Register      Login
Australian Journal of Biological Sciences Australian Journal of Biological Sciences Society
Biological Sciences

Articles citing this paper

Subcellular Organization of the Developing Cotyledons of Pisum Sativum L.

Joan M Bain and FV Mercer
19(1) pp.49 - 68


105 articles found in Crossref database.

Plant Carbohydrates I (1982)
Jenner C. F.
Changes in developing pea (Pisum sativum) seeds in relation to their ability to withstand desiccation
MATTHEWS S.
Annals of Applied Biology. 1973 75(1). p.93
Effect of protein synthesis inhibitors on the formation of crystalloid inclusions in the endoplasmic reticulum of beetroot cells
Van Steveninck Margaret E., Van Steveninck R. F. M.
Protoplasma. 1971 73(1). p.107
RNA metabolism during the development of cotyledons of Pisum sativum L.
Poulson Rozanne, Beevers Leonard
Biochimica et Biophysica Acta (BBA) - Nucleic Acids and Protein Synthesis. 1973 308(3). p.381
Isolation and Partial Characterization of the Protein Body Membrane from Mature and Germinating Seeds of Vicia faba L.
Weber E., Süss K.-H., Manteuffel R., Neumann D.
Biochemie und Physiologie der Pflanzen. 1979 174(2). p.139
Some observations on coleoptile cell ultrastructure in ungerminated grains of rice (Oryza sativa L)
�pik Helgi
Planta. 1971 102(1). p.61
Endoplasmic reticulum in developing seeds of Vicia faba
Harris Nick
Planta. 1979 146(1). p.63
Recent Advances in the Development and Germination of Seeds (1989)
Berjak Patricia, Farrant Jill M., Pammenter N. W.
EFFECTS OF S‐TRIAZINES ON PROTEIN AND FINE STRUCTURE OF COTYLEDONS OF BUSH BEANS
Singh B., Campbell W. F., Salunkhe D. K.
American Journal of Botany. 1972 59(6). p.568
Formation of protein storage bodies during embryogenesis in cotyledons of Sinapis alba L.
Bergfeld R., K�hnl T., Schopfer P.
Planta. 1980 148(2). p.146
An analysis of seed development inPisum sativum V. Fluorescence triple staining for investigating cotyledon cell development
Corke Fiona M. K., Hedley C. L., Shaw P. J., Wang T. L.
Protoplasma. 1987 140(2-3). p.164
Soil Microbial Associations - control of structures and functions (1988)
VANČURA V.
Nucleic Acids and Protein Synthesis in Plants (1977)
Boulter Donald
Acid Glycosidase Isoenzymes and Activities in Developing Hulls and Seeds of Pisum sativum L.
Murray David R.
Zeitschrift für Pflanzenphysiologie. 1983 110(1). p.7
Laboratory simulations of the transformation of peas as a result of heat treatment: changes of the physical and chemical properties
Braadbaart F, Boon J.J, Veld H, David P, van Bergen P.F
Journal of Archaeological Science. 2004 31(6). p.821
Nucleic Acids and Proteins in Plants I (1982)
Müntz K.
Oxidative and phosphorylative activity of mitochondria from pea cotyledons during maturation of the seed
Koll�ffel C.
Planta. 1970 91(4). p.321
Embryogenesis and germination in rye (Secale cereale L.)
Hallam Neil D.
Planta. 1972 104(2). p.157
Protein accumulation in developing endosperm of a high‐protein line of Triticum dicoccoides
PARKER MARY L.
Plant, Cell & Environment. 1982 5(1). p.37
Ultrastructural observations of cotyledons in dry and developing seeds of round and wrinkled lines ofPisum
Horowitz Jeannine
Micron and Microscopica Acta. 1983 14(3). p.207
The Plant Cell (1980)
LOTT JOHN N.A.
Protein bodies, lipid layers and amyloplasts in freeze-etched pea cotyledons
Swift J. G., Buttrose M. S.
Planta. 1973 109(1). p.61
A review of recalcitrant seed physiology in relation to desiccation-tolerance mechanisms
Pammenter N. W., Berjak Patricia
Seed Science Research. 1999 9(1). p.13
Temporal and spatial regulation of pectic (1→4)‐β‐D‐galactan in cell walls of developing pea cotyledons: implications for mechanical properties
McCartney Lesley, Ormerod Andrew P., Gidley Michael J., Knox J. Paul
The Plant Journal. 2000 22(2). p.105
The effect of different alleles at the r locus on the synthesis of seed storage proteins in Pisum sativum
Turner Simon R., Barratt D. H. Paul, Casey Rod
Plant Molecular Biology. 1990 14(5). p.793
The Biochemistry of Plants (1988)
REES T.AP
Isolation and Characterization of Protein Bodies of Vicia faba Seeds
Weber Ernst, Manteuffel Renate, Neumann Dieter
Biochemie und Physiologie der Pflanzen. 1978 172(6). p.597
Seed biology of Potamogeton nodosus Poir
Kapoor Tripat, Vijayaraghavan M.R.
Aquatic Botany. 1991 40(3). p.261
The activity pattern and gene expression profile of aldehyde oxidase during the development of Pisum sativum seeds
Zdunek-Zastocka Edyta
Plant Science. 2010 179(5). p.543
The localization of enzymes in the cotyledons of Pisum arvense L. during germination
Flinn A. M., Smith D. L.
Planta. 1967 75(1). p.10
Ultrastructural aspects of reserve protein deposition during cotyledonary cell development in Lupinus albus
Davey J.E., van Staden J.
Zeitschrift für Pflanzenphysiologie. 1978 89(3). p.259
Immunocytochemical localization of concanavalin A in developing jack-bean cotyledons
Herman Eliot M., Shannon Leland M.
Planta. 1984 161(2). p.97
Histology and histochemistry of the cotyledons of pisum arvense L. during germination
Smith D. L., Flinn A. M.
Planta. 1967 74(1). p.72
Protein bodies, storage organelles in plant seeds
Weber E., Neumann D.
Biochemie und Physiologie der Pflanzen. 1980 175(4). p.279
Plant Carbohydrates I (1982)
Selvendran R. R., O’Neill M. A.
ULTRASTRUCTURAL CHANGES ASSOCIATED WITH UTILIZATION OF METABOLITE RESERVES AND TRICHOME DIFFERENTIATION IN THE PROTOCORM OF VANDA
Ricardo Manuel J., Alvarez Marvin R.
American Journal of Botany. 1971 58(3). p.229
Traffic and assembly of concanavalin A
Bowles Dianna J, Pappin Darryl J
Trends in Biochemical Sciences. 1988 13(2). p.60
Germination Control. Metabolism, and Pathology (1972)
Abdul-Baki Aref A., Anderson James D.
Antisense‐inhibition of ADP‐glucose pyrophosphorylase in developing seeds of Vicia narbonensis moderately decreases starch but increases protein content and affects seed maturation
Weber Hans, Rolletschek Hardy, Heim Ute, Golombek Sabine, Gubatz Sabine, Wobus Ulrich
The Plant Journal. 2000 24(1). p.33
Seasonal changes in the ultrastructure of cambium ofFagus sylvatica L.
Farooqui Parveen, Robards A W
Proceedings / Indian Academy of Sciences. 1979 88(6). p.463
CHLOROPLAST DEVELOPMENT IN PRIMARY LEAVES OF PHASEOLUS VULGARIS
Whatley J. M.
New Phytologist. 1974 73(6). p.1097
Protein accumulation in developing endosperm of a high-protein line of Triticum dicoccoides
PARKER MARY L.
Plant, Cell and Environment. 1982 5(1). p.37
Changes in the Subcellular Organization of Endosperm and Radicle Cells of Picea abies during Germination
Simola Liisa Kaarina
Zeitschrift für Pflanzenphysiologie. 1976 78(1). p.41
Phytochrom‐gesteuerte Entwicklung von Zellorganellen (Plastiden, Microbodies, Mitochondrien)
Schopfer P., Bajracharya D., Falk H., Thien W.
Berichte der Deutschen Botanischen Gesellschaft. 1975 88(2). p.245
Cytokinin Content of Pea Seeds during their Growth and Development
Burrows W. J., Carr D. J.
Physiologia Plantarum. 1970 23(6). p.1064
A new preparative technique for studying dry seeds of Pisum sativum with the aid of transmission electron microscopy
Horowitz Jeannine
Micron (1969). 1981 12(2). p.139
Biosynthesis, Accumulation and Catabolism of Reserve Proteins in Legume Seeds
Chrispeels Maarten J., Bollini Roberto, Harris Nick
Berichte der Deutschen Botanischen Gesellschaft. 1979 92(1). p.535
The endoplasmic reticulum of mung-bean cotyledons: Quantitative morphology of cisternal and tubular ER during seedling growth
Harris Nick, Chrispeels Maarten J.
Planta. 1980 148(3). p.293
The Pea Crop (1985)
WANG TREVOR L., SPONSEL VALERIE M.
The origin of protein bodies in developing soybean cotyledons: a proposal
Yoo Bong Y., Chrispeels Maarten J.
Protoplasma. 1980 103(2). p.201
Plant Physiology (1983)
HUFFAKER R.C.
Effect of gervital in attenuating hepatotoxicity caused by methotrexate or azathioprine in adult albino rats
Abdul-Hamid Manal, Abdel-Reheim Eman Salah, Hegazy Walaa, Allam Ahmed, Othman Sarah I., Alwaele Maha Abdulla, Abdel-Kawi Samraa Hussein
Environmental Science and Pollution Research. 2022 29(31). p.46788
Plant Proteins (1977)
NORTON G., HARRIS J.F., TOMLINSON A.
Subcellular Organization of Developing Embryos of Bidens cernua
SIMOLA LIISA KAARINA
Physiologia Plantarum. 1971 25(1). p.98
A cotyledon slice system for the electron autoradiographic study of the synthesis and intracellular transport of the seed storage protein of Vicia faba
Bailey C. J., Cobb A., Boulter D.
Planta. 1970 95(2). p.103
Plant Proteins (1977)
YARWOOD A.
Immunocytochemical evidence for the involvement of golgi apparatus in the deposition of seed lectin ofBauhinia purpurea (Leguminosae)
Herman E. M., Shannon L. M.
Protoplasma. 1984 121(3). p.163
The New Frontiers in Plant Biochemistry (1983)
Asahi Tadashi, Maeshima Masayoshi
Effect of maturity on carbohydrate changes in sugar snap pea pods during storage
Basterrechea M., Hicks J.R.
Scientia Horticulturae. 1991 48(1-2). p.1
Nucleic Acids and Protein Synthesis in Plants (1977)
Leaver C. J., Pope P. K.
Viability of Seeds (1972)
Thomas H.
Seeds (1985)
Bewley J. Derek, Black Michael
Photosynthetic activity of chloroembryos of a few selected tropical plants
ANTOSZEWSKI R., DABYDEEN S., LALLA A.
Plant, Cell & Environment. 1989 12(7). p.759
The formation of intercellular spaces in the cotyledons of developing and germinating pea seeds
Koll�ffel C., Linssen P. W. T.
Protoplasma. 1984 120(1-2). p.12
Periodate-acid treatment of sections permits on-grid immunogold localization of pea seed vicilin in ER and Golgi
Craig Stuart, Goodchild D. J.
Protoplasma. 1984 122(1-2). p.35
Sucrose transport into developing seeds of Pisum sativum L.
Tegeder Mechthild, Wang Xin‐Ding, Frommer Wolf B.., Offler Christina E.., Patrick John W..
The Plant Journal. 1999 18(2). p.151
Characteristics of plastids responsible for starch synthesis in developing pea embryos
Smith Alison M., Quinton-Tulloch Joanne, Denyer Kay
Planta. 1990 180(4). p.517
Membrane integrity and oxidative properties of mitochondria isolated from imbibing pea seeds after priming or accelerated ageing
Benamar Abdelilah, Tallon Christelle, Macherel David
Seed Science Research. 2003 13(1). p.35
THE HISTOCHEMICAL LOCALIZATION OF DEHYDROGENASES IN THE COTYLEDONS OF PISUM SATIVUM L. DURING GERMINATION
Kollöffel C.
Acta Botanica Neerlandica. 1969 18(3). p.406
Seed development in peas: knowing your three ‘r's’ (or four, or five)
Wang T. L., Hedley C. L.
Seed Science Research. 1991 1(1). p.3
The effect of time of harvest on the viability and pre‐emergence mortality in soil of pea (Pisutn sativum L.) seeds
MATTHEWS S.
Annals of Applied Biology. 1973 73(2). p.211
Proteins and Nucleic Acids (1981)
LARKINS BRIAN A.
Laboratory simulations of the transformation of peas as a result of heating: the change of the molecular composition by DTMS
Braadbaart F, Boon J.J, van der Horst J, van Bergen P.F
Journal of Analytical and Applied Pyrolysis. 2004 71(2). p.997
BIOCHEMISTRY OF PROTEIN SYNTHESIS IN PLANTS
BOULTER D., ELLIS R. J., YARWOOD A.
Biological Reviews. 1972 47(1). p.113
Lipid Metabolism in Dehydrating Peanut Kernels
MOHAPATRA SUBHAS C., PATTEE HAROLD E.
Physiologia Plantarum. 1973 28(2). p.320
Protection of polyribosomes by attachment to membranes and by diethylpyrocarbonate during their extraction from Vicia faba
Lonsdale D.M., Boulter D.
Phytochemistry. 1973 12(1). p.39
Stärke‐ und Amylosesynthese in Samen von Mark‐ und Futtererbsen
Haeder H. E.
Journal of Agronomy and Crop Science. 1989 163(4). p.217
Fine structural observations of embryo development inPelargonium XHortorum bailey: with normal and mutant plastids
Khera Paramjit K., Tilney-Bassett R. A. E.
Protoplasma. 1976 88(1). p.7
STARCH GRANULE FORMATION IN DEVELOPING SEEDS OF PISUM SATIVUM L.: EFFECT OF GENOTYPE
Boyer C. D.
American Journal of Botany. 1981 68(5). p.659
The major albumin protein from pea (Pisum sativum L.)
Harris N., Croy R. R. D.
Planta. 1985 165(4). p.522
Impact of gervital against histopathological, ultrastructural, and biochemical alterations caused by methotrexate or azathioprine in albino rat testis
Abdul-Hamid Manal, Abdel-Reheim Eman S., Hegazy Walaa, Allam Ahmed A., Othman Sarah I., ALqhtani Haifa, Abdel-Kawi Samraa H.
Environmental Science and Pollution Research. 2022 30(8). p.21914
ANATOMY, HISTOCHEMISTRY AND CYTOLOGY OF DORMANT AND STRATIFIED APPLE EMBRYOS
DAWIDOWICZ‐GRZEGORZEWSKA ALINA, LEWAK ST.
New Phytologist. 1978 81(1). p.99
Advances in Botanical Research Volume 9 (1981)
Boulter D.
Developmental changes in the subcellular structure of the seeds of Atropa belladonna
Simola Liisa Kaarina
Nordic Journal of Botany. 1987 7(1). p.67
Photomorphogenesis (1983)
Schopfer P., Apel K.
Commentaries in Plant Science (1981)
SPENCER DONALD, HIGGINS T.J.V.
Peas with zero shelling edible pods: A review
Ram Hanuman, Hedau Nirmal K., Chaudhari Ganesh V., Kant Lakshmi
Scientia Horticulturae. 2021 288 p.110333
CELL FINE STRUCTURE OF DEVELOPING LIMA BEAN SEEDS RELATED TO SEED DESICCATION
Klein Shimon, Pollock Bruce M.
American Journal of Botany. 1968 55(6Part1). p.658
NUTRIENT COMPOSITION OF BEACH PEA (LATHYRUS MARITIMUS L.) SEEDS AND POD SHELLS AT VARIOUS STAGES OF MATURITY
CHAVAN U.D., SHAHIDI F., BAL A.K., McKENZIE D.B.
Journal of Food Biochemistry. 1999 23(3). p.323
The Pea Crop (1985)
HEDLEY C.L., SMITH C.M.
Changing protein synthetic machinery during development of seeds of vicia faba
Payne E.S., Brownrigg A., Yarwood A., Boulter D.
Phytochemistry. 1971 10(10). p.2299
Physiological Plant Ecology II (1982)
Koller D., Hadas A.
Nitrogen and Carbon Metabolism (1981)
Miflin B. J., Shewry P. R.
Freeze-etch studies of protein bodies in wheat scutellum
Swift J.G., Buttrose M.S.
Journal of Ultrastructure Research. 1972 40(3-4). p.378
Water content, adenylate kinase, and mitochondria drive adenylate balance in dehydrating and imbibing seeds
Raveneau Marie-Paule, Benamar Abdelilah, Macherel David
Journal of Experimental Botany. 2017 68(13). p.3501
Dry matter accumulation into zygotic seed; a model and its application to artificial seeds
Le Deunff Yvon, Loiseau Jacques
Seed Science Research. 1994 4(2). p.89
Tissue-Specific Regulation of Gibberellin Biosynthesis in Developing Pea Seeds    
Nadeau Courtney D., Ozga Jocelyn A., Kurepin Leonid V., Jin Alena, Pharis Richard P., Reinecke Dennis M.
Plant Physiology. 2011 156(2). p.897
An analysis of seed development inPisum sativum L.
Corke Fiona M. K., Hedley C. L., Wang T. L.
Protoplasma. 1990 155(1-3). p.127
THE ULTRASTRUCTURE OF DRY AND IMBIBED COTYLEDONS OF SOYBEAN
Webster Barbara D., Leopold A. Carl
American Journal of Botany. 1977 64(10). p.1286
Plant Proteins (1977)
BRIARTY L.G.
Temperature effects on imbibition, germination and respiration of grain sorghum seeds
Meyers S.P., Nelson C.J., Horrocks R.D.
Field Crops Research. 1984 8 p.135
Immunocytochemical localization of reserve protein in the endoplasmic reticulum of developing bean (Phaseolus vulgaris) cotyledons
Baumgartner Bruno, Tokuyasu K. T., Chrispeels Maarten J.
Planta. 1980 150(5). p.419
Abrasive milling: A method to pre-fractionate testa and embryonic axis from yellow pea
Möller Anna Cäcilie, van der Padt Albert, van der Goot Atze Jan
LWT. 2021 151 p.112087
Heterologous Expression of Legumin Gene in E. coli Isolated from cDNA Clones of Immature Seeds of Pigeonpea (Cajanus cajan L.)
Gupta Subodh, Mishra Avinash, Verma A. K., Pandey Ruchi, Chand Laxmi
Applied Biochemistry and Biotechnology. 2009 157(3). p.377
The effect of elevated temperatures and their duration on the incidence of hollow heart in pea seeds
HALLIGAN E. A.
Annals of Applied Biology. 1986 109(3). p.619
Abstract PDF (18.4 MB) Export Citation

Share

Share on Facebook Share on Twitter Share on LinkedIn Share via Email