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Effect of In Vitro Nitrogen Nutrition to Phalaenopsis deliciosa Seedling Growth | Science Publications

机译:氮素营养对蝴蝶兰幼苗生长的影响科学出版物

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> >In a continuous effort to conserve Phalaenopsis species, the optimization of a previously designed defined medium was carried out to understand the effect of in vitro nitrogen nutrition on Phalaenopsis deliciosa Rchb.f. In order not to alter the nutrient balance, macronutrient level instead of solely Nitrogen (N) was adjusted. Seedlings were obtained from in vitro germination and randomly inoculated on media with various macronutrient levels (0.3×, 0.5×, 1×, 2× and 3×). Maximum shoot yield was observed at 2× macronutrient level. However, the best macronutrient level, which was 1× macronutrient level, resulted in the maximum root and seedling yield. This macronutrient level was applied on the subsequent experiment where seedlings were inoculated on media with various nitrate-nitrogen (NO3-N) to ammonium-nitrogen (NH4-N) ratios. Seedling yield was the highest at NO3-N/NH4-N ratio of 2.0 while Root to Shoot ratio (R/S) was the highest at NO3-N/NH4-N ratio of 5.0. NO3-N/NH4-N ratio significantly affected Water Content (WC) of seedlings and the response to NO3-N/NH4-N ratio was similar to R/S, correlating better root development to higher WC. By altering NO3-N/NH4-N ratio, plant quality in terms of yield and organ development could be encouraged.
机译: > >在保护蝴蝶兰物种的不断努力中,对先前设计的定义培养基进行了优化以了解在体外的作用蝴蝶兰中的氮营养Rchb.f。为了不改变养分平衡,调整了常量养分水平,而不是单独调整了氮(N)。从体外发芽获得幼苗,然后将其随机接种在各种常量营养素水平(0.3x,0.5x,1x,2x和3x)的培养基上。在2x大量营养素水平下观察到最大的芽产量。但是,最佳的常量营养素水平是常量营养素水平的1倍,导致最大的根和幼苗产量。该大量营养素水平用于随后的实验中,在该实验中,将幼苗接种在含有各种硝态氮(NO 3 -N)到铵态氮(NH 4 -N)的培养基上比率。 NO 3 -N / NH 4 -N比为2.0时,幼苗产量最高; NO 中,根冠比(R / S)最高。 3 -N / NH 4 -N比为5.0。 NO 3 -N / NH 4 -N比值显着影响幼苗的水分含量和对NO 3 -N / NH的响应 4 -N比值与R / S相似,这表明更好的根系发育与更高的WC相关。通过改变NO 3 -N / NH 4 -N的比例,就产量和器官发育而言,可以鼓励植物的品质。

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