...
首页> 外文期刊>Data in Brief >Data on the productivity of plant cover of the main types of soils of the North-Western precaspian in connection with the dynamics of ecological factors
【24h】

Data on the productivity of plant cover of the main types of soils of the North-Western precaspian in connection with the dynamics of ecological factors

机译:与西北因素有关的西北里海主要土壤植物覆盖生产力的数据

获取原文
   

获取外文期刊封面封底 >>

       

摘要

The data of the researches describes the were to establish the species composition of pasture cenoses and the productivity potential of light-chestnut and meadow-chestnut soils under different climatic conditions and in different periods of the year in the Terek-Kuma lowland of the North-Western Precaspian. Two peaks of productivity of phytocoenosis have been observed: the first is – ephemeral synusia in the middle of May- early June; second – motley grass and saltworts in the second half of September. The data on receipt of photosynthetically active radiation (PAR) on the soil surface and the coefficient of its use over the years and periods of the year depending on the hydrothermal conditions and dynamics of harmful salts in the soil are given. On light-chestnut soil formed cereals-wormwood, grass-cereals, wormwood-ephemeral in combination with wormwood-saltworts association, and meadow-chestnut soil – ephemera-wormwood. The phytocenosis on light-chestnut soil is inherent in the maximum species diversity – 35 species. On meadow-chestnut soil there are only 25 species. The items of the changes in the species composition of phytocenoses depending on the environmental factors are considered. The data in this article support and augment information presented in the research articles .
机译:研究数据描述了在北气候的特雷克-库玛低地,在不同的气候条件和一年中的不同时期,建立牧草种群的种类组成以及轻质栗木和草甸栗木土壤的生产力潜力。西方的里海人。观察到了植物群落生产力的两个高峰:第一个是– 5月中旬至6月初的短暂性滑膜炎。第二– 9月下半月的杂色草和盐蒿。根据土壤中的水热条件和有害盐分的动态,给出了在土壤表面上接收光合作用活性辐射(PAR)的数据及其在一年中和一年中的使用系数。在浅栗色的土壤上形成谷物-艾草,草谷物,艾草-短暂与艾草-Saltworts协会相结合,以及草甸-栗树土壤-短暂的艾草。轻型栗树土壤上的植物菌病是最大的物种多样性所固有的-35种。在草甸栗木土壤上只有25种。根据环境因素考虑了植物素的物种组成变化的项目。本文中的数据支持并扩充了研究文章中提供的信息。

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