Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 29 checked references that resolve
resolves10.1071/BT01018Root and shoot development in
<i>Corymbia calophylla</i>
and
<i>Banksia brownii</i>
after the application of the fungicide phosphite
resolves10.1071/AP02061The efficacy of phosphite applied after inoculation on the colonisation of Banksia brownii stems by Phytophthora cinnamomi
resolves10.1071/AP04055Phytotoxicity in relation to<i>in planta</i>concentration of the fungicide phosphite in nine Western Australian native species
resolves10.1094/Phyto-79-417Cellular and Histological Changes Induced by<i>Phytophthora cinnamomi</i>in a Group of Plant Species Ranging from Fully Susceptible to Fully Resistant
resolves10.2307/1943075Comparisons of Treatments After an Analysis of Variance in Ecology
resolves10.1094/PD-79-0770Methods of Fosetyl-Al Application and Phosphonate Levels in Avocado Tissue Needed to Control Stem Canker Caused by<i>Phytophthora citricola</i>
resolves10.1071/AP01078Temperature and inoculation method influence disease phenotypes and mortality of Eucalyptus marginata clonal lines inoculated with Phytophthora cinnamomi
resolves10.1007/s00468-011-0587-1Phosphite stimulated histological responses of Eucalyptus marginata to infection by Phytophthora cinnamomi
resolves10.1071/AP09005Influence of site and rate of low-volume aerial phosphite spray on lesion development of<i>Phytophthora�cinnamomi</i>and phosphite persistence in<i>Lambertia�inermis</i>var.<i>inermis</i>and<i>Banksia grandis</i>
resolves10.1007/s13313-011-0088-0Variation within the genus Lambertia in efficacy of low-volume aerial phosphite spray for control of Phytophthora cinnamomi
resolves10.1071/AP06085A stem injection of phosphite protects<i>Banksia</i>species and<i>Eucalyptus marginata</i>from<i>Phytophthora cinnamomi</i>for at least four years
resolves10.1071/AP07033Application of phosphite in a high-volume foliar spray delays and reduces the rate of mortality of four<i>Banksia</i>species infected with<i>Phytophthora cinnamomi</i>
resolves10.1094/Phyto-77-661Temperature-Growth Relationships of<i>Phytophthora cinnamomi</i>in the Secondary Phloem of Roots of<i>Banksia grandis</i>and<i>Eucalyptus marginata</i>
resolves10.1071/BT03131Quantification of the susceptibility of the native flora of the South-West Botanical Province, Western Australia, to
<i>Phytophthora cinnamomi</i>
resolves10.1071/AP04002Phosphite reduces disease extension of a Phytophthora cinnamomi front in Banksia woodland, even after fire
resolves10.1111/j.1439-0329.2006.00440.xEffective concentration of phosphite in controlling <i>Phytophthora cinnamomi</i> following stem injection of <i>Banksia</i> species and <i>Eucalyptus marginata</i>
resolves10.1071/BT06019Phytophthora cinnamomi invasion, a major threatening process to conservation of flora diversity in the South-west Botanical Province of Western Australia
resolves10.1071/AP07074Assessment of threatened flora susceptibility to<i>Phytophthora cinnamomi</i>by analysis of disease progress curves in shadehouse and natural environments
resolves10.1071/BT10154Variation in susceptibility to Phytophthora cinnamomi infection within the genus Lambertia
resolves10.1094/Phyto-79-921The Mode of Action of Phosphite: Evidence for Both Direct and Indirect Modes of Action on Three<i>Phytophthora</i>spp. in Plants
resolves10.1071/BT07228Phosphonate alters the defence responses of Lambertia species challenged by Phytophthora cinnamomi
resolves10.1071/BT00062The long-term ability of phosphite to control
<i>Phytophthora cinnamomi</i>
in two native plant communities of Western Australia
resolves10.1071/AR9951079Changing sink strengths influence translocation of phosphonate in avocado (
<i>Persea americana</i>
Mill.) trees
resolves10.1071/AP01055Ability of phosphite applied in a glasshouse trial to control Phytophthora cinnamomi in five plant species native to Western Australia
The 14 references without a DOI — listed, not checked
no DOI — not checkedAukland C (2002) The dilution of phosphite in rapidly growing plants and how soil and plant phosphate levels interact with phosphite and its ability to control Phytophthora cinnamomi Rands. Honours thesis, Murdoch University, Western Australia
no DOI — not checkedBarrett SR (2001) Phytotoxic effects of phosphite in native plant communities in southern Western Australia. PhD thesis, Murdoch University, Western Australia
no DOI — not checkedBarrett S (2003) Monitoring of aerial phosphite applications for the control of Phytophthora cinnamomi in the Albany district. In: McComb JA, Hardy GEStJ, Tommerup IC (eds) Phytophthora in forests and natural ecosystems. 2nd International IUFRO Working Party 7.02.09 Meeting, Albany, W. Australia. Murdoch University Print, Murdoch, pp 132-137
no DOI — not checkedDunstan B, Hardy G (2005) Control of Phytophthora cinnamomi with phosphite: some recent developments in application methods. Aust Plant Cons 13(4):10–11
no DOI — not checkedHüberli D, Shearer BL, Calver MC, Paap T, et al (2008) Research into natural and induced resistance in Australian native vegetation of Phytophthora cinnamomi and innovative methods to contain and/or eradicate within localised incursions in areas of high biodiversity in Australia. Does the physiological status of the plant at the time of spraying affect the efficacy of phosphite? Tender Number 19/2005, Sub project 19.2.3. Australian Government Department of the Environment, Water, Heritage and the Arts, Canberra
no DOI — not checkedKirby KN (1993) Advanced data analysis with SYSTAT. Van Nostrad Reinhold, New York
no DOI — not checkedKomorek BM, Shearer BL, Blumberg M, Crane C, Fairman R (1998). Scope Item 4. Refinement of techniques and identification of resources for the long term control of Phytophthora with phosphonate. Part A. Effects of phosphonate concentration and application frequency on the duration of control. In Murray DIL (ed) Control of Phytophthora and Diplodina canker in Western Australia. Final report to the Threatened Species and Communities Unit, Biodiversity Group, Environment Australia. Department of Conservation and Land Management, Perth, pp 21–32
no DOI — not checkedSchutte GC, Bezuidenhout JJ, Kotze JM (1991) Timing of application of phosphonate fungicides using different application methods as determined by means of gas-liquid-chromatography for Phytophthora root rot control of citrus. Phytophylactica 23:69–71
no DOI — not checkedShearer BL, Smith IW (2000) Diseases of eucalypts caused by soilborne species of Phytophthora and Pythium. In: Keane PJ, Kile GA, Podger FD, Brown BN (eds) Diseases and pathogens of eucalypts. CSIRO Publishing, Canberra, pp 259–291
no DOI — not checkedShearer BL, Tippett JT (1989) Jarrah dieback: The dynamics and management of Phytophthora cinnamomi in the Eucalyptus marginata Forest of South-western Australia. Research Bulletin 3. Department of Conservation and Land Management, Perth
no DOI — not checkedShearer BL, Crane CE, Spadek ZE, Aukland C, Saw, R, Scott, P, Hardy GEStJ (2003). Optimising phosphite prescriptions for the protection of threatened communities from Phytophthora cinnamomi. Final report to the National Heritage Trust and Environment Australia for project 24328. Department of Conservation and Land Management, Perth
no DOI — not checkedSmith B (1994) Effects of phosphonic acid and sodium silicate on lesion development of Phytophthora cinnamomi and histological responses in host species endemic to Western Australia. Honours thesis, University of Western Australia, Nedlands
no DOI — not checkedSpectrum (2006) WatchDog Weather Stations. (Spectrum Technologies, Inc.: http://www.specmeters.com/ )
no DOI — not checkedTaylor A, Hopper S (1988) The Banksia Atlas. Australian Flora and Fauna Series 8. Australian Government Publishing Service, Canberra
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