15N - nitrate uptake and nitrogen exchange in the bionts of the lichen Parmelia sulcata

被引:2
|
作者
Pavlova, Elena A. [1 ]
Kuzmin, A. N. [1 ]
Pozdnyakov, N. V. [1 ]
Maslov, A. I. [1 ]
机构
[1] Russian Acad Sci, Inst Basic Biol Problems, Ul Inst Skaya 2, Moscow 142290, Russia
关键词
Lichen; Mycobiont; Nitrogen metabolism; Parmelia sulcata; Photobiont; Symbiosis; FREE AMINO-ACIDS; METABOLISM; CARBON;
D O I
10.1007/s13199-016-0451-6
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Nitrate uptake and nitrogen inclusion into amino acids were studied in the intact thallus and isolated bionts of the lichen Parmelia sulcata with the aid of mass spectroscopic tracing of heavy isotope N-15. The isolated photobiont, the green algae Trebouxia sp. did not take up nitrate, whereas the mycobiont and intact thalli were enriched in N-15 when incubated with (NaNO3)-N-15. Pulse feeding experiments with intact thalli followed by separation of photobiont showed that the labelled nitrate was originally assimilated by the mycobiont and only after that was detected in the photobiont. The isolated mycobiont after pulse labeling excreted labeled compounds into the incubation medium. Amino acids were detected in the exudate. The quantities of two amino acids considerably exceeded those of the others. One was identified as alanine, the other could not yet be identified with certainty. Both of these high-quantity compounds were also much more enriched in N-15 than the others. These two compounds are proposed to be the transport forms of nitrogen within the Parmelia sulcata thallus.
引用
收藏
页码:117 / 121
页数:5
相关论文
共 50 条
  • [41] Differential contribution of arbuscular mycorrhizal fungi to plant nitrate uptake (15N) under increasing N supply to the soil
    Azcón, R.
    Ruiz-Lozano, J.M.
    Rodríguez, R.
    Canadian Journal of Botany, 2001, 79 (10): : 1175 - 1180
  • [42] Examining the fate of WWTP effluent nitrogen using δ15N–NH4+, δ15N–NO3− and δ15N of submersed macrophytes
    Jennifer L. A. Hood
    William D. Taylor
    Sherry L. Schiff
    Aquatic Sciences, 2014, 76 : 243 - 258
  • [43] Determination of experimentally enriched 15N in nitrate nitrogen based on an improved method of azo dye formation
    Yakushiji H.
    Kanda J.
    Journal of Oceanography, 1998, 54 (4) : 337 - 342
  • [44] The effect of benthic nitrogen cycling on the δ15N and δ18O of water-column nitrate
    Lehmann, MF
    Sigman, DM
    Berelson, WM
    GEOCHIMICA ET COSMOCHIMICA ACTA, 2003, 67 (18) : A249 - A249
  • [45] Nitrogen uptake and assimilation in Enteromorpha intestinalis (L.) Link (Chlorophyta):: using 15N to determine preference during simultaneous pulses of nitrate and ammonium
    Cohen, RA
    Fong, P
    JOURNAL OF EXPERIMENTAL MARINE BIOLOGY AND ECOLOGY, 2004, 309 (01) : 67 - 77
  • [46] Soil surfactants applied with 15N labeled urea increases bermudagrass uptake of nitrogen and reduces nitrogen leaching#
    Abagandura, Gandura Omar
    Park, Dara
    Bridges, William C., Jr.
    Brown, Kristen
    JOURNAL OF PLANT NUTRITION AND SOIL SCIENCE, 2021, 184 (03) : 378 - 387
  • [47] SEASONAL UPTAKE OF N-15-NITRATE AND DISTRIBUTION OF ABSORBED NITROGEN IN PEACH-TREES
    MUNOZ, N
    GUERRI, J
    LEGAZ, F
    PRIMOMILLO, E
    PLANT AND SOIL, 1993, 150 (02) : 263 - 269
  • [48] Determination of 15N nitrate and nitrite in spiked natural waters
    Kieber, RJ
    Bullard, L
    Seaton, PJ
    ANALYTICAL CHEMISTRY, 1998, 70 (18) : 3969 - 3973
  • [49] Synthesis and 15N NMR Signal Amplification by Reversible Exchange of [15N]Dalfampridine at Microtesla Magnetic Fields
    Chukanov, Nikita V.
    Salnikov, Oleg G.
    Trofimov, Ivan A.
    Kabir, Mohammad S. H.
    Kovtunov, Kirill V.
    Koptyug, Igor V.
    Chekmenev, Eduard Y.
    CHEMPHYSCHEM, 2021, 22 (10) : 960 - 967
  • [50] Stream denitrification and total nitrate uptake rates measured using a field 15N tracer addition approach
    Mulholland, PJ
    Valett, HM
    Webster, JR
    Thomas, SA
    Cooper, LW
    Hamilton, SK
    Peterson, BJ
    LIMNOLOGY AND OCEANOGRAPHY, 2004, 49 (03) : 809 - 820