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physiological peculiarity
相关语句
  生理特性
     The result of trial for two years indicated that precipitation and ground temperature was pivotal factors that influenced on absolute growth ratio of aboveground biomass for different plant groups in kobrecia parva alpine meadow two-season pastureland except for physiological peculiarity of different plants.
     2年的牦牛放牧试验表明:除不同植物本身的生理特性外,降水和地温是影响小嵩草高寒草甸两季草场不同植物类群地上生物量绝对生长率的关键因素。
短句来源
     The result is that aboveground biomass growth is relevant not only to physiological peculiarity but also to environment.
     结果表明苜蓿生物量的增长速率不仅与本身生理特性有关,而且与环境密切相关。
短句来源
  “physiological peculiarity”译为未确定词的双语例句
     STUDIES ON PHYSIOLOGICAL PECULIARITY INRICE CULTIVARS OF DIFFERENT SETTING PERCENTAGES
     不同结实率水稻生理特性的研究
短句来源
  相似匹配句对
     physiological satisfaction;
     生理满意度 ;
短句来源
     STUDIES ON PHYSIOLOGICAL PECULIARITY INRICE CULTIVARS OF DIFFERENT SETTING PERCENTAGES
     不同结实率水稻生理特性的研究
短句来源
     physiological health;
     第九位 :生理健康 ;
短句来源
     On the Peculiarity of English Be-sentence
     试论英语be-sentence的独特性
短句来源
     Peculiarity of the Characteristic Economy
     试论“特色经济”中的特色
短句来源
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  physiological peculiarity
Rabbit gastric secretion has the physiological peculiarity of being continuous and uninfluenced by food intake.
      


The result of trial for two years indicated that precipitation and ground temperature was pivotal factors that influenced on absolute growth ratio of aboveground biomass for different plant groups in kobrecia parva alpine meadow two-season pastureland except for physiological peculiarity of different plants. Absolute growth ratio of total aboveground biomass for two-season pasturelands in kobrecia parva alpine meadow reached to the maximum in July in 1999. And then in 1998, absolute growth ratio of every...

The result of trial for two years indicated that precipitation and ground temperature was pivotal factors that influenced on absolute growth ratio of aboveground biomass for different plant groups in kobrecia parva alpine meadow two-season pastureland except for physiological peculiarity of different plants. Absolute growth ratio of total aboveground biomass for two-season pasturelands in kobrecia parva alpine meadow reached to the maximum in July in 1999. And then in 1998, absolute growth ratio of every treatment was maximum in cold season pastureland in 1999. And then in 1998, absolute growth ratio of every treatment was maximum in cold season pastureland in August, and control and light grazing in July, moderate grazing and heavy grazing in August in warm season pastureland. The changes of absolute growth ratio of aboveground biomass for different plant groups were also different. Inl998,the absolute growth ratio of aboveground for grasses and sedges reached to the maximum in cold season pastureland in August, and in July in warm season pastureland, and there was once again accumulation of nutrition in September. But in 1999, there were two peak values of absolute growth ratio for aboveground biomass of grasses and sedges in cold season pastureland in June and August respectively, and the maximum was in July in warm season pastureland. As-for weeds, in 1998, the pastureland, in August for heavy grazing, in July for others treatments; in 1999, the maximum was in June for heavy grazing, in August for others treatments in two season pasturelands.

2年的牦牛放牧试验表明:除不同植物本身的生理特性外,降水和地温是影响小嵩草高寒草甸两季草场不同植物类群地上生物量绝对生长率的关键因素。小嵩草高寒草甸两季草场地上总生物量的绝对生长率1999年在7月份最大;1998年,冷季草场各放牧处理的绝对生长率在8月份达到最大,暖季草场的对照组和轻牧组在7月份最大,中牧组和重牧组在8月份最大。不同植物类群地上生物量生长率的变化不尽相同。1998年,冷季草场禾草和莎草地上生物量的绝对生长率8月份达到最大,暖季草场禾草和莎草地上生物量的绝对生长率7月份达到最大,且9月份出现了营养的再次积累;1999年,冷季草场禾草地上生物量的绝对生长率在6月份和8月份出现了两个峰值,暖季草场禾草地生物量的绝对生长率在7月份达到最大。对杂草类而言,1998年冷季草场的绝对生长率6月份最大,暖季草场重牧组的绝对生长率8月份达到最大,其他各处理7月份达到最大;1999年重牧组杂草的绝对生长率在6月份达到最大,其他各处理杂草在8月份达到最大。

The experiment preliminarily studied on aboveground biomass of growing progress of the different alfalfa plant.The result is that aboveground biomass growth is relevant not only to physiological peculiarity but also to environment.The maximum growth rate of plant high appears in ramification period.It's community structure is rhomboid structure,the stem-leaf ratio will decrease with increasing the height of plant.

本文对五个苜蓿品种的地上生物量形成规律进行了初步研究。结果表明苜蓿生物量的增长速率不仅与本身生理特性有关,而且与环境密切相关。株高在分枝末期现蕾初期生长速度快。绝对生长速率与相对生长速率在分枝末期现蕾期都较大,此时的水分管理具有重要意义。不同苜蓿品种的群落结构多为菱形。同化系统与非同化系统的比值随高度的增加而减少。

 
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