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Водный обмен растений - Жолкепич В.Н.

Жолкепич В.Н. Водный обмен растений — М.: Наука , 1989. — 256 c.
ISBN 5-02-003977-2
Скачать (прямая ссылка): vodniyobmenrasteniy1989.pdf
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351. Milburn J. A. An ideal viscous flow porometer//J. Exp. Bot. 1979. Vol. 30. P. 1021—1034.
352. Гуляев Б. М., Шведова О. Е. Устьичный порометр и его использование для оценки состояния листового аппарата // Физиология и биохимия культ, растений. 1984. Т. 16, № 5. С. 504—506.
353. Fiscus Е, L., Wullschleger S. D., Duke Н. R. Integrated stomatal opening as an indicator of water stress in Zea // Crop Sci. 1984. Vol. 24, N 2. P. 245—249.
354. Sheriff D. W., McGruddy E. Changes in leaf viscous flow resistance following excision, measured with a new porometer // J. Exp. Bot. 1976. Vol. 27. P. 1371 — 1375.
355. Moreshei S., Yocum C. S. A condensation type porometer for field use // Plant Physiol. 1972. Vol. 49. P. 944—949.
356. Penman H. L. Natural evaporation form open water, bare soil and grass //Proc. Roy. Soc. London. A. 1948. Vol. 193. P. 120—145.
357. Monteith J. L. Evaporation and environment//Symp. Soc. Exp. Biol.
1965. Vol. 29. P. 205—234.
358. Boyer J. S. Water transport in plants: Mechanism of apparent changes in resistance during absorption//Planta. 1974. Bd. 117. S. 187—207.
359. Crowdy S. H., Tanton J. W. Water pathways in higher plants. 1. Free space in wheat leaves//J. Exp. Bot. 1970. Vol. 21. P. 102—111.
360. Pizzolato T. D., Burbano J. L., Berlin J. D. et al. An electron microscope
study of the path of water movement in transpiring leaves of cotton
(Gossypium hirsutum L.)//Ibid. 1976. Vol. 27. P. 145—161.
361. Weatherley P. E. The pathway of water movement across the root cortex and leaf mesophyll of transpiring plants//The water relations of plants. N. Y.: Wiley, 1963. P. 85—100.
362. Tyree М. T„ Cruiziat P., Benis M. et al. The kinetics of rehydratation
of detached sunflower leaves from different initial water deficits//
Plant Cell Environ. 1981. Vol. 4. P. 309—317.
363. Boyer J. S. Regulation of water movement in whole plants//Symp. Soc. Exp. Biol. 1977. Vol. 31. P. 455—470.
364. Meidner H. Water supply, evaporation and vapour diffusion in leaves // J. Exp. Bot. 1975. Vol. 26. P. 666—673.
365. Maier-Maercker U. “Perislomatal transpiration" and stomatal movement:
A controversial view. I. Additional proof of peristomatal transpiration by hydrophotography and a comprehensive discussion in the light of present results //Ztschr. Pflanzenphysiol. 1979. Bd. 91. S. 25—43.
366. Maier-Maercker U. “Peristomatal transpiration” and slomatal movement:
A controversial view. II. Observation of stomatal movements under different conditions on water supply and demand//Ibid. S. 157—172.
367. Maier-Maercker U. “Peristomatal transpiration” and stomatal movement:
A controversial view. III. Visible effects of peristomatal transpiration on
the epidermis // Ibid. S. 225—238.
368. Maier-Maercker U. “Peristomatal transpiration” and stomatal movement: A controversial view. IV. Ion accumulation by peristomatal transpiration//Ibid. S. 239—254.
368. Maier-Maercker U. “Peristomatal transpiration” and stomatal movement: A controversial view. V. Rubidium-86 in the epidermal transpiration stream//Ibid. 1981. Bd. 101. S. 447—459.
370. Maier-Maercker U. “Peristomatal transpiration” and stomatal movement: A controversial view. VI. Lanthanum deposits in the epidermal apo-plast // Ibid. 1980. Bd. 100. S. 121—130.
371. Maier-Maercker U. “Peristomatal transpiration” and stomata 1 movement:
A controversial view. VII. Correlation of stomatal aperture with eva-
porative demand and water uptake through the roots//Ibid. 1981. Bd. 102, N 5. S. 397—413.
372. Maier-Maercker U. “Peristomatal transpiration” and stomatal movement:
A controversial view. VIII. Stomatal control by conditions of water
sypply and peristomated transpiration//Ibid. Bd. 103, N 1. S. 15—25.
373. Maier-Maercker U. A critical assessment of the role of potassium and osmolarity in stomatal opening//J. Exp. Bot. 1983. Vol. 34, N 144. P. 811—824.
374. Appleby R. F„ Davies W. J. A possible evaporation site in the guard cell wall and the influence of leaf structure on the humidity response by stomata of woody plants//Oecologia. 1982. Vol. 56. P. 36—40.
375. Appleby R. F., Davies W. J. The structure and orientation of guard cells in plants showing stomatal responses to changing V-P.D. //Ann. Bot. N. S. 1983. Vol. 52. P. 459—468.
376. Barrs H. D. Cyclic variations in stomatal aperture, transpiration and leaf water potential under constant environmental conditions//Annu. Rev. Plant Physiol. 1971. Vol. 22. P. 223—236.
377. Boresch K- Zur graphischen Registrierung der Transpiration von Blat-tern // Planta. 1933. Bd. 20. S. 648—669.
378. Baker D. A., Moorby J. The transport of sugar, water and ions into
developing potato tubers//Ann. Bot. 1969. Vol. 33, P. 729—741.
379. Apel I. P. Ober rhythmish verlaufende Anderunqen in der C02-Aufnahmc von Blattern//Ber. dt. bot. Ges. 1967. Bd. 80. S. 3—9.
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