
Listing of Useful Plants of the World
NOTICE: Information on the background to this Listing is available. The analysis of numbers of papers/mentions over time was completed in 1997, using the Agricola database (1970-1996). Hard copies of the Listing (553 pages; over 4200 new crops listed with the analyses of numbers of papers over time included) are available from the publisher, Dr Rob Fletcher; see Advice on Publications Available.
The references listed below are from the Biological Abstracts database (1988-2000) and are courtesy of SilverPlatter Information. For more information re Silverplatter, go to www.silverplatter.com.
Lupinus luteus
Analysis of numbers of papers/mentions over time
(Agricola database 1970-1996):|
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Source: AGRICOLA database (1970-1996)
Common Name(s):
yellow lupin syn lupin jaune syn tremoco amarelo syn european yellow lupineReferences
(Biological Abstracts 1988-2000):[
These references are from the Biological Abstracts database and are courtesy of SilverPlatter Information. For more information re SilverPlatter, go to www.silverplatter.com. References are listed alphabetically by author within years, with most recent references first; addresses of author(s) have been included when available. To search within this page, we suggest using Find in Page, within the Edit menu of the Web Browser.]Abusamhadneh, E., N. E. McDonald, et al. (2000). Isolation and characterization of adenosine nucleosidase from yellow lupin (Lupinus luteus). Plant Science Shannon. April 153(1): 25-32. {a} Department of Chemistry, Middle Tennessee State University (MTSU), Murfreesboro, TN, 37132, USA
Bolland, M. D. A., M. W. Sweetingham, et al. (2000). Effect of applied phosphorus on the growth of Lupinus luteus, L. angustifolius and L. albus in acidic soils in the south-west of Western Australia. Australian Journal of Experimental Agriculture 40(1): 79-92. {a} Agriculture Western Australia, Bunbury, WA, 6231, Australia
Davies, C. L., D. W. Turner, et al. (2000). Yellow lupin (Lupinus luteus) tolerates waterlogging better than narrow-leafed lupin (L. angustifolius). III. Comparison under field conditions. Australian Journal of Agricultural Research. [print] 51(6): 721-727. {a} Plant Sciences, Faculty of Agriculture, The University of Western Australia, Nedlands, WA, 6907, Australia
Davies, C. L., D. W. Turner, et al. (2000). Yellow lupin (Lupinus luteus) tolerates waterlogging better than narrow-leafed lupin (L. angustifolius). II. Leaf gas exchange, plant water status, and nitrogen accumulation. Australian Journal of Agricultural Research. [print] 51(6): 711-719. {a} Plant Sciences, Faculty of Agriculture, The University of Western Australia, Nedlands, WA, 6907, Australia
Davies, C. L., D. W. Turner, et al. (2000). Yellow lupin (Lupinus luteus) tolerates waterlogging better than narrow-leafed lupin (L. angustifolius). I. Shoot and root growth in a controlled environment. Australian Journal of Agricultural Research. [print] 51(6): 701-709. {a} Plant Sciences, Faculty of Agriculture, The University of Western Australia, Nedlands, WA, 6907, Australia
Davies, C. L., D. W. Turner, et al. (2000). Yellow lupin (Lupinus luteus) tolerates waterlogging better than narrow-leafed lupin (L. angustifolius). IV. Root genotype is more important than shoot genotype. Australian Journal of Agricultural Research. [print] 51(6): 729-736. {a} Plant Sciences, Faculty of Agriculture, The University of Western Australia, Nedlands, WA, 6907, Australia
Gorecka, D., S. E. Lampart, et al. (2000). Composition of fractional and functional properties of dietary fiber of lupines (L. luteus and L. albus). Nahrung . [print] August 44(4): 229-232. {a} Department of Human Nutrition Technology, Agricultural University Poznan, Wojska Polskiego Str. 31, PL-60-637, Poznan, Poland
Jelenska, J., J. Deckert, et al. (2000). Mitotic B-type cyclins are differentially regulated by phytohormones and during yellow lupine nodule development. Plant Science Shannon. Jan. 150(1): 29-39. {a} Institute of Bioorganic Chemistry, Polish Academy of Sciences, Noskowskiego 12/14, 61-704, Poznan, Poland
Karlowski, W. M., P. M. Strozycki, et al. (2000). Characterization and expression analysis of the yellow lupin (Lupinus luteus L.) gene coding for nodule specific proline-rich protein. Acta Biochimica Polonica. [print] 47(2): 371-383. {a} Institute of Bioorganic Chemistry, Polish Academy of Sciences, Z. Noskowskiego 12/14, 61-704, Poznan, Poland
Krzyzaniak, A., M. Siatecka, et al. (2000). Specific induction of Z-DNA conformation by a nuclear localization signal peptide of lupin glutaminyl tRNA synthetase. Molecular Biology Reports. [print] March 27(1): 51-54. {a} Institute of Bioorganic Chemistry, Polish Academy of Sciences, Noskowskiego 12, 61-704, Poznan, Poland
Li, H., S. J. Wylie, et al. (2000). Transgenic yellow lupin (Lupinus luteus). Plant Cell Reports. [print] May 19(6): 634-637. {a} School of Biological Sciences and Biotechnology, Division of Science and Engineering, Western Australian State Agricultural Biotechnology Centre (SABC) and Centre for Legumes in Mediterranean Agriculture (CLIMA), Murdoch University, Perth, WA, 6150, Australia
Liu, A., S. T. J. Ridsdill, et al. (2000). Effect of seedling damage by redlegged earth mite, Halotydeus destructor, on subsequent growth and development of yellow lupin, Lupinus luteus, in the glasshouse. Australian Journal of Agricultural Research 51(1): 113-118. {a} Co-operative Research Centre for Legumes in Mediterranean Agriculture, University of Western Australia, Nedlands, WA, 6907, Australia
Madej, D. B., M. Nawrot, et al. (2000). Structure of alpha-sarcin domain of Lupinus luteus. Journal of Plant Physiology. [print] April 156(4): 567-569. {a} Institute of Bioorganic Chemistry Polish Academy of Sciences, Noskowskiego 12/14, 61-704, Poznan, Poland
Olczak, M., M. Kobialka, et al. (2000). Characterization of diphosphonucleotide phosphatase/phosphodiesterase from yellow lupin (Lupinus luteus) seeds. Biochimica et Biophysica Acta. [print] 23(2): 239-247. {a} Institute of Biochemistry and Molecular Biology, Wroclaw University, Tamka 2, 50-137, Wroclaw, Poland
Peiter, E., F. Yan, et al. (2000). Are mineral nutrients a critical factor for lime intolerance of lupins? Journal of Plant Nutrition. May 23(5): 617-635. {a} Institute of Plant Nutrition, Justus Liebig University, Suedanlage 6, D-35390, Giessen, Germany
Skene, K. R. and W. M. James (2000). A comparison of the effects of auxin on cluster root initiation and development in Grevillea robusta Cunn. ex R. Br. (Proteaceae) and in the genus Lupinus (Leguminosae). Plant and Soil. [print] 219(1-2): 221-229. {a} Department of Biological Sciences, University of Dundee, Dundee, Scotland, DD1 4HN, UK
Strozycki, P. M., W. M. Karlowski, et al. (2000). Lupine leghemoglobin I: Expression in transgenic Lotus and tobacco tissues. Molecular and General Genetics. March 263(2): 173-182. {a} Institute of Bioorganic Chemistry, Polish Academy of Sciences, Noskowskiego 12/14, 61-704, Poznan, Poland
Swiecicki, W., J. Rybczynski, et al. (2000). Domestication and genetics of the yellow lupin (Lupinus luteus L.) and the biotechnological improvement of lupins. Journal of Applied Genetics. [print] 41(1): 11-34. {a} Institute of Plant Genetics, Polish Academy of Sciences, ul. Strzeszynska 34, 60-479, Poznan, Poland
Trapero, C. A., T. A. Rodriguez, et al. (2000). Lupins, a new host of Phytophthora erythroseptica. Plant Disease. April 84(4): 488. {a} Departamento de Agronomia, ET-SIAM, Universidad de Cordoba, Apartado 3048, 14080, Cordoba, Spain
Wang, S. F., A. Y. Liu, et al. (2000). Role of alkaloids in resistance of yellow lupin to red-legged earth mite Halotydeus destructor. Journal of Chemical Ecology. Feb. 26(2): 429-441. {a} Cooperative Research Centre for Legumes in Mediterranean Agriculture, University of Western Australia, Nedlands, WA, 6907, Australia
Zavodnik, L. B., I. B. Zavodnik, et al. (2000). Hypochlorous acid-induced lysis of human erythrocytes. Inhibition of cellular damage by the isoflavonoid genistein-8-C-glucoside. Biochemistry Moscow. [print] August 65(8): 946-951. {a} Institute of Biochemistry, National Academy of Sciences of Belarus, Grodno, 230017, Belarus
Andreeva, I. N., I. M. Andreev, et al. (1999). Calcium stores in symbiosomes from yellow lupin root nodules. Journal of Plant Physiology. Sept. 155(3): 357-363. {a} Timiriazev Institute of Plant Physiology, Russian Academy of Sciences, Moscow, Russia
Barbas, C., J. A. L. Garcia, et al. (1999). Separation and identification of organic acids in root exudates of Lupinus luteus by capillary zone electrophoresis. Phytochemical Analysis 10(2): 55-59. {a} Universidad San Pablo CEU, 28660-Boadilla del Monte, Madrid, Spain
Bibillo, A., M. Figlerowicz, et al. (1999). The non-enzymatic hydrolysis of oligoribonucleotides VI. The role of biogenic polyamines. Nucleic Acids Research. Oct. 27(19): 3931-3937. {a} Institute of Bioorganic Chemistry, Polish Academy of Sciences, Noskowskiego 12/14, 61-704, Poznan, Poland
Biesiadka, J., M. M. Sikorski, et al. (1999). Crystallization and preliminary X-ray structure determination of Lupinus luteus PR10 protein. Acta Crystallographica Section D Biological Crystallography. Nov. 55(11): 1925-1927. {a} Institute of Bioorganic Chemistry, Polish Academy of Sciences, Noskowskiego 12/14, 61-704, Poznan, Poland
Franski, R., P. Bednarek, et al. (1999). Application of mass spectrometry to structural identification of flavonoid monoglycosides isolated from shoot of lupin (Lupinus luteus L.). Acta Biochimica Polonica 46(2): 459-473. {a} Z. Noskowskiego 12/14, 61-704, Poznan, Poland
Franski, R., P. Bednarek, et al. (1999). Identification of flavonoid diglycosides in yellow lupin (Lupinus luteus L.) with mass spectrometric techniques. Journal of Mass Spectrometry. May 34(5): 486-495. {a} Polish Academy of Sciences, Institute for Bioorganic Chemistry, Noskowskiego 12/14, 61-704, Poznan, Poland
Garnczarska, M. and L. Ratajczak (1999). Changes in the activity and isozyme patterns of malate dehydrogenase in root nodules of yellow lupine. Acta Physiologiae Plantarum 21(2): 149-153. {a} Department of Plant Physiology, A. Mickiewicz University, Al. Niepodleglosci 14, 61-713, Poznan, Poland
Ghrabi, G. Z., S. Puech, et al. (1999). Flow cytometry DNA assay of Mediterranean lupins. Candollea 54(1): 45-56. {a} Laboratoire de Production Fourragere, Institut National Agronomique de Tunisie, 43, avenue Charles-Nicolle, 1082, Cite Mahragene, Tunis, Tunisia
Gonzalez, A. F. and J. M. Ortiz (1999). Specificity of rhizobia nodulating Genista monspessulana and Genista linifolia in vitro and in field situations. Arid Soil Research and Rehabilitation. July Sept 13(3): 223-237. {a} Departamento de Biologia Vegetal, ETSI Agronomos, Universidad Politecnica de Madrid, Ciudad Universitaria, Madrid, 28040, Spain
Jelenska, J., Z. Zaborowska, et al. (1999). Structure of yellow lupine genes coding for mitotic cyclins. Acta Biochimica Polonica 46(3): 759-769. {a} Institute of Bioorganic Chemistry, Polish Academy of Sciences, Z. Noskowskiego 12/14, 61-704, Poznan, Poland
Kapusta, J., A. Modelska, et al. (1999). A plant-derived edible vaccine against hepatitis B virus. FASEB Journal. Oct. 13(13): 1796-1799. {a} Biotechnology Foundation Laboratories at Thomas Jefferson University, 1020 Locust St., Room M85 JAH, Philadelphia, PA, 19107, USA
Kneer, R., A. A. Poulev, et al. (1999). Characterization of the elicitor-induced biosynthesis and secretion of genistein from roots of Lupinus luteus L. Journal of Experimental Botany. Oct. 50(339): 1553-1559. {a} Biotech Center, Cook College, Rutgers University, 59 Dudley Road, Foran Hall, New Brunswick, NJ, 08901-8520, USA
Obermayer, R., W. K. Swiecicki, et al. (1999). Flow cytometric determination of genome size in some old world Lupinus species (Fabaceae). Plant Biology Stuttgart. June 1(4): 403-407. {a} Institut fuer Botanik der Universitaet Wien (Institute of Botany, University of Vienna), Rennweg 14, A-1030, Wien, Austria
Panka, D. and C. Sadowski (1999). Pathogenicity of Fusarium solani (Mart.) Sacc. isolates derived from different plants towards the yellow lupine (Lupinus luteus L.) and the French bean (Phaseolus vulgaris L.). Journal of Applied Genetics 40(4): 271-282. {a} Department of Phytopathology, University of Technology and Agriculture, ul. Ks. A. Kordeckiego 20, 85-225, Bydgoszcz, Poland
Ratajczak, W., S. Borek, et al. (1999). Variability of globulin composition in cultivars and individually tested seeds of yellow lupin (Lupinus luteus L.). Acta Physiologiae Plantarum 21(4): 413-417. {a} Department of Plant Physiology, A. Mickiewicz University, Al. Niepodleglosci 14, 61-713, Poznan, Poland
Rucinska, R., S. Waplak, et al. (1999). Free radical formation and activity of antioxidant enzymes in lupin roots exposed to lead. Plant Physiology and Biochemistry Paris. March 37(3): 187-194. {a} Laboratory of Plant Ecophysiology, The Adam Mickiewicz University, Al. Niepodleglosci 14, 61-713, Poznan, Poland
Seliga, H. (1999). Antioxidative activity of copper in root nodules of yellow lupin plants. Acta Physiologiae Plantarum 21(4): 427-431. {a} Department of Plant Physiology, Institute of Soil Science and Plant Cultivation, 24-100, Pulawy, Poland
Sikorski, M. M., J. Biesiadka, et al. (1999). Expression of genes encoding PR10 class pathogenesis-related proteins is inhibited in yellow lupine root nodules. Plant Science Shannon. Dec. 149(2): 125-137. {a} Institute of Bioorganic Chemistry, Polish Academy of Sciences, Noskowskiego 12/14, 61-704, Poznan, Poland
Smol, J. and T. Twardowski (1999). Properties of lupin ferritin and the regulatory mechanism of its biosynthesis. Biologia Bratislava. June 54(3): 309-313. {a} Institute of Bioorganic Chemistry, Polish Academy of Sciences, Noskowskiego 12/14, PL-61704, Poznan, Poland
Swiecicki, W., W. K. Swiecicki, et al. (1999). Lupinus X Hispanicoluteus - An interspecific hybrid of Old World lupins. Acta Societatis Botanicorum Poloniae 68(3): 217-220. {a} Plant Breeding Station, Poznan Plant Breeders, Wiatrowo, 62-100, Wagrowiec, Poland
Tang, C., M. J. Unkovich, et al. (1999). Factors affecting soil acidification under legumes. III. Acid production by N2-fixing legumes as influenced by nitrate supply. New Phytologist. Sept. 143(3): 513-521. {a} Centre for Legumes in Mediterranean Agriculture, The University of Western Australia, Nedlands, WA, 6907, Australia
Wasilewko, J. and L. Buraczewska (1999). Chemical composition including content of amino acids, minerals and alkaloids in seeds of three lupin species cultivated in Poland. Journal of Animal and Feed Sciences 8(1): 1-12. {a} Kielanowski Institute of Animal Physiology and Nutrition, Polish Academy of Sciences, 05-110, Jablonna, Poland
Wierzbicka, M. (1999). Comparison of lead tolerance in Allium cepa with other plant species. Environmental Pollution 104(1): 41-52. {a} Environ. Plant Pollution Lab., Dep. Morphogenesis, Inst. Plant Exp. Biol., Univ. Warsaw, Krakowskie Przedmiescie 26/28, 00-927 Warsaw, Poland
Zhiznevskaya, G. Y., L. I. Borodenko, et al. (1999). Electron paramagnetic resonance study of non-heme iron protein from lupine root nodules. Fiziologiya Rastenii Moscow. Sept. Oct. 46(5): 738-741.
Abreu, J. M. F. and S. A. M. Bruno (1998). Chemical composition, organic matter digestibility and gas production of nine legume grains. Animal Feed Science and Technology 70(1-2): 49-57. {a} Instituto Superior de Agronomia Tapada da Ajuda, 1399 Lisboa Codex, Portugal
Akama, K., Y. Yukawa, et al. (1998). Plant cytosolic tRNAHis possesses an exceptional C54 in the canonical TPSIC loop. Nucleic Acids Research 26(11): 2708-2714. {a} Dep. Biol. Sci., Shimane Univ., Matsue 690, Japan
Andreev, I. M., P. N. Dubrovo, et al. (1998). Calcium uptake by symbiosomes and the peribacteroid membrane vesicles isolated from yellow lupin root nodules. Journal of Plant Physiology 153(5-6): 610-614. Timiryazev Inst. Plant Physiol., Russ. Acad. Sci., Moscow, Russia
Chechetka, S. A., R. K. Bruskova, et al. (1998). Amino acid biosynthesis in tissue zones of yellow lupine nodules. Fiziologiya Rastenii Moscow. Nov. Dec. 45(6): 817-823.
Cherepneva, G. N., R. Olemueller, et al. (1998). Expression of the ribosomal protein S14 in lupin cotyledons is stimulated by cytokinin and inhibited by abscisic acid and light. Botanica Acta 111(4): 287-290. {a} Institut Allegemeine Botanik, Lehrstuhl Pflanzenphysiologie, Dornburger Str. 1590, D-07743 Jena, Germany
Dracup, M., B. Thomson, et al. (1998). Daylength responses, flowering time, and seed filling in lupins. Australian Journal of Agricultural Research 49(7): 1047-1055. {a} Agric. West. Aust., Locked Bag 4, Bentley, 6983 WA, Australia
Frencel, I. M. (1998). Report on first detection of anthracnose (Colletotrichum gloeosporioides) on Lupins in Poland. Plant Disease 82(3): 350. {a} Inst. Plant Genetics, Polish Acad. Sci., Strzeszynska 34, 60-479 Poznan, Poland
Gdala, J. (1998). Composition, properties, and nutritive value of dietary fibre of legume seeds. A review. Journal of Animal and Feed Sciences 7(2): 131-149. {a} Kielanowski Inst. Anim. Physiol. Nutr., Polish Acad. Sci., 05-110 Jablonana, Poland
Kostyuchenko, D. A., T. V. Yagovenko, et al. (1998). Comparative character of different lupine genotype in tissue culture. Sel'skokhozyaistvennaya Biologiya(5): 69-72. All-Russ. Lupine Res. Inst., p/o Michurinskoe, Bryansk 242024, Russia
Kudryavtseva, N. N., i. A. V. Sof, et al. (1998). Isolation and purification of proteins from the symbiosome membrane of yellow lupine root nodules. Plant Physiology and Biochemistry Paris 36(12): 907-911. {a} A.N. Bach Inst. Biochem., Russ. Acad. Sci., Leninski pr. 33, Moscow 117071, Russia
Kusnetsov, V., R. G. Herrmann, et al. (1998). Cytokinin stimulates and abscisic acid inhibits greening of etiolated Lupinus luteus cotyledons by affecting the expression of the light-sensitive protochlorophyllide oxidoreductase. Molecular and General Genetics 259(1): 21-28. {a} Lehrstuhl Pflanzenphysiol., Inst. Allg. Bot., Friedrich-Schiller-Univ. Jena, Dornburger Str. 159, D-07743 Jena, Germany
Lampart, S. E. and T. Jankowski (1998). The effect of processing on structural properties and functionality of lupin seed proteins. Polish Journal of Food and Nutrition Sciences 7(2): 231-239. {a} Katedra Biochem. I Anal. Zywnosci., Akad. Rolnicza, ul. Mazowiecka 48, 60-623 Poznan, Poland
Maksel, D., A. Guranowski, et al. (1998). Cloning and expression of diadenosine 5',5'''-P1,P4-tetraphosphate hydrolase from Lupinus angustifolius L. Biochemical Journal 329(2): 313-319. {a} Dep. Biochem. Mol. Biol., Univ. Melbourne, Parkville, VIC 3052, Australia
Mikolajczyk, K. and J. Barciszewski (1998). Expression of the cDNA and purification of P0 ribosomal protein from Lupinus luteus. Biochemistry and Molecular Biology International 44(1): 69-77. {a} Inst. Bioorganic Chem., Pol. Acad. Sci., Noskowskiego 12/14, 61-704 Poznan, Poland
Nawrot, M., E. Bohun, et al. (1998). Functional role of rRNAs in plant translation system tested with antisense strategy. Acta Biochimica Polonica 45(4): 1053-1066. {a} Institute of Bioorganic Chemistry, Polish Academy of Sciences, Z. Noskowskiego 12/14, 61-704, Poznan, Poland
Olczak, M. and W. Watorek (1998). Oligosaccharide and polypeptide homology of lupin (Lupinus luteus L.) acid phosphatase subunits. Archives of Biochemistry and Biophysics 360(1): 85-92. {a} Inst. Biochem. Mol. Biol., Wroclaw Univ., Tamka 2, 50-137 Wroclaw, Poland
Olczak, M. and W. Watorek (1998). Oligosaccharide and polypeptide homology of lupin (Lupinus luteus L.) acid phosphatase subunits. Archives of Biochemistry and Biophysics 360(1): 85-92. {a} Inst. Biochem. Mol. Biol., Wroclaw Univ., Tamka 2, 50-137 Wroclaw, Poland
Pienkowska, J., J. Wrzesinski, et al. (1998). A cell-free yellow lupin extract containing activities of pseudouridine 35 and 55 synthases. Acta Biochimica Polonica 45(3): 745-754. {a} Dep. Gene Expression, Poznan Univ., Miedzychodzka 5, 60-371 Poznan, Poland
Pollard, N. J., C. W. Wrigley, et al. (1998). Effective identification of grain-legume species and varieties; a comparison of five methods of analysing grain-protein composition. Plant Varieties and Seeds 11(3): 187-200. {a} CSIRO Plant Industry, Grain Quality Research Laboratory, P.O. Box 7, North Ryde NSW 1670, Australia
Ratajczak, W., W. Polcyn, et al. (1998). Changes in the activity of phosphoenolpyruvate carboxylating enzymes in germinating yellow lupin seeds. Acta Physiologiae Plantarum 20(2): 119-122. Dep. Plant Physiol., A. Mickiewicz Univ., Al. Niepodleglosci 14, 61-713 Poznan, Poland
Ratajczak, W., W. Polcyn, et al. (1998). Metabolism of amino acids in germinating yellow lupin seeds. II. Pathway of conversion of aspartate to alanine during the imbibition. Acta Physiologiae Plantarum 20(2): 123-127. Dep. Plant Physiol., A. Mickiewicz Univ., Al. Niepodleglosci 14, 61-713 Poznan, Poland
Seliga, H. (1998). Nitrogen fixation in several grain legume species with contrasting sensitivities to copper nutrition. Acta Physiologiae Plantarum 20(3): 263-267. {a} Dep. Plant Nutr. Physiol., Inst. Soil Sci. Cultiv. Plants, 24-100 Pulawy, Poland
Siatecka, M., M. Rozek, et al. (1998). Modular evolution of the Glx-tRNA synthetase family: Rooting of the evolutionary tree between the bacteria and archaea/eukarya branches. European Journal of Biochemistry 256(1): 80-87. {a} Laboratoire d'Enzymologie et Biochimie Structurales, CNRS, Avenue de la Terrasse, F-91198 Gif-sur-Yvette Cedex, France
Sierra, I., V. C. Vidal, et al. (1998). Effect of ripening stage on thiamin and riboflavin levels in lupin, pea and faba bean seeds. Zeitschrift fuer Lebensmittel Untersuchung und Forschung A 206(2): 126-129. {a} Inst. Fermentaciones Ind., CSIC, Juan de la Cierva 3, E-28006 Madrid, Spain
Tang, C., R. Y. Fang, et al. (1998). Factors affecting soil acidification under legumes: II. Effect of phosphorus supply. Australian Journal of Agricultural Research 49(4): 657-664. {a} Cent. Legumes Mediterranean Agric./Soil Sci. Plant Nutr., Univ. West. Aust., Nedlands, WA 6907, Australia
Wakeham, D. A. (1998). Larval host-plants of Artogeia rapae (L.) and Lampides boeticus (L.) on the Island of Madeira (Lepidoptera: Pieridae and Lycaenidae) in May 1998. Entomologist's Gazette 49(3): 218. {a} Mill Laine Farm, Offham, Lewes, East Sussex BN7 3QB, UK
Yamani, M. I., T. S. J. Abu, et al. (1998). Aspects of microbiological and chemical quality of Turmus, lupin seeds debittered by soaking in water. Journal of Food Protection 61(11): 1480-1483. {a} Dep. Nutr. Food Technol., Fac. Agric., Univ. Jordan, Anman, Jordan
Zayakin, V. V. and I. Y. Nam (1998). Abscisic acid-stimulated assimilated flow from lupine seed coat to the developing embryo. Fiziologiya Rastenii Moscow 45(1): 100-107. {a} Bryansk State Agric. Acad., Kokino, Bryansk obl. 243365, Russia
Andreev, I., P. Dubrovo, et al. (1997). Characterization of ATP-hydrolyzing and ATP-driven proton-translocating activities associated with the peribacteroid membrane from root nodules of Lupinus luteus L. Journal of Plant Physiology 151(5): 563-569. Timiryazev Inst. Plant Physiol., Russian Acad. Sci., Moscow, Russia
Bolland, M. D. A. (1997). Comparative phosphorus requirement of four lupin species. Journal of Plant Nutrition 20(10): 1239-1253. Agric. Western Australia, P.O. Box 1231, Bunbury, Western Australia 6231, Australia
Deckert, J., J. Jelenska, et al. (1997). Isolation and classification of a family of cyclin gene homologues in Lupinus luteus. Acta Biochimica Polonica 44(1): 37-42. {a} Lab. Plant Ecophysiology, A. Mickiewicz Univ., Niepodleglosci 14,61-713 Poznan, Poland
Domash, V. I., c. I. V. Rogul, et al. (1997). Isolation and properties of endopeptidase from seeds and leaves of yellow lupine (Lupinus luteus L.). Vyestsi Akademii Navuk Byelarusi Syeryya Biyalahichnykh Navuk(2): 21-24. V. F. Kuprevich Inst. Exp. Bot., Acad. Sci. Belarus, Minsk, Belarus
Duff, R. J. and D. L. Nickrent (1997). Characterization of mitochondrial small-subunit ribosomal RNAs from holoparasitic plants. Journal of Molecular Evolution 45(6): 631-639. {a} Dep. Plant Biol., Southern Ill. Univ., Carbondale, IL 62901-6509, USA
Esnault, M. A., V. Pichereau, et al. (1997). Variability of the low molecular weight globulin, conglutin delta, within lupin species. Botanica Acta 110(2): 164-171. {a} Univ. Rennes I, Lab. Physiol. Vegetale, UMR 1853, Campus de Beaulien, F-35042 Rennes Cedex, France
Foy, C. D. (1997). Tolerances of lupin species and genotypes to acid soil and coal mine spoil. Journal of Plant Nutrition 20(9): 1095-1118. Climate Stress Lab., NRI, ARS, U.S. Dep. Agric., Beltsville, MD 20705-2350, USA
Gammar, Z. G., S. Puech, et al. (1997). Seed integument in Lupinus (Fabaceae) in Tunisia. Acta Botanica Gallica 144(1): 5-21. {a} Inst. Natl. Agron. Tunisie, Lab. Production Fourragere, 43 Ave. Charles Nicolle, 1082 Cue Mahragene, Tunis, Tunisie
Gdala, J., A. J. M. Jansman, et al. (1997). The influence of alpha-galactosidase supplementation on the ileal digestibility of lupin seed carbohydrates and dietary protein in young pigs. Animal Feed Science and Technology 67(2-3): 115-125. {a} Kielanowski Inst. Animal Physiol. Nutrition, Polish Academy Sci., 05-110 Jablonna, Poland
Giel, P. M., M. Z. Barciszewska, et al. (1997). Interaction of HIV Tat model peptides with tRNA and 5S rRNA. Acta Biochimica Polonica 44(3): 591-600. {a} Inst. Bioorganic Chem., Polish Acad. Sciences, Z. Noskowskiego 12/14, 61-704 Poznan, Poland
Gorecki, R. J., C. A. Piotrowicz, et al. (1997). Soluble sugars and flatulence-producing oligosaccharides in maturing yellow lupin (Lupinus luteus L.) seeds. Seed Science Research 7(2): 185-193. {a} Dep. Plant Physiol. Biochemistry, Olszytn Univ. Agric. Technol., Kontowo, 10-718 Olsztyn, Poland
Gorecki, R. J., C. A. I. Piotrowicz, et al. (1997). Soluble carbohydrates in desiccation tolerance of yellow lupin seeds during maturation an germination. Seed Science Research 7(2): 107-115. {a} Dep. Plant Physiol. Biochemistry, Olsztyn Univ. Agric. Technol., Kortowo, 10-718 Olsztyn, Poland
Guranowski, A., E. Starzynska, et al. (1997). Adenosine 5'-tetraphosphate phosphohydrolase from yellow lupin seeds: Purification to homogeneity and some properties. Biochemical Journal 328(1): 257-262. {a} Katedra Biochemii Biotechnol., Akad. Rolnicza, ul. Wolynska 35, 60-637 Poznan, Poland
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Golebiewski, W. M. and I. D. Spenser (1984). Deuterium NMR spectroscopy as a probe of the stereochemistry of biosynthetic reactions: The biosynthesis of lupanine and sparteine. Journal Of The American Chemical Society 106(25): 7925-7927.
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Barciszewska, M. Z., T. D. Mashkova, et al. (1049). The primary structure of lupine seed 5.8S ribosomal RNA. Biochimica Et Biophysica Acta 3: 343-345.
Pocsi, I., L. Kiss, et al. (1039). Studies on the N-acetyl-beta-D-hexosaminidase B from germinating Lupinus luteus L. seeds: I. Purification and characterization. Biochimica Et Biophysica Acta 1: 110-118.
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Tahara, S., Y. Hashidoko, et al. (1039). New 3-methoxyflavones in the roots of yellow lupine (Lupinus luteus L. cultivar Topaz). Agricultural And Biological Chemistry 51(4): 1039-1044.
Kretovich, V. L., T. I. Karyakina, et al. (1008). Nitrogen fixation and the biosynthesis of aspartic acid and alanine by bacteroids from Rhizobium lupini on various carbon sources. Doklady Akademii Nauk Sssr 291(4): 1008-1011.
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Contact: Dr Rob Fletcher, School of Agriculture and Horticulture, The University of Queensland, Gatton 4343; Telephone: 07 5460 1311 or 07 5460 1301; Facsimile: 07 5460 1112; International facsimile: 61 7 5460 1112; Email:
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