首页> 外文期刊>Russian Journal of Plant Physiology >Effect of doubled CO2 on morphology: inhibition of stomata development in growing birch (Betula platyphylla Suk.) leaves.
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Effect of doubled CO2 on morphology: inhibition of stomata development in growing birch (Betula platyphylla Suk.) leaves.

机译:CO2浓度增加一倍对形态的影响:抑制正在生长的桦树(Betula platyphylla Suk。)叶片气孔的发育。

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摘要

Two-year old birch (Betula platyphylla Suk.) seedlings were grown in climatic chambers for 7 weeks under various conditions: (1) ambient CO2 concentration (350 ppm) and an ordinary nitrogen content in soil (2 mM NH4NO3); (2) ambient CO2 concentration and a high nitrogen rate (16 mM NH4NO3); (3) doubled CO2 concentration (700 ppm) and ordinary nitrogen content, and (4) doubled CO2 concentration and a high nitrogen rate. Doubled CO2 concentration in combination with the high nitrogen rate activated mostly seedling growth, e.g., stem thickening and leaf initiation. In this treatment, the maximum rate of apparent photosynthesis (Amax) was twice as high as in control seedlings. At doubled CO2 concentration and ordinary nitrogen content, we observed the phenomenon of stomata absence from the upper leaf surface and doubling their number on the lower surface, whereas, at doubled CO2 concentration and a high nitrogen rate, stomata partition was essentially similar as in control leaves. The conclusion is that, when the balance between CO2 concentration and nitrogen rate is shifted, doubled CO2 concentration exerts a morphotropic effect on differentiation of young epidermal tissue..
机译:在各种条件下,将两岁的桦木(Betula platyphylla Suk。)幼苗在气候箱中生长7周:(1)环境CO2浓度(350 ppm)和土壤中普通氮含量(2 mM NH4NO3); (2)环境CO2浓度和高氮比率(16 mM NH4NO3); (3)将CO2浓度(700 ppm)和普通氮含量提高了一倍,以及(4)将CO2浓度和高氮含量提高了一倍。 CO2浓度增加一倍,同时氮含量高,主要是激活了幼苗的生长,例如茎粗和叶片萌发。在这种处理中,表观光合作用的最大速率(Amax)是对照幼苗的两倍。在CO2浓度增加一倍和普通氮含量下,我们观察到上叶表面没有气孔并使下表面上的气孔数量增加一倍,而在CO2浓度增加一倍且氮含量高时,气孔分配与对照基本相似。树叶。结论是,当CO2浓度和氮比率之间的平衡发生变化时,CO2浓度增加一倍会对年轻表皮组织的分化产生形态作用。

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