Green Thomas H, Mitchell Robert J, Gjerstad Dean H
Department of Plant and Soil Science, Alabama A &M University, Normal, AL 35762, USA.
Joseph W. Jones Ecological Research Center, Route 2, Box 2324, Newton GA 31770, USA.
New Phytol. 1994 Sep;128(1):145-152. doi: 10.1111/j.1469-8137.1994.tb03997.x.
Effects of drought on carbon and nitrogen dynamics and biomass allocation patterns of loblolly pine (Pinus taeda L.) seedlings grown under 4 different nitrogen levels were determined Nitrogen stress caused an increase in root-shoot ratio. increased Foliar and mot Starch concentration, decreased soluble sugar concentration, and decreased free amino acid concentration in well-watered seedlings. Drought cent-rally caused an increase in foliar hexoses and decreases in foliar find root starch and root hexoses. while not affecting foliar free amino acids. However, nitrogen stress arid drought interacted in affecting carbohydrate pools and seedling morphology. Foliar starch reserves in high-N seedling were rapidly metabolized under drought, white N-deficient seedling maintained similar starch concentrations throughout the drought stress cycle. After one drought cycle, the N-induced difference in root:shoot ratio was no longer significant. These results suggest that N-stressed seedlings partition a higher percentage of fixed carbon to storage, and that (his storage pool is less available For immediate Use than in seedlings grown under adequate N.
测定了干旱对在4种不同氮水平下生长的火炬松(Pinus taeda L.)幼苗碳氮动态及生物量分配模式的影响。氮胁迫导致水分充足的幼苗根冠比增加、叶片和根中淀粉浓度升高、可溶性糖浓度降低以及游离氨基酸浓度降低。干旱主要导致叶片己糖增加,叶片和根中淀粉以及根中己糖减少,而对叶片游离氨基酸没有影响。然而,氮胁迫和干旱在影响碳水化合物库和幼苗形态方面存在相互作用。高氮幼苗的叶片淀粉储备在干旱条件下迅速被代谢,而缺氮幼苗在整个干旱胁迫周期中保持相似的淀粉浓度。经过一个干旱周期后,氮诱导的根冠比差异不再显著。这些结果表明,受氮胁迫的幼苗将更高比例的固定碳分配到储存中,并且与在充足氮条件下生长的幼苗相比,这个储存库的碳更难立即用于其他用途。