ct.\*:("Nutrition. Photosynthesis. Respiration. Metabolism")
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Purification and characterization of phytase induced in tomato roots under phosphorus-deficient conditionsLI, M; OSAKI, M; HONMA, M et al.Soil Science and Plant Nutrition (Tokyo). 1997, Vol 43, Num 1, pp 179-190, issn 0038-0768Article
Sulfur availability, Rubisco content, and photosynthetic rate of soybeanSEXTON, P. J; BATCHELOR, W. D; SHIBLES, R et al.Crop science. 1997, Vol 37, Num 6, pp 1801-1806, issn 0011-183XArticle
Nitrogen and carbon utilization in shoots and roots of nitrogen-limited PisumDUARTE, P; OSCARSON, P; TILLBERG, J.-E et al.Plant and soil. 1988, Vol 111, Num 2, pp 241-244, issn 0032-079XConference Paper
Growth medium and phosphorus supply affect cluster root formation and citrate exudation by Lupinus albus grown in a sand/solution split-root systemLIANGZUO SHU; JIANBO SHEN; RENGEL, Zed et al.Plant and soil. 2005, Vol 276, Num 1-2, pp 85-94, issn 0032-079X, 10 p.Article
Rapid incorporation of 14C of glucose into phytosiderophores in iron-deficient barley rootsKAWAI, S; MURAKAMI, T; KUWAJIMA, K et al.Soil Science and Plant Nutrition (Tokyo). 1997, Vol 43, Num 1, pp 75-84, issn 0038-0768Article
Seasonal fluctuations in fructan content and related enzyme activities in Yacon (Polymnia sonchifolia)FUKAI, K; OHNO, S; GOTO, K et al.Soil Science and Plant Nutrition (Tokyo). 1997, Vol 43, Num 1, pp 171-177, issn 0038-0768Article
Role of hydrolytic and transport functions of plasmalemma H+-ATPase in regulation of membrane transport of cations in plasmalemma preparationsMAKSIMOV, G. B; BATOV, A. YU.Soviet plant physiology. 1989, Vol 36, Num 5, pp 735-741, issn 0038-5719, 1Article
Test of a simple biochemical model for photosynthesis of maize and soybean leavesGRANT, R. F.Agricultural and forest meteorology. 1989, Vol 48, Num 1-2, pp 59-74, issn 0168-1923Article
Examination of nitrate reductase activity at the seedling stage as a predictor of the grain protein of wheat and barleyLILLO, C; HEEN, A; HEIDE, O. M et al.1988, Vol 2, Num 1, pp 45-48Article
Nitrogen cycling in plant species differing in shoot/root reduction of nitrateVAN BEUSICHEM, M. L; NELEMANS, J. A; HINNEN, M. G. J et al.Journal of plant nutrition. 1987, Vol 10, Num 9-16, pp 1723-1731, issn 0190-4167Conference Paper
Regulation and structure of isozymes of sugar phosphate metabolism in plantsSCHNARRENBERGER, C.Isozymes. 1987, Vol 16, pp 223-240, issn 0160-3787Conference Paper
Ratio of photosystem reaction centers and chlorophyll in barley leavesROZHKOVSKII, A. D; BUKHOV, N. G; VOSKRESENSKAYA, N. P et al.Doklady. Botanical sciences. 1986, Vol 289-291, pp 201-204, issn 0012-4982Article
Subunit structure of chick-pea leaf carboanhydraseGULIEV, N. M; MAMEDOV, T. G; ALIEV, D. A et al.1985, Vol 280, Num 1-6, pp 12-15Article
Chlorophyll degradation by peroxidase in parsley leavesYAMAUCHI, N; MINAMIDE, T.1985, Vol 54, Num 2, pp 265-271Article
Regulación de la acumulación de nitrógeno en el grano de trigo por el suministro y la demanda de fotosintatos = Régulation de l'accumulation d'azote dans le grain de blé, au niveau de la relation source-puits de répartition des assimilats = A study of source and sink control of nitrogen accumulation in wheat grainsPEREZ, P; MARTINEZ-CARRASCO, R.Anales de edafologia y agrobiologia. 1984, Vol 43, Num 9-10, pp 1479-1489, issn 0365-1797Article
Influence of organic and inorganic phosphorus supply on the maximum secretion of acid phosphatase by plantsYADAV, R. S; TARAFDAR, J. C.Biology and fertility of soils. 2001, Vol 34, Num 3, pp 140-143, issn 0178-2762Article
Differential regulation of sugar-sensitive sucrose synthases by hypoxia and anoxia indicate complementary transcriptional and posttranscriptional responsesYING ZENG; YONG WU; AVIGNE, W. T et al.Plant physiology (Bethesda). 1998, Vol 116, Num 4, pp 1573-1583, issn 0032-0889Article
Acid phosphatase activity in oilseed rape depending on phosphorus content in the medium and the plantFLASINSKI, S; ROGOZINSKA, J.Acta physiologiae plantarum. 1988, Vol 10, Num 1, pp 3-10, issn 0137-5881Article
Growth and canopy carbon dioxide exchange rate of spring wheat as affected by nitrogen statusMORGAN, J. A.Crop science. 1988, Vol 28, Num 1, pp 95-100, issn 0011-183XArticle
Identification of a kinase in wheat germ that phosphorylates the large subunit of initiation factor 4F1HUMPHREYS, J; BROWNING, K. S; RAVEL, J. M et al.Plant physiology (Bethesda). 1988, Vol 88, Num 2, pp 483-486, issn 0032-0889Article
Role of vacuolar alkaline pyrophosphatase of the Beta vulgaris root in the mechanism of sucrose transportSALYAEV, R. K; KATKOV, B. B.Doklady. Botanical sciences. 1987, Vol 292-294, pp 39-41, issn 0012-4982Article
Light-dependent reduction of NADP in the chloroplasts and glycolate oxidase activity during ontogenesis of spring wheats with different productivityGINS, V. K; PISKUNOVA, N. P; MUTUSKIN, A. A et al.Soviet plant physiology. 1985, Vol 32, Num 1, pp 39-44, issn 0038-5719Article
Differences in resistance of the plant photosynthetic apparatus to lengthening of the dark periodCHETVERIKOV, A. G.Soviet plant physiology. 1985, Vol 32, Num 3, pp 351-357, issn 0038-5719Article
Genetic specificity of nitrate reductase activity fluctuations in corn sproutsVORONOVA, L. P.Soviet agricultural sciences. 1985, Num 3, pp 10-14Article
Membrane-active compounds and biosynthesis of alkaloids in plantsBUZUK, G. N; LOVKOVA, M. YA; POLUDENNYI, L. V et al.Doklady. Botanical sciences. 1985, Vol 283-285, pp 83-85, issn 0012-4982Article