ramet信息详情
n.(Ramet)人名;(法)拉梅
n.碳化钽合金;[植]无性系分株;同系株
genet vs ramet───基因与影响
Such modification of local response of ramet petiole to shading due to physiological integration was not observed in the plants from the understory.───这种克隆整合对克隆形态可塑性的修饰作用只在林窗生境来源的实验植物中观察到。
developmental time of each ramet was basically same.───各分株的发育时间基本相同。
genet and ramet of P. anserina at the non-degraded alpine meadow were higher than those at the degraded alpine meadow.───高寒草甸退化后鹅绒委陵菜的匍匐茎增多,分支强度加大。
The results showed that the clonal growth form changed continuously by the birth and death regulation of daughter ramet and tiller.───结果表明,通过分株及其分蘖的出生与死亡调节,中国沙棘不断改变分株的克隆生长型。
Biomass of ramet population, root-shoot ratio and density of ramet population decreased significantly with reduce of light intensity;───随光照减弱,东方草莓分株种群的生物量、根冠比和分株种群密度显著降低;
Clonal architecture and ramet population characteristics of Lysimachia congestiflora growing under different light conditions───不同光照条件下聚花过路黄的克隆构型和分株种群特征
ABA produced in water-stressed ramet could not be delivered to the adjacent and connected ramet and affect its stomatal behavior;───ABA不会通过匍匐茎在母株和子株间传递并影响相邻子株气孔导度;
Composition and quantitative relationship of ramet of clonal Kobresia humilis under different degenerative gradation in Alpine Meadow───不同退化程度高寒草甸矮嵩草分株结构数量的研究
Changes of Total Flavonoids Content at the Module and Ramet Levels in Neosinocalamus affinis───慈竹构件和分株水平总黄酮含量的变化
The results were as following:The effects of different soil nutrient levels to height of genet, ortet, second ramet and third ramet are significant.
The ramet number, spacer number, total stolon length and specific stolon internode weight decrease with the increase of stolon number in H. cymbalaris clone.
Mortality curve of bamboo shoot - young clone population had two climax . The death of most young ramet was at previous stage, and the main reason was the short of nutrition.
This character might improve invasion ability of ramet in vacant habitat, and adapted to the character of life history that L. virgaurea and L. sagitta presented under transplantation condition.
The genet and ramet of P. anserina at the non-degraded alpine meadow were higher than those at the degraded alpine meadow.
The genet and ramet of P. anserine at the non-degraded alpine meadow were higher than those at the degraded alpine meadow.
The ramets of 1st age class had the biggest productive potential, while the ramet productivity of 4th age class was generally weakened at milk stage.
Heterogenous environmental conditions determined ecological plasticity of ramet biomass and length in Chamaedaphne calyculata populations.
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