首页> 外文期刊>Trees. Structure and Function >Hydrogel modified uptake of salt ions and calcium in Populus euphratica under saline conditions
【24h】

Hydrogel modified uptake of salt ions and calcium in Populus euphratica under saline conditions

机译:盐分条件下水凝胶修饰胡杨中盐离子和钙的吸收

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The effects of hydrogel on growth and ion relationships of a salt resistant woody species, Populus euphratica, were investigated under saline conditions. The hydrogel used was Stockosorb K410, a highly crosslinked polyacrylamide with about 40% of the amide group hydrolysed to carboxylic groups. Amendment of saline soil (potassium mine refuse) with 0.6% hydrogel improved seedling growth (2.7-fold higher biomass) over a period of 2 years, even though plant growth was reduced by salinity. Hydrogel-treated plants had approximately 3.5-fold higher root length and root surface area than those grown in unamended saline soil. In addition, over 6% of total roots were aggregated in gel fragments. Tissue and cellular ion analysis showed that growth improvement appeared to be the result of increased capacity for salt exclusion and enhancement of Ca2+ uptake. X-ray microanalysis of root compartments indicated that the presence of polymer restricted apoplastic Na+ in both young and old roots, and limited apoplastic and cytoplastic Cl- in old roots while increasing Cl- compartmentation in cortical vacuoles of both young and old roots. Collectively, radical transport of salt ions (Na+ and Cl-) through the cortex into the xylem was lowered and subsequent axial transport was limited. Hydrogel treatment enhanced uptake of Ca2+ and microanalysis showed that enrichment of Ca2+ in root tissue mainly occurred in the apoplast. In conclusion, enhanced Ca2+ uptake and the increased capacity of P. euphratica to exclude salt were the result of improved Ca2+/Na+ concentration of soil solution available to the plant. Hydrogel amendment improves the quality of soil solutions by lowering salt level as a result of its salt-buffering capacity and enriching Ca2+ uptake, because of the polymer's cation-exchange character. Accordingly, root aggregation allows good contact of roots with a Ca2+ source and reduces contact with Na+ and Cl-, which presumably plays a major role in enhancing salt tolerance of P. euphratica.
机译:在盐水条件下,研究了水凝胶对耐盐木本植物胡杨的生长和离子关系的影响。所使用的水凝胶是Stockosorb K410,一种高度交联的聚丙烯酰胺,其中约40%的酰胺基水解为羧基。尽管盐分降低了植物的生长,但用0.6%水凝胶改良盐渍土壤(钾矿渣)可以在2年内改善幼苗的生长(生物量提高2.7倍)。水凝胶处理过的植物的根长和根表面积比在未经改良的盐渍土壤中生长的根高约3.5倍。另外,超过6%的总根聚集在凝胶碎片中。组织和细胞离子分析表明生长改善似乎是排盐能力增强和Ca2 +吸收增强的结果。根室的X射线显微分析表明,聚合物的存在限制了幼根和老根中的质外性Na +,限制了老根中的质外性和细胞增生性Cl-,同时增加了老根和老根的皮质液泡中的Cl-分隔。总的来说,盐离子(Na +和Cl-)通过皮层进入木质部的自由基运输被降低,随后的轴向运输受到限制。水凝胶处理提高了对Ca2 +的吸收,显微分析表明,根组织中Ca2 +的富集主要发生在质外体中。总之,增加的Ca2 +吸收和增强的胡杨P. euphratica排除盐的能力是植物可利用的土壤溶液中Ca2 + / Na +浓度提高的结果。由于聚合物的阳离子交换特性,水凝胶改性剂由于其盐缓冲能力和丰富的Ca2 +吸收而降低了盐含量,从而提高了土壤溶液的质量。因此,根聚集使根与Ca 2+源良好接触,并减少与Na +和Cl-的接触,这大概在增强胡杨对盐的耐性中起主要作用。

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