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nutrient availability造句

"nutrient availability"是什么意思   

例句与造句

  1. these values were compared with the n and p concentration in sediments and macrophyte biomass in order to assess nutrient availability, fate and storage capacity
    这些数值被用来与沉淀物和大型动植物中的氮磷浓度相比较,由此得出营养物质的有效性,去向和储存量。
  2. two greenhouse experiments were conducted to study clonal plasticity of the stoloniferous clonal herb halerpestes ruthenica in response to light intensity, nutrient availability and salinity
    通过2个温室实验,研究了金戴戴对光照、基质养分和盐分的克隆可塑性。
  3. meanwhile, root to shoot ratio of the ramet grown in low light intensity and high nutrient availability significantly increased while that of the ramet grown in high light intensity and low nutrient availability greatly decreased
    同时,低光高养下分株的根冠比相对增加,而高光低养下分株的根冠比相对下降。
  4. meanwhile, root to shoot ratio of the ramet grown in low light intensity and high nutrient availability significantly increased while that of the ramet grown in high light intensity and low nutrient availability greatly decreased
    同时,低光高养下分株的根冠比相对增加,而高光低养下分株的根冠比相对下降。
  5. arbuscular mycorrhizal ( am ) fungi are important soil microorganisms in agroecosystems by enhancing host plant survival and growth in adverse conditions such as soils with low nutrient availability or heavy metal contamination
    am真菌是农业生态系中一类重要的土壤微生物,在农田土壤和工业污染区土壤中都广泛存在。
  6. It's difficult to find nutrient availability in a sentence. 用nutrient availability造句挺难的
  7. in view of improving the efficiency of fertilizer, we paid more attention to the effect of water dynamic process and strength on nutrient availability . in this research, by model test, four kinds of agricultural soils were studied, concerning about the effect of drying-wetting alternation and temperature on potassium availability, ions " diffusion in soils under different levels of water content, and the distribution coefficient of potassium between solution and soil phases
    因此,本研究通过室内模拟土壤水分的动态变化,对水分变化的过程(干湿交替不断进行)和变化强度对养分有效性的影响,不同水势状态下养分离子在固、液相间的分配关系,以及不同水分条件下养分的扩散迁移规律等方面进行了探讨。
  8. when ramet grown in high light intensity and low nutrient availability was connected to that grown in low light intensity and high nutrient availability, biomass of both ramets grown in high light intensity and low nutrient availability, and in low light intensity and high nutrient availability, as well as whole clonal fragments, was significantly enhanced
    当置于高光低养下的分株与低光高养下的分株相连时,高光低养分株、低光高养分株以及克隆片断的生物量均得到显著提高。
  9. when ramet grown in high light intensity and low nutrient availability was connected to that grown in low light intensity and high nutrient availability, biomass of both ramets grown in high light intensity and low nutrient availability, and in low light intensity and high nutrient availability, as well as whole clonal fragments, was significantly enhanced
    当置于高光低养下的分株与低光高养下的分株相连时,高光低养分株、低光高养分株以及克隆片断的生物量均得到显著提高。
  10. when ramet grown in high light intensity and low nutrient availability was connected to that grown in low light intensity and high nutrient availability, biomass of both ramets grown in high light intensity and low nutrient availability, and in low light intensity and high nutrient availability, as well as whole clonal fragments, was significantly enhanced
    当置于高光低养下的分株与低光高养下的分株相连时,高光低养分株、低光高养分株以及克隆片断的生物量均得到显著提高。
  11. when ramet grown in high light intensity and low nutrient availability was connected to that grown in low light intensity and high nutrient availability, biomass of both ramets grown in high light intensity and low nutrient availability, and in low light intensity and high nutrient availability, as well as whole clonal fragments, was significantly enhanced
    当置于高光低养下的分株与低光高养下的分株相连时,高光低养分株、低光高养分株以及克隆片断的生物量均得到显著提高。
  12. the project initiated by scientists from university of california and co-operated scientists from haibei research station, cas . the objectives of the experimental are to examine how the vegetation and soil in sites with low and high grazing intensity and with two habitat types ( meadow and shrubland ) respond to climate warming . the research will include plant community, phenology, growth allocation and soil temperature, soil nutrient availability, decomposition, and mineralization
    自1997年起,海北站与美国加利佛尼亚大学的科学家合作建立了32个greenhouse,分别建在不同放牧强度下的高寒草甸和高寒灌丛中,研究的目的是探索植被和土壤在不同放牧强度下对气候变暖的响应,其中包括植物群落、物候学、土壤温度、土壤营养、分解和矿化作用等。
  13. the project initiated by scientists from university of california and co-operated scientists from haibei research station, cas . the objectives of the experimental are to examine how the vegetation and soil in sites with low and high grazing intensity and with two habitat types meadow and shrubland respond to climate warming . the research will include plant community, phenology, growth allocation and soil temperature, soil nutrient availability, decomposition, and mineralization
    自1997年起,海北站与美国加利佛尼亚大学的科学家合作建立了32个greenhouse,分别建在不同放牧强度下的高寒草甸和高寒灌丛中,研究的目的是探索植被和土壤在不同放牧强度下对气候变暖的响应,其中包括植物群落物候学土壤温度土壤营养分解和矿化作用等。
  14. under low nutrient availability, the stolon internode of h . ruthenica elongated while the stolon branching intensity decreased, which are consistent with the foraging model, indicating that h . ruthenica can forage nutrients ( i . e ., improve nutrient acquisition ) by means of clonal plasticity when growing in spatially heterogeneous environments
    这些结果与克隆植物觅食模型相符合,表明当生长于异质性环境,金戴戴可凭借克隆可塑性实现的觅养行为来增加对养分资源的摄取。
  15. light intensity, nutrient availability and salinity all have significant effects on clonal growth and clonal morphology of h . ruthenica . deep shade, low nutrient availability and high salinity markedly reduced its growth . moreover, the degree and pattern of plasticity in biomass, leaf area, number of ramets, stolon length, petiole length and root to shoot ratio in response to salinity demonstrated genotypic variation
    深度遮光、低养和高盐均显著削弱金戴戴的生长,其生物量、叶面积、分株数、匍匐茎长及叶柄长和根冠比对基质盐分的可塑性大小和格局显示出基株间的差异。
  16. light intensity, nutrient availability and salinity all have significant effects on clonal growth and clonal morphology of h . ruthenica . deep shade, low nutrient availability and high salinity markedly reduced its growth . moreover, the degree and pattern of plasticity in biomass, leaf area, number of ramets, stolon length, petiole length and root to shoot ratio in response to salinity demonstrated genotypic variation
    深度遮光、低养和高盐均显著削弱金戴戴的生长,其生物量、叶面积、分株数、匍匐茎长及叶柄长和根冠比对基质盐分的可塑性大小和格局显示出基株间的差异。

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