11 11 Pauline Sawyer 11 11 11 Brian Stewart 11 11 11 Ross Fi el d 11 11 11 Tony Chi ffi ngs 11 11 11 Rob Sippe 11 11 11 Debra Totterdel 1 11 11 11 Norm KcKenzie, W.A. Wildlife Research Centre Neville McIntyre, Denmark Agriculture Research Station Graham Sansom, Department of Conservation and Environment Tony Berman 11 11 11 Rex Spencer, Faculty of Agriculture, University of Western Australia Abbreviations used in this report ABS - Australian Bureau of Statistics WA - Western Australia PWD - Public Works Department FMIS - Forest Management Information System (see FMIS code list (6.1.2) for FMIS abbreviations) ESRI - Environmental Systems Research Investigations UWA - University of Western Australia WAIT - Western Australian Institute of Technology GIS - Geographic Information System DCE - Department of Conservation and Environment CBM - Commonwealth Bureau of Meteorology km - kilometre m - metre mg - milligram ha - hectare PREFACE With a growing number of environmental studies at specific locations along the Western Australian coast, rapidly increasing quantities of data are being accumulated. -
Jervis Bay Territory Page 1 of 50 21-Jan-11 Species List for NRM Region (Blank), Jervis Bay Territory
Biodiversity Summary for NRM Regions Species List What is the summary for and where does it come from? This list has been produced by the Department of Sustainability, Environment, Water, Population and Communities (SEWPC) for the Natural Resource Management Spatial Information System. The list was produced using the AustralianAustralian Natural Natural Heritage Heritage Assessment Assessment Tool Tool (ANHAT), which analyses data from a range of plant and animal surveys and collections from across Australia to automatically generate a report for each NRM region. Data sources (Appendix 2) include national and state herbaria, museums, state governments, CSIRO, Birds Australia and a range of surveys conducted by or for DEWHA. For each family of plant and animal covered by ANHAT (Appendix 1), this document gives the number of species in the country and how many of them are found in the region. It also identifies species listed as Vulnerable, Critically Endangered, Endangered or Conservation Dependent under the EPBC Act. A biodiversity summary for this region is also available. For more information please see: www.environment.gov.au/heritage/anhat/index.html Limitations • ANHAT currently contains information on the distribution of over 30,000 Australian taxa. This includes all mammals, birds, reptiles, frogs and fish, 137 families of vascular plants (over 15,000 species) and a range of invertebrate groups. Groups notnot yet yet covered covered in inANHAT ANHAT are notnot included included in in the the list. list. • The data used come from authoritative sources, but they are not perfect. All species names have been confirmed as valid species names, but it is not possible to confirm all species locations. -
Assessment of Dalwallinu Shire Wattles Considered Prospective for Human Food
Assessment of Dalwallinu Shire Wattles considered prospective for human food A Report Produced For The Shire of Dalwallinu By Bruce Maslin and Jordan Reid December 2008 1 2 Assessment of Dalwallinu Shire Wattles considered prospective for human food By Bruce Maslin & Jordan Reid Western Australian Herbarium, Department of Environment and Conservation, Kensington, W.A. Preamble Following a request from Mr Robert Nixon, President of the Dalwallinu Shire Council, and a meeting with Shire Councillors McFarlane, Carter, Dinnie and Sanderson, CEO Crispin and Brent Parkinson, we undertook a quick assessment of the Acacia flora of the Dalwallinu Shire with a view to identifying those species that might have potential for cultivation as a source of commercial quantities of seed for human consumption. The work was conducted between 2-5 December 2008. Introduction There are about 80 different Acacia (Wattle) species that occur in the Shire of Dalwallinu. Ten of these species were included in Edible Wattle Seeds of Southern Australia (Maslin et al. 1998) as having some potential for development as new crop plants as a source of seed for human consumption. From the outset it is recommended that readers familiarize themselves with Maslin et al. (1998) and Simpson & Chudleigh (2001) because these two works provide much valuable information relevant to the domestication of Acacia as human food crop in low rainfall areas. Little or no attempt has been made here to reproduce the information contained in these works (we have simply focused on identifying those species in the Dalwallinu Shire that we consider as prospective for development as new seed crops). -
Gloucester Park, Margaret
Flora and Fauna Assessment Gloucester Park, Margaret River Prepared November 2016 for the Shire of Augusta Margaret River Flora and Fauna Assessment Gloucester Park, Margaret River, November 2016 This document has been prepared by Litoria Ecoservices for the express use of the client. Litoria Ecoservices accepts no responsibility to any third party who may rely upon this document. All rights reserved. No section or element of this document may be removed from this document, reproduced, electronically stored or transmitted in any form without the written permission of Litoria Ecoservices. Version Control Version Date Version Purpose Author Draft 1 29/11/ 2016 Draft for client review DMcK Final 1 5/12/2016 Complete Report D McK Flora and Fauna Assessment Gloucester Park, Margaret River, November 2016 TABLE OF CONTENTS PAGE 1.0 INTRODUCTION .............................................................................................................. 2 1.1 Background .......................................................................................................... 2 1.2 Site Description .................................................................................................... 2 1.4 Assessment Objectives and Scope ....................................................................... 2 1.5 Personnel .............................................................................................................. 3 1.6 Landform ............................................................................................................. -
South West Region
Regional Services Division – South West Region South West Region ‐ Parks & Wildlife and FPC Disturbance Operations Flora and Vegetation Survey Assessment Form 1. Proposed Operations: (to be completed by proponent) NBX0217 Summary of Proposed Operation: Road Construction and Timber Harvesting New road construction – 3.75km Existing road upgrade – 14.9km New gravel pit construction – 2ha (exploration area) Contact Person and Contact Details: Adam Powell [email protected] 0427 191 332 Area of impact; District/Region, State Forest Block, Coupe/Compartment (shapefile to be provided): Blackwood District South West Region Barrabup 0317 Period of proposed disturbance: November 2016 to December 2017 1 2.Desktop Assessment: (to be completed by the Region) ‐ Check Forest Ecosystem reservation. Forest Ecosystems proposed for impact: Jarrah Forest‐Blackwood Plateau, Shrub, herb and sedgelands, Darling Scarp Y Are activities in a Forest Ecosystem that triggers informal reservation under the FMP? The Darling Scarp Forest Ecosystem is a Poorly Reserved Forest Ecosystem and needs to be protected as an Informal Reserve under the Forest Management Plan (Appendix 11) ‐ Check Vegetation Complexes, extents remaining uncleared and in reservation (DEC 2007/EPA 2006). Vegetation Complex Pre‐European extent (%) Pre‐European extent (Ha) Extent in formal/informal reservation (%) Bidella (BD) 94% 44,898 47% Darling Scarp (DS) Figures not available Corresponds to Darling Scarp Forest Ecosystem extent Gale (GA) 80% 899 17% Jalbarragup (JL) 91% 14,786 32% Kingia (KI) 96% 97,735 34% Telerah (TL) 92% 25,548 33% Wishart (WS2) 84% 2,796 35% Y Do any complexes trigger informal reservation under the FMP? Darling Scarp complex as discussed above Y Are any complexes significant as per EPA regionally significant vegetation? Gale (GA) complex is cleared below the recommended retention of 1,500ha (Molloy et.al 2007) ‐ Check Threatened flora and TEC/PEC databases over an appropriate radius of the disturbance boundary. -
23/01/2014 Cons Timber Habitat Status Harvest ID Forest Red-Tailed
BMW0112 Detail Created: 23/01/2014 Cons Timber Habitat Common Name Scientific name Score FDIS Land System FDIS Landscape Unit Status Harvest ID Forest Red-tailed Black Cockatoo Calyptorhynchus banksii naso VU 12 High 32 Blackwood Plateau Jarrah Uplands Forest Red-tailed Black Cockatoo Calyptorhynchus banksii naso VU 12 High 34 Blackwood Plateau Depressions / Swamps Baudin's Cockatoo Calyptorhynchus baudinii EN 12 High 32 Blackwood Plateau Jarrah Uplands Baudin's Cockatoo Calyptorhynchus baudinii EN 12 High 34 Blackwood Plateau Depressions / Swamps Chuditch (Western Quoll) Dasyurus geoffroii VU Moderate 32 Blackwood Plateau Jarrah Uplands Chuditch (Western Quoll) Dasyurus geoffroii VU Moderate 34 Blackwood Plateau Depressions / Swamps Peregrine Falcon Falco peregrinus P4 Low 32 Blackwood Plateau Jarrah Uplands Peregrine Falcon Falco peregrinus P4 Low 34 Blackwood Plateau Depressions / Swamps Crested Shrike-tit Falcunculus frontatus P4 Low 32 Blackwood Plateau Jarrah Uplands Crested Shrike-tit Falcunculus frontatus P4 Low 34 Blackwood Plateau Depressions / Swamps Western Falspistrelle Falsistrellus mackenziei P4 12 High 32 Blackwood Plateau Jarrah Uplands Western Falspistrelle Falsistrellus mackenziei P4 12 High 34 Blackwood Plateau Depressions / Swamps Mud Minnow Galaxiella munda VU Moderate 34 Blackwood Plateau Depressions / Swamps White-bellied Frog Geocrinia alba CR 6 Low 32 Blackwood Plateau Jarrah Uplands Orange-bellied Frog Geocrinia vitellina VU 7 High 34 Blackwood Plateau Depressions / Swamps Quenda (Southern Brown Bandicoot) Isoodon -
Vertebrate Fauna in the Southern Forests of Western Australia
tssN 0085-8129 ODC151:146 VertebrateFauna in The SouthernForests of WesternAustralia A Survey P. CHRISTENSEN,A. ANNELS, G. LIDDELOW AND P. SKINNER FORESTS DEPARTMENT OF WESTERN AUSTRALIA BULLETIN94, 1985 T:- VertebrateFauna in The SouthernForests of WesternAustralia A Survey By P. CHRISTENSEN, A. ANNELS, G. LIDDELOW AND P. SKINNER Edited by Liana ChristensenM.A. (w.A.I.T.) Preparedfor Publicationby Andrew C.A. Cribb B.A. (U.W.A.) P.J. McNamara Acting Conservator of Forcsts 1985 I I r FRONT COVER The Bush R.at (Rattus fuscipes): the most abundantof the native mammals recordedby the surueyteams in WesternAustralia's southernforests. Coverphotograph: B. A. & A. C. WELLS Printed in WesternAustralia Publishedby the ForestsDepartmeDt of WesternAustralia Editor MarianneR.L. Lewis AssistantEditor Andrew C.A. Cribb DesignTrish Ryder CPl9425/7/85- Bf Atthority WILLIAM BENBOW,Aciing Cov€mmenaPrinter, Wesrern Ausrralia + Contents Page SUMMARY SECTION I-INTRODUCTION HistoricalBackground. Recent Perspectives SECTION II-DESCRIPTION OF SURVEY AREA Boundariesand PhysicalFeatures 3 Geology 3 Soils 3 Climate 6 Vegetation 6 VegetationTypes. 8 SECTION III-SURVEY METHODS 13 SECTION IV-SURVEY RESULTSAND LIST OF SPECIES. l6 (A) MAMMALS Discussionof Findings. l6 List of Species (i) IndigenousSpecies .17 (ii) IntroducedSpecies .30 (B) BIRDS Discussionof Findings List of Species .34 (C) REPTILES Discussionof Findings. List of Species. .49 (D) AMPHIBIANS Discussionof Findings. 55 List of Species. 55 (E) FRESHWATER FISH Discussionof Findings. .59 List of Species (i) IndigenousSpecies 59 (ii) IntroducedSpecies 6l SECTION V-GENERALDISCUSSION 63 ACKNOWLEDGEMENTS 68 REFERENCES 69 APPENDICES I-Results from Fauna Surveys 1912-t982 72 II-Results from Other ResearchStudies '74 Within The SurveyArea 1970-1982. -
Integrated Approach to Nitrogen Fixing Tree Germplasm Development
INTEGRATED APPROACH TO NITROGEN FIXING TREE GERMPLASM DEVELOPMENT JAKE HALLIDAY' ABSTRACT - The performance of nitrogen fixing trees introduced to new environments depends on proper reconstitution of the symbiotic associatioi on which the trees rely for their nutrition. Thus selection strategies employed to identify adapted g.rmplasm for particular sites must provide for three-way selection of seed, rhiobia and mycorrhizae. Selected lines must then be multiplied before they can be deployed in varying types of development programs. Speciai problems are faced in accomplishing these ends with virtually all nitrogen fixing tr-es. Results and experiences are described which emphasize the importance of parallel selection of plant germplasm and Rhizobiurn strains. '.n the case of VA mycorrhizae, effective symbioses can occur without specific inoculation. Methods for selecting and multiplying trees and their microsymbionts on a large scale are described and discussed. Index terms: mycorrhiza technology, Rhizobium technology, nitrogen fixing trees, plant selection, seed technology. AqAO INTEGRADA PARA DESENVOLVER GERMOPLASMAS FIXADORES DE NITROGtNIO RESUMO - 0 comportamento de Arvores fixadoras denitrogdniodcpoisde serem introdu zidas em novas ambientes depende da reconstituiiSo plena das associaq6es simbi6ticas, as quais contribuem para a nutripo drs plantas. No entanto, as estrat~gias de selecio em pregadas para identificar germoplasmas adaptados para certos locais precisam levar em conta a seleno conjunta das sementes, do riz6bio e das micorrizas. As linhas selecionadao tim de multiplicar-se em grande escala arites de serem utilizadas em vdrios tipos de progra mas. Encontram-se grades problemas para alcancar estes fins em quase todoi os casos de Arvores fixadaras de nitrogdnio. Descrevem-se experidncias e resultados que enfatizam a importhncia da seleqio paralela de germoplasma de plantas e cepas de Rhizobium. -
Phytophthora Resistance and Susceptibility Stock List
Currently known status of the following plants to Phytophthora species - pathogenic water moulds from the Agricultural Pathology & Kingdom Protista. Biological Farming Service C ompiled by Dr Mary Cole, Agpath P/L. Agricultural Consultants since 1980 S=susceptible; MS=moderately susceptible; T= tolerant; MT=moderately tolerant; ?=no information available. Phytophthora status Life Form Botanical Name Family Common Name Susceptible (S) Tolerant (T) Unknown (UnK) Shrub Acacia brownii Mimosaceae Heath Wattle MS Tree Acacia dealbata Mimosaceae Silver Wattle T Shrub Acacia genistifolia Mimosaceae Spreading Wattle MS Tree Acacia implexa Mimosaceae Lightwood MT Tree Acacia leprosa Mimosaceae Cinnamon Wattle ? Tree Acacia mearnsii Mimosaceae Black Wattle MS Tree Acacia melanoxylon Mimosaceae Blackwood MT Tree Acacia mucronata Mimosaceae Narrow Leaf Wattle S Tree Acacia myrtifolia Mimosaceae Myrtle Wattle S Shrub Acacia myrtifolia Mimosaceae Myrtle Wattle S Tree Acacia obliquinervia Mimosaceae Mountain Hickory Wattle ? Shrub Acacia oxycedrus Mimosaceae Spike Wattle S Shrub Acacia paradoxa Mimosaceae Hedge Wattle MT Tree Acacia pycnantha Mimosaceae Golden Wattle S Shrub Acacia sophorae Mimosaceae Coast Wattle S Shrub Acacia stricta Mimosaceae Hop Wattle ? Shrubs Acacia suaveolens Mimosaceae Sweet Wattle S Tree Acacia ulicifolia Mimosaceae Juniper Wattle S Shrub Acacia verniciflua Mimosaceae Varnish wattle S Shrub Acacia verticillata Mimosaceae Prickly Moses ? Groundcover Acaena novae-zelandiae Rosaceae Bidgee-Widgee T Tree Allocasuarina littoralis Casuarinaceae Black Sheoke S Tree Allocasuarina paludosa Casuarinaceae Swamp Sheoke S Tree Allocasuarina verticillata Casuarinaceae Drooping Sheoak S Sedge Amperea xipchoclada Euphorbaceae Broom Spurge S Grass Amphibromus neesii Poaceae Swamp Wallaby Grass ? Shrub Aotus ericoides Papillionaceae Common Aotus S Groundcover Apium prostratum Apiaceae Sea Celery MS Herb Arthropodium milleflorum Asparagaceae Pale Vanilla Lily S? Herb Arthropodium strictum Asparagaceae Chocolate Lily S? Shrub Atriplex paludosa ssp. -
Structural Botany / Botánica Estructural
Botanical Sciences 99(3): 588-598. 2021 Received: October 15, 2020, Accepted: December 1, 2020 DOI: 10.17129/botsci.2776 AcaciaOn linecornigera first: April 15, 2021 Structural Botany / Botánica Estructural FLORAL DEVELOPMENT OF THE MYRMECOPHYTIC ACACIA CORNIGERA (LEGUMINOSAE) DESARROLLO FLORAL DE LA MIRMECÓFITA ACACIA CORNIGERA (LEGUMINOSAE) SANDRA LUZ GÓMEZ-ACEVEDO1,2 1 Unidad de Morfología y Función. Facultad de Estudios Superiores Iztacala, Universidad Nacional Autónoma de México, Tlalnepantla, Estado de México, México. 2 Departamento de Ecología Evolutiva, Instituto de Ecología, Universidad Nacional Autónoma de México, CDMX, México. Author for correspondence: [email protected] Abstract Background: The Neotropical ant-acacias show morphological variations in their vegetative characteristics as a consequence of their relation- ship with ants. However, there is no information regarding whether floral organs have also undergone any modification that prevents resident ants from approaching the inflorescences in anthesis. Questions: Are the patterns of floral development affected by the relationship with ants? Is there any floral organ or structure involved in avoid- ing the presence of ants during the flowering period? At what stage of development do these modifications arise, if at all? Studied species: Acacia cornigera (L.) Willd. Study site: Santiago Pinotepa Nacional, Oaxaca and Los Tuxtlas, Veracruz. March and May 2015. Methods: Dissections of inflorescences in every developmental stage from two populations, were examined using scanning electron micros- copy. Results: The inception patterns of the calyx (irregular), corolla (simultaneous), androecium (acropetally in alternate sectors) and gynoecium (precocious) agree with previous reports for non-myrmecophyic species of the Acacia genus. In mature stages, the presence of stomata is char- acteristic of bracts and petals. -
Acacia in THIS ISSUE Dacacia the Name Acacia Comes This Issue of Seed Notes from the Greek Acacia, Ace Will Cover the Genus Or Acis Meaning a Point Or Acacia
No. 9 Acacia IN THIS ISSUE DAcacia The name Acacia comes This issue of Seed Notes from the Greek acacia, ace will cover the genus or acis meaning a point or Acacia. thorn, or from acazo, to D Description sharpen, although this name applies more to African than D Geographic Australian species (Australian distribution and Acacia have no thorns or habitat larger prickles, unlike those D Reproductive biology that are native to Africa). D Seed collection Many species of Acacia, or wattles as they are commonly D Phyllodes and flowers of Acacia aprica. Photo – Andrew Crawford Seed quality called in Australia, are valuable assessment for a range of uses, in D Seed germination particular as garden plants. Description In Australia, Acacia (family is modified to form a leaf- D Recommended reading They are also used for amenity plantings, windbreaks, shade DMimosaceae) are woody like structure or phyllode. trees, groundcovers, erosion plants that range from These phyllodes may be flat and salinity control. The timber prostrate under-shrubs to or terete. Some species do of some Acacia is very hard tall trees. Acacia flowers are not have phyllodes and the and is ideal for fence posts small, regular and usually flattened stems or cladodes (e.g. A. saligna or jam). Other bisexual. They occur in spikes act as leaves. Foliage can Acacia species are used to or in globular heads and vary from blueish to dark make furniture and ornaments. range in colour from cream green to silvery grey. Most The seed of some wattles is to intense yellow. The leaves species of Acacia have glands a good food source for birds, of Acacia may be bipinnate on the axis of the phyllodes, other animals and humans (the primary leaflets being although in Australian as ‘bush tucker’. -
A Conserved Role for the NAM/Mir164 Developmental
ORIGINAL RESEARCH published: 13 January 2016 doi: 10.3389/fpls.2015.01239 AConservedRoleforthe NAM/miR164 Developmental Module Reveals a Common Mechanism Underlying Carpel Margin Fusion in Monocarpous and Syncarpous Eurosids Aurélie C. M. Vialette-Guiraud1, Aurélie Chauvet1, Juliana Gutierrez-Mazariegos1, Alexis Eschstruth2, Pascal Ratet2 and Charles P. Scutt1* 1 Laboratoire de Reproduction et Développement des Plantes, UMR 5667, Centre National de la Recherche Scientifique – Institut National de la Recherche Agronomique – Université de Lyon, Ecole Normale Supérieure de Lyon, Lyon, France, 2 Institute of Plant Sciences Paris-Saclay, Centre National de la Recherche Scientifique – Institut National de la Recherche Agronomique – Université de Paris Sud, Orsay, France The majority of angiosperms are syncarpous- their gynoecium is composed of two or more fused carpels. In Arabidopsis thaliana, this fusion is regulated through the Edited by: balance of expression between CUP SHAPED COTYLEDON (CUC) genes, which are Rainer Melzer, University College Dublin, Ireland orthologs of the Petunia hybrida transcription factor NO APICAL MERISTEM (NAM), and Reviewed by: their post-transcriptional regulator miR164. Accordingly, the expression of a miR164- Stefan De Folter, insensitive form of A. thaliana CUC2 causes a radical breakdown of carpel fusion. Centro de Investigación y de Estudios Here, we investigate the role of the NAM/miR164 genetic module in carpel closure Avanzados del Instituto Politécnico Nacional, Mexico in monocarpous plants. We show that the disruption of this module in monocarpous Barbara Ambrose, flowers of A. thaliana aux1-22 mutants causes a failure of carpel closure, similar The New York Botanical Garden, USA to the failure of carpel fusion observed in the wild-type genetic background.