UPTAKE OF AMMONIUM AND NITRATE BY CAROB (CERATONIA-SILIQUA) AS AFFECTED BY ROOT TEMPERATURE AND INHIBITORS

被引:0
|
作者
CRUZ, C
LIPS, SH
MARTINSLOUCAO, MA
机构
[1] UNIV LISBON,FAC CIENCIAS,DEPT BIOL VEGETAL,P-1700 LISBON,PORTUGAL
[2] BEN GURION UNIV NEGEV,J BLAUSTEIN INST DESERT RES,CTR DESERT AGROBIOL,IL-84990 SEDE BOQER,ISRAEL
[3] BEN GURION UNIV NEGEV,FAC NAT SCI,DEPT LIFE SCI,IL-84990 SEDE BOQER,ISRAEL
关键词
AMMONIUM; CAROB; CERATONIA SILIQUA; ION UPTAKE RATE; NITRATE; ROOT TEMPERATURE;
D O I
暂无
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Seedlings of carob (Ceratonia siliqua L. cv. Mulata) were grown in nutrient solution culture for 5 weeks, with or without nitrogen at different root temperatures (10, 16, 22, 30, 35 or 40 degrees C) and with the air temperature kept between 20 and 24 degrees C. The nitrogen was given as either ammonium or nitrate. At all root temperatures studied, nitrogen-depleted plants developed higher net uptake rates for nitrogen than plants grown in the presence of nitrogen. Temperature affected the kinetic parameters of nitrate uptake more than those of ammonium uptake. With increasing root temperature, the K-m of ammonium uptake decreased, but to a lesser extent than the K-m for nitrate. The increase in V-max of ammonium uptake with temperature was also less noticeable than that for nitrate uptake. Ammonium and nitrate uptakes were inhibited in a similar way by respiratory or protein synthesis inhibitors. It may be noted that ammonium uptake in the presence of inhibitors at 40 degrees C was higher than uptake at 10 degrees C without inhibitors. Some similarities between the transport mechanisms for nitrate and ammonium are underlined in the present work. Components of both transport systems displayed saturation kinetics and depended on protein synthesis and energy. The following components of nitrate uptake were distinguished: (a) a passive net influx into the apparent free space; (b) a constitutive active uptake and (c) active uptake dependent on protein synthesis. We may similarly define three ammonium uptake systems: (a) a passive influx into the apparent free space; (b) passive diffusion uptake at high temperature and (c) active uptake dependent on protein synthesis. The possible role of the ratio between mechanism (c) and mechanism (b) as determinant of ammonium sensitivity is discussed.
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页码:532 / 543
页数:12
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