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首页> 外文期刊>Tree Physiology >Regulation of organic and inorganic nitrogen uptake in Scots pine (Pinus sylvestris) seedlings.
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Regulation of organic and inorganic nitrogen uptake in Scots pine (Pinus sylvestris) seedlings.

机译:调节苏格兰松(Pinus sylvestris)幼苗中有机和无机氮的吸收。

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摘要

Plants possess regulatory mechanisms that enhance nitrogen (N) uptake under conditions of spatial and temporal variation in N availability. Study of regulatory mechanisms has focused almost exclusively on the uptake of inorganic N sources (i.e., ammonium (NH4+), nitrate (NO3-)). Several lines of evidence, however, suggest that amino acids may constitute a potential source of N for a number of plant species, including conifers. In the present study, we investigated the uptake of amino acids and inorganic N in Scots pine (Pinus sylvestris L.) seedlings grown at different N concentrations. We compared the uptake rate of the individual N sources using U-[13C2], [15N]-glycine, U-[13C6], [15N4]-arginine, 15NH4, or 15NO3, and tested the short-term effect of N supply on the uptake rate of glycine, arginine and NH4+ in field-grown Scots pine seedlings. Our data indicate that Scots pine seedlings can absorb substantial amounts of N in the form of intact arginine and glycine molecules. The data also suggest that Scots pine seedlings down-regulate their uptake of NH4+-N and arginine-N, but not of glycine-N in response to increased endogenous N concentrations.
机译:植物具有调节机制,可在氮素利用时空变化的条件下提高氮素的吸收。调节机制的研究几乎完全集中于吸收无机氮源(即铵(NH4 +),硝酸盐(NO3-))。但是,有几条证据表明,氨基酸可能构成许多植物物种(包括针叶树)的潜在氮源。在本研究中,我们调查了不同氮浓度下生长的苏格兰松(Pinus sylvestris L.)幼苗中氨基酸和无机氮的吸收。我们使用U- [13C2],[15N]-甘氨酸,U- [13C6],[15N4]-精氨酸,15NH4或15NO3比较了各个氮源的吸收率,并测试了氮供应的短期影响对田间生长的苏格兰松树幼苗中甘氨酸,精氨酸和NH4 +吸收速率的影响我们的数据表明,苏格兰松树幼苗可以吸收大量的完整精氨酸和甘氨酸分子形式的氮。数据还表明,随着内源氮浓度的增加,苏格兰松树幼苗下调其对NH4 + -N和精氨酸-N的吸收,但不调节其对甘氨酸-N的吸收。

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