首页> 外文期刊>In Vitro Cellular and Development Biology. Plant: Journal of the Tissue Culture Association >AMMONIUM AND NITRATE UPTAKE AND NITRATE REDUCTASE ACTIVITY OF PHOTOAUTOTROPHIC CALLUS CULTURES OF THE FERN PLATYCERIUM CORONARIUM (KOENIG) DESV
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AMMONIUM AND NITRATE UPTAKE AND NITRATE REDUCTASE ACTIVITY OF PHOTOAUTOTROPHIC CALLUS CULTURES OF THE FERN PLATYCERIUM CORONARIUM (KOENIG) DESV

机译:冠状蕨植物光自养愈伤组织的铵态氮和硝酸盐吸收及硝酸还原酶活性

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摘要

The uptake of nitrate and ammonium by callus of Platycerium coronarium from the culture medium was examined. Nitrate reductase activity of photoautotrophic callus cultures under CO2 enrichment was significantly lower compared to the cultures without CO2 enrichment, but higher than that of heterotrophic callus cultured on medium with 2% (wt/vol) sucrose. When sucrose concentration of the heterotrophic culture was lowered to 0.2%, nitrate reductase activity increased. The level of nitrate reductase activity increased by about 25% in the heterotrophic callus with an increase in 2,4-D from 2 mu M to 10 mu M, despite a decline in fresh weight gain. However, photoautotrophic cultures with 1% CO2 enrichment showed 20% decline in nitrate reductase activity and 45% decline in fresh weight gain with a similar increase in 2,4-D level. The rate of uptake of nitrate from the culture medium was unrelated to the level of nitrate reductase activity in the callus. For photoautotrophic callus under CO2 enrichment, the presence of 1% (vol/vol) CO2 generally resulted in the highest rate of nitrate uptake. The rate of uptake of ammonium was higher for callus cultured on 2 mu M 2,4-D compared to that on 10 mu M 2,4-D.
机译:考察了从培养基中Ptyleriumium coronarium愈伤组织对硝酸盐和铵的吸收。与没有CO2富集的培养相比,在CO2富集下光养养愈伤组织培养物中的硝酸还原酶活性显着降低,但比在2%(wt / vol)蔗糖培养基上培养的异养愈伤组织的硝酸还原酶活性低。当异养培养物的蔗糖浓度降低至0.2%时,硝酸盐还原酶活性增加。尽管新鲜增重有所下降,但异养愈伤组织中硝酸盐还原酶活性水平却提高了约25%,其中2,4-D从2μM增加到10μM。但是,具有1%CO2富集的光养植物显示硝酸盐还原酶活性下降了20%,新鲜体重增加下降了45%,而2,4-D水平也有类似的增长。从培养基中吸收硝酸盐的速率与愈伤组织中硝酸盐还原酶活性的水平无关。对于CO2富集下的光合自养愈伤组织,通常存在1%(体积/体积)的CO2导致最高的硝酸盐吸收速率。与在10μM 2,4-D上培养的愈伤组织相比,在2μM 2,4-D上培养的愈伤组织的铵吸收速率更高。

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