Institut Jean-Pierre Bourgin, IJPB, Unité de Nutrition Azotée des Plantes, UNAP, UR511, INRA, Route de Saint Cyr, F-78000 Versailles, France.
J Exp Bot. 2010 May;61(9):2293-302. doi: 10.1093/jxb/erq059. Epub 2010 Mar 17.
Eighteen accessions of Arabidopsis thaliana were grown with low (N-) and high (N+) nitrogen supply. N uptake was monitored by feeding plants with 15N-enriched nutritive solution over 24 h. Biomass [fresh matter (FM) and dry matter (DM)], N concentration (N%), and 15N content were monitored and computed to determine the nitrogen use efficiency (NUE) and nitrogen uptake efficiency (NupE). NUE has been estimated as the ratio between biomass and N concentration (DM/N%) and NupE as the concentration of 15N in plants [microg (g(-1) DM)]. Accession traits were analysed to detect common and individual genotype features. The genetic variation in NUE at high N input was mainly explained by variation in N uptake. Even though plants managed N uptake and N metabolism differently under N+ and N-, NUE was similar in these two conditions, showing that NUE was exclusively genetically determined. Hierarchical classification revealed that the physiological classes arising were similar under N- and N+. Both wasteful and efficient genotypes were detected. Three extreme genotypes, Col-0, Bur-0, and Tsu-0, were noted. Bur-0 and Tsu-0 exhibited high NUE and large biomass. Col-0 showed the reverse: low NUE and low biomass. Bur-0 appeared poorly tolerant of a high N supply. The present data will facilitate the choice of Arabidopsis accessions as parents of recombinant inbred line populations suitable for the mapping of quantitiative trait loci related to NUE, NupE, and N storage capacity.
十八个拟南芥品系在低氮(N-)和高氮(N+)供应下生长。通过在 24 小时内用 15N 富集营养液喂养植物来监测氮吸收。监测和计算生物量[新鲜物质(FM)和干物质(DM)]、氮浓度(N%)和 15N 含量,以确定氮利用效率(NUE)和氮吸收效率(NupE)。NUE 被估计为生物量与氮浓度(DM/N%)的比值,NupE 为植物中 15N 的浓度[微克(g(-1)DM)]。分析了品系特征,以检测共同和个体基因型特征。在高氮输入下,NUE 的遗传变异主要由氮吸收的变异解释。尽管植物在 N+和 N-下对氮吸收和氮代谢的管理方式不同,但在这两种条件下,NUE 是相似的,表明 NUE 完全由遗传决定。层次分类表明,在 N-和 N+下出现的生理类群相似。在 N-和 N+条件下,都检测到了浪费和高效的基因型。三个极端基因型 Col-0、Bur-0 和 Tsu-0 被注意到。Bur-0 和 Tsu-0 表现出高的 NUE 和大的生物量。Col-0 则相反:低 NUE 和低生物量。Bur-0 似乎对高氮供应的耐受性差。本数据将有助于选择拟南芥品系作为重组自交系群体的亲本,这些群体适合于与 NUE、NupE 和 N 储存能力相关的数量性状基因座的图谱绘制。