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Impact of atmospheric ammonia on growth, C and N accumulation and photosynthesis of two maize cultivars with different N root supply

机译:大气氨水对两种氮素供应不同的玉米品种生长,碳和氮积累及光合作用的影响

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Impact of enriched atmospheric NH3 in combination with low and high N medium on growth, total C and N accumulation (CtotA and NtotA) and photosynthetic characteristics of two maize cultivars i.e. SD19 (cult. 1) and NE5 (cult. 2) with low N and N high use efficiency, respectively, was investigated. Plants were exposed to 10 nl/L and 1000 nl/L NH3 fumigation, respectively, for 30 days in open-top chambers (OTCs). Under exposure to the low N medium, increase of the atmospheric NH3 concentration to 1000 nl/L from the ambient level significantly (P 0.05) increased dry matter (DM) (by 18% in cult. 1 and 14% in cult. 2 respectively), CtotA, NtotA, net photosynthetic rate (Pn), stomatal conductance (Gs) and apparent quantum yield (AQY) but decreased intercellular CO2 concentration (Ci) in both cultivars. These effects were more pronounced in cult. 1 as compared to those in cult. 2. In contrast, in the high N solution, enriched atmospheric NH3 led to a decrease in DM, CtotA, NtotA, Pn, Gs and AQY but an increase in Ci of cult. 2 only. Dark respiration rate remained unaffected by enrichment of NH3 in each treatment. Therefore, it is concluded that appropriately enriched atmospheric NH3 can improve plant growth of maize by enhancing CtotA, NtotA, and photosynthesis in the low N medium, especially for low N use efficiency cultivars.
机译:低氮和高氮培养基与丰富的大气NH3组合对低氮SD19玉米和NE5两种玉米的生长,总碳和氮积累(CtotA和NtotA)和光合特性的影响研究了N和N的高利用率。将植物分别在开放式室(OTC)中暴露于10 nl / L和1000 nl / L NH3熏蒸中30天。在暴露于低氮培养基的情况下,大气中的NH3浓度从环境水平增加至1000 nl / L显着(P <0.05)增加了干物质(DM)(在品种1中增加18%,在品种2中增加14%)。 ),CtotA,NtotA,净光合速率(Pn),气孔导度(Gs)和表观量子产率(AQY),但两个品种的细胞间CO2浓度(Ci)均降低。这些影响在邪教中更为明显。 1与邪教相比。 2.相反,在高氮溶液中,丰富的大气NH3导致DM,CtotA,NtotA,Pn,Gs和AQY降低,但邪教的Ci升高。仅2个。在每种处理中,深色呼吸速率均不受NH3富集的影响。因此,可以得出结论,适当补充大气中的NH3可以通过增强低氮培养基中的CtotA,NtotA和光合作用来改善玉米的生长,特别是对于低氮利用效率的品种。

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