Literatura académica sobre el tema "Salsola australis"

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Artículos de revistas sobre el tema "Salsola australis"

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MOSYAKIN, SERGEI L. "Salsola strobilifera (Chenopodiaceae), a new combination for a remarkable Australian taxon." Phytotaxa 409, no. 5 (July 15, 2019): 283–90. http://dx.doi.org/10.11646/phytotaxa.409.5.4.

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The new combination Salsola strobilifera is proposed for the morphologically remarkable Australian taxon originally described by Bentham as S. kali var. strobilifera (basionym). The latter name is lectotypified on a specimen from K (barcode K000899590) that was collected in New South Wales by Beckler during the Burke and Wills Victoria Exploring Expedition of 1860–1861, and was studied by Bentham for his Flora Australiensis. Earlier taxonomic treatments and other studies of “strobiliferous” native Australian plants (having short ovoid to almost globular strobile-like terminal inflorescences wh
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Borger, Catherine P. D., Guijun Yan, John K. Scott, Michael J. Walsh, and Stephen B. Powles. "Salsola tragus or S. australis (Chenopodiaceae) in Australia—untangling taxonomic confusion through molecular and cytological analyses." Australian Journal of Botany 56, no. 7 (2008): 600. http://dx.doi.org/10.1071/bt08043.

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Salsola tragus sensu lato (Chenopodiaceae) is found throughout Western Australia and is considered to be a weed in both natural and agricultural ecosystems, although the current taxonomic status of this species is not clear. The taxonomic literature reports morphological variation within Australian populations of the weed, indicating that there may be genetically distinct ecotypes or unidentified subspecies present within the species. A genetic and cytological approach was used to detect variation between 22 populations of S. tragus sensu lato in the south-west of Western Australia. Out-groups
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Certain, Cassandre, Luc Della Patrona, Peggy Gunkel-Grillon, Audrey Léopold, Philippe Soudant, and Fabienne Le Grand. "Effect of Salinity and Nitrogen Form in Irrigation Water on Growth, Antioxidants and Fatty Acids Profiles in Halophytes Salsola australis, Suaeda maritima, and Enchylaena tomentosa for a Perspective of Biosaline Agriculture." Agronomy 11, no. 3 (February 28, 2021): 449. http://dx.doi.org/10.3390/agronomy11030449.

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Cultivation of salt-tolerant crops help to face to irreversible global salinization of freshwater and soils. In New-Caledonia, three halophytes are candidates for saline crops, Salsola australis R.Br., Suaeda maritima (L.) Dumort and Enchylaena tomentosa R.Br. Their success and quality depend yet on availabilities of salinity and essential nutrients in agrosystems. So, we investigated effects of three salinities, i.e., control moderate and high, and five nitrogen ratios, i.e., 100:0, 75:25, 50:50, 25:75 or 0:100 NO3−-N:NH4+-N ratio on their growth and functional value for fatty acids and antio
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4

Gurbanov, E. "Taxonomic Synopsis of Salsola Genus (Mil Plain, Azerbaijan)." Bulletin of Science and Practice 6, no. 11 (November 15, 2020): 78–84. http://dx.doi.org/10.33619/2414-2948/60/08.

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In article the results of analysis conducted on bioecological features of Salsola species which are distributed in desert phytocoenosis of Mil plain of Kur-Aras lowland were given. Materials for research were plant herbaria which collected from researched area, as well as herbarium funds of Baku State University and Institute of Botany Azerbaijan National Academy of Sciences. Morphological study of the flower parts of Salsola species was conducted with Carl Zeiss Stereo Discovery V4 stereomicroscope. It was determined that in researched area 10 species (Salsola australis R. Br., S. tragus L.,
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Hrusa, G. F., and J. F. Gaskin. "The Salsola tragus Complex in California (Chenopodiaceae): Characterization and Status of Salsola australis and the Autochthonous Allopolyploid Salsola ryanii Sp. Nov." Madroño 55, no. 2 (April 2008): 113–31. http://dx.doi.org/10.3120/0024-9637(2008)55[113:tstcic]2.0.co;2.

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Aminova, А. А., S. S. Lyashenko, S. G. Yunusova, O. N. Denisenko, and M. S. Yunusov. "LIPIDS OF SALSOLA IBERICA (SENNEN&PAU) BOTSCH. (S. AUSTRALIS R. BR.) SEEDS." Journal of scientific articles "Health and Education millennium" 19, no. 9 (September 30, 2017): 188–92. http://dx.doi.org/10.26787/nydha-2226-7425-2017-19-9-188-192.

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7

T, Azzaya, and Otgonsuren M. "The herbicide effect for controlling the weeds in wheat field." Mongolian Journal of Agricultural Sciences 23, no. 01 (October 11, 2018): 26–29. http://dx.doi.org/10.5564/mjas.v23i01.1017.

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Of all reported distributions of weeds of 19 species belonging to 15 genera of 10 families in the wheat planted fields Tsagaannuur soum of Selenge aimag, annuals account for 57.9%, biennials for 10.5% and perennials for 31.5%. The use of herbicide Trimexa, Cliomex 300, Cliodmex plus and Trimexa + Cliodimex plus express for controlling both grassy and dicotyledonous weeds has Agropyron repens L, Panicium miliaceum L, Eragrostis minor Host, Amaranthus retroflexus L, Artemisia sieversiana Willd, Cannabis ruderalis Janisch, Chenopodium album L, Chenopodium aristatum L, Chenopodium acuminatum Willd
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BORGER, C. P. D., M. WALSH, J. K. SCOTT, and S. B. POWLES. "Tumbleweeds in the Western Australian cropping system: seed dispersal characteristics of Salsola australis." Weed Research 47, no. 5 (October 2007): 406–14. http://dx.doi.org/10.1111/j.1365-3180.2007.00578.x.

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Goeden, R. D., D. W. Ricker, and H. Müller. "Introduction, Recovery, and Limited Establishment of Coleophora klimeschiella (Lepidoptera: Coleophoridae) on Russian Thistles, Salsola australis, in Southern California." Environmental Entomology 16, no. 4 (August 1, 1987): 1027–29. http://dx.doi.org/10.1093/ee/16.4.1027.

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Sokolova, T. A. "Large-scale geobotanical map of the Tuzla Spit and Tuzla Island (the Kerch Strait)." Geobotanical mapping, no. 2019 (2019): 57–67. http://dx.doi.org/10.31111/geobotmap/2019.57.

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During an ecological expertise the vegetation of Tuzla Spit and Tuzla Island, located in the middle part of the Kerch Strait (Fig. 1), was studied. This area is unique in terms of biological diversity and a presence of rare species (Ermolaeva et al., 2018). The study is based on 150 geobotanical relevés. Field data, topographic maps, and high-resolution satellite images were used in the vegetation mapping. The total area of the study is 383 hectares. There are the following hierarchical levels in the legend to the vegetation map: types of vegetation and classes of associations. A mapping unit
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Tesis sobre el tema "Salsola australis"

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Borger, Catherine. "The biology and ecology of Salsola australis R.Br. (Chenopodiaceae) in southwest Australian cropping systems." University of Western Australia. School of Plant Biology, 2007. http://theses.library.uwa.edu.au/adt-WU2008.0062.

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Salsola australis is an introduced weed of crop and pasture systems in the Western Australian broad acre cropping and pasture region (wheat-belt). This thesis investigated the classification, biology and ecology of the genus Salsola in southwest Australia, as well as modelling the effectiveness of possible weed control practices. Prior to this research, S. tragus was the only recognised species of the Salsola genus within Australia. However, genetic analysis revealed that four genetically distinct putative taxa of the genus Salsola were found in southwest Australia, none of which were S. tragu
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Charon, Cardona Euridice T. "No Little Havana: recreating Cubanness in Sydney Australia." 2008. http://hdl.handle.net/1959.13/31742.

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Research Doctorate - Doctor of Philosophy (PhD)<br>This thesis explores the ways in which Cuban identity is expressed, understood, maintained and recreated by Cuban migrants in Sydney and the wider Australian society. Initially, the analysis focuses on some of the most visible ethnic markers used by people outside the Cuban community to recreate Cubanness: politics, through the promotion of Cuba as a ‘socialist paradise’ by leftist Australian organizations and solidarity groups with Cuba; and music and dance, taking as an example the salsa boom in Sydney, and the advertising of Cuba as an exot
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