Details

Title

Female sporogenesis in the native Antarctic grass Deschampsia antarctica Desv.

Journal title

Polish Polar Research

Yearbook

2016

Volume

vol. 37

Issue

No 2

Authors

Keywords

Antarctic ; Callose ; Deschampsia antarctica ; Megaspore tetrad ; Megasporocyte ; meiosis

Divisions of PAS

Nauki o Ziemi

Coverage

289-302

Publisher

Polish Academy of Sciences ; Committee on Polar Research

Date

2016

Type

Artykuły / Articles

Identifier

DOI: 10.1515/popore-2016-0016 ; ISSN 0138-0338 ; eISSN 2081-8262

Source

Polish Polar Research; 2016; vol. 37; No 2; 289-302

References

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Comparison of the micropyle ultrastructure between sexual and apomictic dandelions Asteraceae, Protoplasma, 252, 1325, doi.org/10.1007/s00709-015-0765-x ; CardoneS (2009), Karyological studies inDeschampsia antarcticaDesv, Polar Biology, 32, 427, doi.org/10.1007/s00300-008-0535-8 ; GiełwanowskaI (2005), Biology of generative reproduction ofDeschampsia antarctica In ed ) Biology of grasses Szafer Institute of Botany Polish Academy of, Sciences, 181. ; RodkiewiczB (1970), Callose in the cell wall during megasporogenesis in Angiosperms, Planta, 93, 39, doi.org/10.1007/BF00387650 ; WódkiewiczM (2013), Diaspores of the introduced speciesPoa annuaL in soil samples from King George Island ( South Shetlands, Arctic Antarctic and Alpine Research, 45, 415, doi.org/10.1657/1938-4246-45.3.415 ; BennettM (1982), DNA amounts of angiosperms from the Antarctic and South Georgia, Environmental and Experimental Botany, 22, 307, doi.org/10.1016/0098-8472(82)90023-5 ; BarcacciaG (1997), Inheritance of parental genomes in progenies ofPoa pratensisL from sexual and apomictic genotypes as assessed by RAPD markers and flow cytometry, Theoretical and Applied Genetics, 95, 516, doi.org/10.1007/s001220050592 ; WaterkeynL (1971), Sur l existance d un stade callosique presente per le paroi cellulaire , au cours de la cytocinese Comptes Rendus de l Académie des, Sciences, 256, 1792. ; ÜnalM (2013), Callose in plant sexual reproduction In ed ) Modern Tools for Genetic Engineering, InTech, 227. ; LevkovskyV (1981), Cleistogamy in Arctic grasses, Botanitcheskij Zhurnal, 66, 116. ; OlechM (2011), The first appearance and establishment of alien vascular plant in natural habitats on the forefield of retreating glacier in Antarctica, Antarctic Science, 23, 153, doi.org/10.1017/S0954102010000982 ; ChwedorzewskaK (2015), Poa annuaL in the maritime Antarctic : an overview, Polar Record, 35, 1. ; Kellmann (2015), Germination capacity of five polar Caryophyllaceae and Poaceae species under different temperature conditions, Polar Biology, 38, 1753, doi.org/10.1007/s00300-015-1740-x ; GreeneD (1971), Studies inColobanthus quitensis andDeschampsia antarcticaDesv : III Distribution habitats and performance in the Antarctic botanical zone, British Antarctic Survey Bulletin, 26, 1. ; CornerR (1971), Studies inColobanthus quitensis andDeschampsia antarcticaDesv Distribution and reproductive performance in Argentine Islands, British Antarctic Survey Bulletin, 26, 41. ; PastorczykM (2014), Changes in soluble carbohydrates in polar Caryophyllaceae and Poaceae plants in response to chilling, Acta Physiologiae Plantarum, 36, 1771, doi.org/10.1007/s11738-014-1551-7 ; ChandraN (1963), Some ovule characters in the systematics of the Gramineae, American Journal of Botany, 41, 215. ; SkottsbergC (1954), Antarctic vascular plants, Botanisk Tidsskrift, 51, 330. ; LonglyB (1977), Etude de la cytocinese I Les stades callosiques de la plaque cellulaires somatique, La Cellule, 72, 197. ; ParnikozaI (2011), Vascular plants of the Maritime Antarctic : origin and adaptation, American Journal of Plant Sciences, 2, 382. ; BarcikowskiA (2001), Deschampsia antarctica the only native grass from Antarctica In ed ) Studies on grasses in Poland Szafer Institute of Botany Polish Academy of, Sciences, 367. ; ShimouraT (1975), The occurrence of callose during the process of local lesion formation, Netherlands Journal of Plant Pathology, 81, 107, doi.org/10.1007/BF01999861 ; NiemannJ (2012), Identification of apomixis in the Kentacky bluegrass ( Poa pratensisL ) using auxin test, Acta Societatis Botanicorum Poloniae, 81, 217, doi.org/10.5586/asbp.2012.020 ; KoltunowA (1993), Apomixis : Embryo Sacs and Embryos Formed without Meiosis or Fertilization in Ovules, Plant Cell, 5, 1425, doi.org/10.1105/tpc.5.10.1425 ; BystrzejewskaG (2001), Photosynthetic temperature response of Antarctic plantDeschampsia antarcticaand of temperate region plantDeschampsia cespitosa, Polish Journal of Ecology, 49, 215. ; FrenotY (1994), Reproductive performance of native and alien colonizing phanerogams on a glacier foreland Iles Kerguelen, Polar Biology, 14, 473. ; GiełwanowskaI (2015), Morphological and ultrastructural changes of organelles in leaf mesophyll cells of the Arctic and Antarctc plants of Poaceae family under the cold influence, Arctic Antarctic and Alpine Research, 45, 17, doi.org/10.1657/AAAR0014-019 ; GiełwanowskaI (2015), and Generative reproduction of Antarctic grasses , the native speciesDeschampsia antarcticaDesv and the alien speciesPoa annuaL, Polish Polar Research, 36, 261. ; Kellmann (2015), Soluble carbohydrates in developing and mature diaspores of polar Caryophyllaceae and Poaceae, Acta Physiologiae Plantarum, 37, 1. ; EdwardsJ (1974), Studies inColobanthus quitensis andDeschampsia antarcticaDesv : VI Reproductive performance on Signy Island, British Antarctic Survey Bulletin, 39, 67. ; MazzucatoA (1996), Estimation of parthenogenesis frequency in Kentucky bluegrass with auxin - induced parthenocarpic seeds, Crop Science, 36, 9, doi.org/10.2135/cropsci1996.0011183X003600010002x ; RodkiewiczB (1976), Cell wall ingrowth and callose distribution in megasporogenesis in some Orchidaceae, Phytomorphology, 26, 2276. ; BellP (1996), Megaspore abortion : a consequence of selective apoptosis, International Journal of Plant Sciences, 157, 1, doi.org/10.1086/297314 ; MooreD (1967), Chromosome numbers of Falkland Islands angiosperms, British Antarctic Survey Bulletin, 14, 69. ; GiełwanowskaI (2005), New ultrastructural features of organelles inDeschampsia antarcticaDesv leaf cells, Polar Biology, 28, 951, doi.org/10.1007/s00300-005-0024-2 ; RodkiewiczB (1968), Callose in the walls of the developing megasporocyte and megaspores in the orchid ovule, Acta Societatis Botanicorum Poloniae, 37, 19, doi.org/10.5586/asbp.1968.003 ; OlechM (1996), Human impact on terrestrial ecosystems in west Antarctica Proceedings of the NIPR Symposium on, Polar Biology, 9, 299. ; GiełwanowskaI (2011), Biology of reproduction ofColobanthus quitensis, Polish Polar Research, 32, 139. ; MooreD (1970), Studies inColobanthus quitensis andDeschampsia antarcticaDesv II Taxonomy distribution and relationship, British Antarctic Survey Bulletin, 23, 63. ; BednaraJ (1977), Ulltrastructure of meiotic cells in ovules of the orchidEpipactis, Acta Medica Polona, 18, 285.

Editorial Board


Editorial Advisory Board


Angelika BRANDT (Hamburg),

Claude DE BROYER (Bruxelles),

Peter CONVEY (Cambridge, UK),

J. Alistair CRAME (Cambridge, UK),

Rodney M. FELDMANN (Kent, OH),

Jane E. FRANCIS (Cambridge, UK),

Andrzej GAŹDZICKI (Warszawa)

Aleksander GUTERCH (Warszawa),

Jacek JANIA (Sosnowiec),

Jiří KOMÁREK (Třeboň),

Wiesława KRAWCZYK (Sosnowiec),

German L. LEITCHENKOV (Sankt Petersburg),

Jerónimo LÓPEZ-MARTINEZ (Madrid),

Sergio A. MARENSSI (Buenos Aires),

Jerzy NAWROCKI (Warszawa),

Ryszard OCHYRA (Kraków),

Maria OLECH (Kraków)

Sandra PASSCHIER (Montclair, NJ),

Jan PAWŁOWSKI (Genève),

Gerhard SCHMIEDL (Hamburg),

Jacek SICIŃSKI (Łódź),

Michael STODDART (Hobart),

Witold SZCZUCIŃSKI (Poznań),

Andrzej TATUR (Warszawa),

Wim VADER (Tromsø),

Tony R. WALKER (Halifax, Nova Scotia),

Jan Marcin WĘSŁAWSKI (Sopot) - President.

Abstracting & Indexing

Abstracting & Indexing


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