Zhang Y, Fan Z, Wang Q, Wang Z
Xishuangbanna Tropical Botanic Garden, Chinese Academy of Sciences, Kunming 650223.
Ying Yong Sheng Tai Xue Bao. 2000 Oct;11(5):665-7.
The effect of NO3(-)-N and NH4(+)-N and their different supply ratios on the growth of Fraxinus mandshurica seedlings was studied by sand culture in greenhouse. The highest seedling growth was obtained at a NH3(-)-N/NH4(+)-N ratio of 75/25 in nutrient solution. The growth of seedlings declined with the increasing ratio of NH4(+)-N to NO3(-)-N. Excessive NH4(+)-N inhibited root growth, and the root/shoot ratio of the seedlings significantly decreased as the NH4(+)-N/NO3(-)-N ratio was over 50%. Increasing NH4(+)-N in nutrient solution led to the decrease of net photosynthetic rate, the increase of phosphorus content in plant tissues, and the decrease of Zn and Fe contents. The pH value of cultural medium was affected markedly by nitrogen form, which was increased with increasing NO3(-)-N and decreased with increasing NH4(+)-N in nutrient solution. The pH value was up to 7.22 in the medium contained NO3(-)-N alone, while decreased to 4.20 only with NH4(+)-N.
通过温室砂培试验,研究了NO3(-)-N和NH4(+)-N及其不同供应比例对水曲柳幼苗生长的影响。在营养液中,NH3(-)-N/NH4(+)-N比例为75/25时,幼苗生长最佳。随着NH4(+)-N与NO3(-)-N比例的增加,幼苗生长下降。过量的NH4(+)-N抑制根系生长,当NH4(+)-N/NO3(-)-N比例超过50%时,幼苗的根冠比显著降低。营养液中NH4(+)-N含量增加导致净光合速率下降、植物组织中磷含量增加以及锌和铁含量降低。培养基的pH值受氮形态影响显著,随着营养液中NO3(-)-N含量增加而升高,随着NH4(+)-N含量增加而降低。仅含NO3(-)-N的培养基中pH值高达7.22,而仅含NH4(+)-N时pH值降至4.20。