首页> 外文期刊>Plant Production Science >Rhizodeposition of Mucilage, Root Border Cells, Carbon and Water under Combined Soil Physical Stresses in Zea mays L.
【24h】

Rhizodeposition of Mucilage, Root Border Cells, Carbon and Water under Combined Soil Physical Stresses in Zea mays L.

机译:玉米联合土壤物理胁迫下黏液,根缘细胞,碳和水的根际沉积

获取原文
           

摘要

We investigated the effects of combined soil physical stresses of compaction and drought on the production of fully hydrated mucilage (mucilage) and root border cells (RBCs) in maize. The exudation of carbon and water were also estimated using stable isotopes of 13C and deuterated water (D2O) under same soil conditions. As plant age progressed during seedling stage, mucilage production increased, however, RBCs release did not. Soil compaction increased the release of D2O, RBCs, and production of mucilage which implies the function of roots to reduce mechanical impedance during root penetration. Drying stress increased only carbon release, but reduced the others. This indicates that RBCs adhere more strongly to the root cap due to drying of mucilage, and water release may be reduced to save the water loss. The highest rhizodeposition of mucilage, RBCs and D2O were occurred under wet compact soil condition, however, that of carbon occurred under dry compact soil condition.
机译:我们调查了压实和干旱对土壤物理压力的联合作用对玉米中完全水合粘液(mucilage)和根边界细胞(RBCs)产生的影响。在相同的土壤条件下,使用13 C的稳定同位素和氘化水(D2O)还可以估算碳和水的渗出量。随着苗期植物年龄的增长,粘液产量增加,但是红细胞释放却没有。土壤压实增加了D2O,RBC的释放以及粘液的产生,这暗示了根部在降低根部穿透过程中降低机械阻抗的功能。干燥应力仅增加了碳的释放,但减少了其他的碳。这表明由于粘液干燥,红细胞更牢固地附着在根冠上,并且可以减少水分释放以节省水分。黏液,RBC和D2O的最高根际沉积发生在湿密土壤条件下,而碳最高发生在干密土壤条件下。

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