首页> 外文期刊>Eurasian Soil Science >The influence of earthworms on the mobility of microelements in soil and their availability for plants
【24h】

The influence of earthworms on the mobility of microelements in soil and their availability for plants

机译:on对土壤中微量元素迁移及其对植物有效性的影响

获取原文
获取原文并翻译 | 示例
       

摘要

The influence of earthworms (Aporrectodea caliginosa, Lumbricus rubellus, L. terrestris, and Eisenia fetida) on the mobility of microelements and their availability for plants was studied. The contents of water-soluble Fe and Mn compounds extractedfrom the coprolites were 5-10 times higher than that in the soil (enriched in calcium carbonate and dried) consumed by the earthworms. This digestion-induced effect became higher with the age of the coprolites (up to 9 days) and took place under their alkalization. In the excreta (surface + enteric) of earthworms, the Fe concentration exceeded those of Mn and Zn by many times. Iron and manganese were mostly concentrated (> 80% and > 60%, respectively) in the organic part of the excrements. In the testswith hydroponics, the excreta were found to be a source of iron compounds available for plants that were similar to Fe-2(SO4)(3) or Fe-citrate by their physiological effect in the case when the Fe concentration in the excretions was above 0.7 mu M. However, the single application of excreta of different earthworm species into the CaCO3 enriched soil did not significantly affect the plant (cucumber) nutrition. The analysis of the transport of microelements with xylem sap showed that this fact appeared tobe due to the absence of an Fe deficit in the cucumber plants because of their high capability for the absorption of weakly soluble iron compounds.
机译:研究了((Aporrectodea caliginosa,Lumbricus rubellus,L。terrestris和Eisenia fetida)对微量元素迁移率及其在植物中的可用性的影响。从共Prolites中提取的水溶性Fe和Mn化合物的含量比worm消耗的土壤(富含碳酸钙并干燥)中的含量高5-10倍。这种消化诱导的作用随着共prolites的年龄(长达9天)而变得更高,并且发生在它们的碱化作用下。在earth的排泄物(表面+肠溶)中,铁的浓度比锰和锌的浓度高很多倍。铁和锰大多集中在粪便的有机部分(分别> 80%和> 60%)。在水培试验中,发现排泄物是可用于植物的铁化合物来源,当排泄物中的Fe浓度较高时,由于其生理作用,它们类似于Fe-2(SO4)(3)或柠檬酸铁。大于0.7亩米。但是,将不同species类粪便排入富含CaCO3的土壤中并不会显着影响植物(黄瓜)的营养。木质部汁液中微量元素的运输分析表明,这一事实似乎是由于黄瓜植物对弱溶性铁化合物的高吸收能力而导致的铁缺乏所致。

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