首页> 外文期刊>Botany >Low soil temperature reduces the positive effects of high nutrient supply on the growth and biomass of white birch seedlings in ambient and elevated carbon dioxide concentrations
【24h】

Low soil temperature reduces the positive effects of high nutrient supply on the growth and biomass of white birch seedlings in ambient and elevated carbon dioxide concentrations

机译:较低的土壤温度降低了高养分供应对环境和二氧化碳浓度升高对白桦幼苗生长和生物量的积极影响

获取原文
获取原文并翻译 | 示例
           

摘要

To investigate the interactive effects of soil temperature (T-soil) and nutrient supply on the responses of growth and biomass of white birch (Betula papyrifera Marsh.) to atmospheric carbon dioxide concentration ([CO2]), seedlings were grown under two [CO2] (360 and 720 mu mol-mol(-1)), three T-soil (5, 15, and 25 degrees C initially, increased to 7, 17, and 27 degrees C one month later), and three nutrient regimes (Low: N-P-K = 4:1.8:3.3 mg.L-1 Intermediate: N-P-K = 80:35:66 mg.L-1; and High: N-P-K = 160:70:132 mg.L-1) for 4 months. Low T-soil reduced leaf and total biomass at high nutrient supply and root biomass at intermediate and high nutrient supply. There were significant three-factor interactive effects on root collar diameter (RCD), stem biomass, and leaf mass ratio. Low T-soil reduced RCD at high nutrient supply and stem biomass at intermediate and high nutrient supply in elevated [CO2] while intermediate and high T-soil enhanced them. Values of leaf mass ratio were lowest at low T-soil and low nutrient supply in elevated [CO2]. The effect of T-soil was generally insignificant at low nutrient supply, but the responses of growth and biomass remained significantly higher under high than low nutrient supply at all T-soil.
机译:为了研究土壤温度(T-土壤)和养分供应对白桦(Betula papyrifera Marsh。)的生长和生物量对大气中二氧化碳浓度([CO2])的响应的交互作用,在两个[CO2 ](360和720 mu mol-mol(-1)),三种T型土壤(最初为5、15和25摄氏度,一个月后升至7、17和27摄氏度)和三种营养体系(低:NPK = 4:1.8:3.3 mg.L-1中级:NPK = 80:35:66 mg.L-1;高:NPK = 160:70:132 mg.L-1)4个月。低T含量的土壤在高养分供应时减少了叶片和总生物量,在中高养分供应时减少了根部生物量。根冠直径(RCD),茎生物量和叶片质量比具有显着的三因素相互作用。低的T-土壤在较高的[CO2]中减少了高养分供应下的RCD,而在中和高养分供应下降低了茎生物量,而中和高T-土壤增强了肥料。在较高的[CO2]条件下,低T-土壤和低养分供应下叶片质量比的值最低。在低养分供应的情况下,T型土壤的影响通常微不足道,但在所有T型土壤中,高养分条件下的生长和生物量响应仍然明显高于低养分。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号