Jackson W A, Volk R J
Department of Soil Science, North Carolina State University, Raleigh, NC 27695-7619, USA.
New Phytol. 1992 Nov;122(3):439-446. doi: 10.1111/j.1469-8137.1992.tb00071.x.
Initial (0-1 h) net rates of nitrate and ammonium uptake from 200 μM NH NO were progressively increased as 8-d-old maize (Zea mays L.) seedlings, grown on 5 mM nitrate, were exposed to nitrogen-free solutions for up to 48 h. Further nitrogen deprivation to 72 h resulted in a decline in the nitrate uptake rate. Nitrate uptake rates of plants at all stages of nitrogen deprivation increased steadily during an 8 h exposure to 200 μM NH NO . The pattern of the response of ammonium uptake during the 8 h adaptation period was considerably different. In nitrogen-replete plants the ammonium uptake rate increased steadily, but deprivation of nitrogen for 12 h and longer resulted in complex responses in which the initial rate was followed by a decline, a subsequent increase, and another decline. The responses of the nitrate uptake system are considered to reflect a lifting of the suppressive effects of nitrate and a product of nitrate assimilation during nitrogen deprivation, a concomitant degradation of an induced component of the nitrate uptake system during that time, and reinduction of the uptake system during the adaptation period. The responses of the ammonium uptake system are considered to reflect the interplay of suppression by a product of ammonium assimilation, the accumulation of root ammonium and associated ammonium efflux, and a stimulation by ammonium of its own uptake. As a consequence of the differential responses of the two uptake systems, nitrate and ammonium uptake rates were positively correlated, largely independent, or negatively correlated as the plants progressed through the 8 h adaptation period.
以5 mM硝酸盐培养8天的玉米(Zea mays L.)幼苗,在初始阶段(0 - 1小时),将其暴露于无氮溶液中长达48小时,200 μM NH₄NO₃的硝酸盐和铵吸收净速率逐渐增加。进一步缺氮至72小时导致硝酸盐吸收速率下降。在暴露于200 μM NH₄NO₃的8小时内,处于各个缺氮阶段的植物硝酸盐吸收速率稳步增加。在8小时适应期内铵吸收的响应模式则大不相同。在氮充足的植物中,铵吸收速率稳步增加,但缺氮12小时及更长时间会导致复杂的响应,即初始速率之后先是下降,随后增加,接着又是下降。硝酸盐吸收系统的响应被认为反映了在缺氮期间硝酸盐抑制作用的解除以及硝酸盐同化的产物,同时在此期间硝酸盐吸收系统诱导成分的降解,以及适应期内吸收系统的重新诱导。铵吸收系统的响应被认为反映了铵同化产物的抑制作用、根中铵的积累及相关铵外流的相互作用,以及铵对其自身吸收的刺激作用。由于两个吸收系统的差异响应,随着植物在8小时适应期内的进展,硝酸盐和铵的吸收速率呈正相关、基本独立或负相关。