首页> 美国卫生研究院文献>Annals of Botany >Cluster Roots of Leucadendron laureolum (Proteaceae) and Lupinus albus (Fabaceae) Take Up Glycine Intact: An Adaptive Strategy to Low Mineral Nitrogen in Soils?
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Cluster Roots of Leucadendron laureolum (Proteaceae) and Lupinus albus (Fabaceae) Take Up Glycine Intact: An Adaptive Strategy to Low Mineral Nitrogen in Soils?

机译:月桂树(Proteaaceae)和羽扇豆Lupinus albus(Fabaceae)的簇根完整吸收甘氨酸:土壤中低矿质氮的适应策略吗?

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摘要

• Background and Aims South African soils are not only low in phosphorus (P) but most nitrogen (N) is in organic form, and soil amino acid concentrations can reach 2·6 g kg−1 soil. The Proteaceae (a main component of the South African Fynbos vegetation) and some Fabaceae produce cluster roots in response to low soil phosphorus. The ability of these roots to acquire the amino acid glycine (Gly) was assessed.• Methods Uptake of organic N as 13C–15N-Gly was determined in cluster roots and non-cluster roots of Leucadendron laureolum (Proteaceae) and Lupinus albus (Fabaceae) in hydroponic culture, taking account of respiratory loss of 13CO2.• Key Results Both plant species acquired doubly labelled (intact) Gly, and respiratory losses of 13CO2 were small. Lupin (but not leucadendron) acquired more intact Gly when cluster roots were supplied with 13C–15N-Gly than when non-cluster roots were supplied. After treatment with labelled Gly (13C : 15N ratio = 1), lupin cluster roots had a 13C : 15N ratio of about 0·85 compared with 0·59 in labelled non-cluster roots. Rates of uptake of label from Gly did not differ between cluster and non-cluster roots of either species. The ratio of C : N and 13C : 15N in the plant increased in the order: labelled roots < rest of the root < shoot in both species, owing to an increasing proportion of 13C translocation.• Conclusions Cluster roots of lupin specifically acquired more intact Gly than non-cluster roots, whereas Gly uptake by the cluster and non-cluster roots of leucadendron was comparable. The uptake capacities of cluster roots are discussed in relation to spatial and morphological characteristics in the natural environment.
机译:•背景和目的南非土壤不仅磷(P)含量低,而且大多数氮(N)以有机形式存在,土壤氨基酸浓度可达到2·6μgkg -1 土壤。 Proteaceae(南非Fynbos植被的主要成分)和一些Fabaceae响应土壤磷含量低而产生簇状根。评估了这些根获得氨基酸甘氨酸(Gly)的能力。•方法确定簇根中有机氮作为 13 C– 15 N-Gly的吸收考虑到 13 CO2的呼吸损失,水培条件下的月桂属(Proteaceae)和羽扇豆(Fabaceae)的非丛生和非丛生根。 , 13 CO2的呼吸损失很小。当向簇根提供 13 C– 15 N-Gly时,羽扇豆(但不是杜鹃花)获得的完整Gly比提供非簇根的更多。用标记的Gly( 13 C: 15 N比= 1)处理后,羽扇豆簇根的 13 C: 15 < / sup> N比约为0·85,而标记的非集群根中为0·59。两种物种的簇生根和非簇生根在Gly上摄取标记的速率没有差异。植物中C:N和 13 C: 15 N的比例依次增加:由于两个物种的标记根<其余根<芽,在两个物种中结论羽扇豆的簇状根比非簇状根更能获得更多的完整Gly,结论是羽扇豆的簇状和非簇状根对Gly的吸收具有可比性。讨论了簇根的吸收能力与自然环境中空间和形态特征的关系。

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