Мобильная версия

Доступно журналов:

3 288

Доступно статей:

3 891 637

 

Скрыть метаданые

Автор Ito, Osamu
Автор Matsunaga, Ryoichi
Автор Rao, Theertham Pradyumna
Дата выпуска 1996
dc.description AbstractThe modern varieties of pigeonpea were domesticated from perennial wild species with a tall bushy startue (van der Maesen 1990). Although breeding efforts had been focused on the incorporation of the annual character compatible with the present cropping systems, perennial character persists in the growth habit. The growth feature related to the perennial character is represented by a low early growth vigor (Brakke and Gardner 1987). The lower net photosynthetic rate compared with that of sunflower, cotton, and other legumes at the same leaf age (Rawson and Constable 1981) may account for the slow growth. Although photosynthetic activities are controlled by many factors, including environmental, physical, and chemical factors, allocation of the fixed carbon into either starch or sucrose is one of the regulating mechanisms in photosynthetic pathways (Huber et al. 1990) which directly affects translocation of photosynthates and consequently whole plant growth.
Формат application.pdf
Издатель Taylor & Francis Group
Копирайт Copyright Taylor and Francis Group, LLC
Тема amino acids
Тема carbohydrates
Тема pigeonpea
Тема strach
Тема sucrose
Название Diurnal changes in nonstructural carbohydrates and amino acids in pigeonpea leaves
Тип research-article
DOI 10.1080/00380768.1996.10415115
Electronic ISSN 1747-0765
Print ISSN 0038-0768
Журнал Soil Science and Plant Nutrition
Том 42
Первая страница 419
Последняя страница 422
Аффилиация Ito, Osamu; International Crop Research Institute for the Semi-Arid Tropics (ICRISAT) Asia Center; Japan International Research Center for Agricultural Sciences (JIRGAS)
Аффилиация Matsunaga, Ryoichi; International Crop Research Institute for the Semi-Arid Tropics (ICRISAT) Asia Center; Japan International Research Center for Agricultural Sciences (JIRGAS)
Аффилиация Rao, Theertham Pradyumna; Japan International Research Center for Agricultural Sciences (JIRGAS)
Выпуск 2
Библиографическая ссылка Brakke, M.P. and Gardner, F.P. 1987. Juvenile growth in pigeonpea, soybean, and cowpea in relation to seed and seedling characteristics. Crop Sci., 27: 311–316.
Библиографическая ссылка Chang, W.G. 1980. Starch depletion and sugars in developing cotton leaves. Plant Physiol., 65: 844–847.
Библиографическая ссылка Chatterton, N.J. and Silvius, J.E. 1980. Photosynthate partitioning into leaf starch as affected by daily photosynthetic period duration in six species. Physiol Plant., 49: 141–144.
Библиографическая ссылка Gordon, A.J., Rule, G.J.A. and Webb, G. 1980. The relationship between sucrose and starch during dark export from leaves of uniculm barley. J. Exp. Bot., 31: 845–850.
Библиографическая ссылка Grafts-Brandner, S.J. 1991. Nonstructural carbohydrate metabolism during leaf ageing in tobacco (Nicotiana tabacum). Physiol. Plant., 82: 299–305.
Библиографическая ссылка Grange, R.I. 1984. The extent of starch turnover in mature pepper leaves in the light. Ann. Bot., 54: 289–291.
Библиографическая ссылка Huber, S.C., Huber, J.A. and Hanson, K.R. 1990. “Regulation of the partitioning of products of photosynthesis”. In Perspectives in the Biochemical and Genetic Regulation of Photosynthesis, Edited by: Zelitch, I. 85–101. New York: Wiley-Liss. In
Библиографическая ссылка Kruger, N.J., Bulpin, P.V. and ap Rees, T. 1983. The extent of starch degradation in the light in pea leaves. Planta, 157: 271–273.
Библиографическая ссылка Mauney, J.R., Guinn, G., Fry, K.E. and Hesketh, J.D. 1979. Correlation of photosynthetic carbon dioxide uptake and carbohydrate accumulation in cotton, soybean, sunflower and sorghum. Photosynthetica, 13: 260–266.
Библиографическая ссылка Nafziger, E.D. and Koller, H.R. 1976. Influence of leaf starch concentration on CO<sub>2</sub> assimilation in soybean. Plant Physiol., 57: 560–563.
Библиографическая ссылка Potter, J.R. 1980. Maintenance of high photosynthetic rates during the accumulation of high leaf starch levels in sunflower and soybean. Plant Physiol., 66: 528–531.
Библиографическая ссылка Qiu, J. and Israel, D.W. 1992. Diurnal starch accumulation and utilization in phosphorus-deficient soybean plants. Plant Physiol., 98: 316–323.
Библиографическая ссылка Rawson, H.M. and Constable, G.A. Gas exchange of pigeonpea: A comparison with other crops and a model of carbon production and its distribution within the plant. Proceedings of the International Workshop on Pigeonpeas. Edited by: Nene, Y.L. Vol. 1, pp.175–189. Patancher: International Crops Research Institute for the Semi-Arid Tropics. In
Библиографическая ссылка Schaffer, A.A., Nerson, H. and Zamski, E. 1991. Premature leaf chlorosis in cucumber associated with high starch accumulation. J. Plant Physiol., 138: 186–190.
Библиографическая ссылка Sheoran, I.S., Gupta, V.K., Laura, J.S. and Singh, R. 1991. Photosynthetic carbon fixation, translocation and metabolite levels in pigeonpea (Cajanus cajan L.) leaves exposed to excess cadmium. Ind. J. Exp. Biol., 29: 857–861.
Библиографическая ссылка Sicher, R.C., Harris, W.G., Kremer, D.F. and Chatterton, N.J. 1982. Effects of shortened day length upon translocation and starch accumulation by maize, wheat, and pangola grass leaves. Can. J. Bot., 60: 1304–1309.
Библиографическая ссылка Snell, F.D. and Snell, C.T. 1954. “Amino acids”. In Colorimetric Methods of Analysis, Vol. IV, 104–169. New York: Van Nostrand Reinhold Company. In
Библиографическая ссылка van der Maesen, L.J.G. 1990. “Pigeonpea: origin, history, evolution, and taxonomy”. In The Pigeonpea, Edited by: Nene, Y.L., Hall, S.D. and Sheila, V.K. 15–46. Wallingford, Oxford: C.A.B. International. In
Библиографическая ссылка Wise, R.R., Sparrow, D.H., Ortiz-Lopez, A. and Ort, D.R. 1991. Biochemical regulation during the mid-day decline of photosynthesis in field-grown sunflower. Plant Sci., 74: 45–52.

Скрыть метаданые