首页> 外文会议>International Conference on Environmental Systems >Water relations and leaf gas exchange of table-beet in response to replacement of nutrient K with Na
【24h】

Water relations and leaf gas exchange of table-beet in response to replacement of nutrient K with Na

机译:表 - 甜菜的水关系与叶片换气响应营养钾与NA

获取原文

摘要

Developing crop-based approaches for sodium recycling may be required for integrating urine and gray water into food production systems for advanced life support. Sodium (Na) is generally considered non-essential for plants, whereas potassium (K) is a macro-nutrient involved in a range of metabolic functions, including maintenance of cell turgor and water relations. This study compared if K can be largely replaced with Na in the nutrient solutions without affecting productivity. Table-beet (Beta vulgaris) variety Ruby Queen was grown at K/Na (mM) ratios of 5.0/0, and 0.1/4.90 (represents 0% and 98% substitution of K with Na in nutrient solutions) in a re-circulating hydroponic system. Plants were grown at elevated CO_2 (i.e. at 1200 μmol mol~(-1) in growth chamber for 42 days. Leaf photosynthetic rates were measured at 32 days after planting. Leaf relative water content (RWC) and osmotic potential were measured at harvest. Replacing nutrient K with Na had no significant effect on leaf chlorophyll levels or photosynthetic rate. Leaf relative water content was significantly higher at K/Na 0.1/4.90 than 5.0/0 treatment. Osmotic potential of the leaf sap was not significantly affected by Na substitution for K. Sodium concentrations reached to about 300 mM in leaf sap. Results indicated that table-beet has a high degree of tolerance to substitution of tissue K with Na. We conclude that for table beet, K could be managed as a micro-nutrient in the presence of adequate sodium which could take over some of the osmotic functions of K.
机译:可能需要制定基于农作物的循环钠的方法,以将尿液和灰色水整合到用于先进的生命支持的食品生产系统中。钠(NA)通常认为是对植物是不必要的,而钾(K)是参与一系列代谢功能的宏观营养素,包括细胞Turgor和水关系的维持。该研究比较了k可以在很大程度上在营养溶液中大大替换,而不会影响生产率。表 - 甜菜(Beta寻常)品种Ruby女王在重新循环中以5.0 / 0的k / na(mm)比率为5.0 / 0,0.1 / 4.90(在营养溶液中使用Na含有Na含有Na的0%和98%的k)水培系统。植物在升高的CO_2(即,在生长室中的1200μmolmol〜(-1)中生长42天。叶片光合速率在种植后32天测量。在收获时测量叶相对含水量(RWC)和渗透潜力。用NA替代营养碱对叶叶绿素水平或光合速率没有显着影响。K / NA 0.1 / 4.90的叶相对含水量显着高于5.0 / 0处理。叶片SAP的渗透势不会受到显着的影响对于K.钠浓度达到约300mm的叶片。结果表明,表 - 甜菜具有高耐受性与NA替代组织K.我们得出结论,对于表甜菜,K可以作为微营养在存在足够的钠中,这可能会接管K的一些渗透功能。

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