Literature DB >> 15059764

Spatial and seasonal variation in amino compounds in the xylem sap of a mistletoe (Viscum album) and its hosts (Populus spp. and Abies alba).

Peter Escher1, Monika Eiblmeier, Ilka Hetzger, Heinz Rennenberg.   

Abstract

In a field study, the composition and concentrations of amino compounds in the xylem sap of the mistletoe, Viscum album L., and in the xylem sap of two host species, an evergreen conifer (Abies alba Mill.) and a deciduous broad-leaved tree (Populus x euramericana), were analyzed. The xylem sap of both hosts and mistletoe contained large, but similar amounts of total organic nitrogen in low molecular weight amino compounds (TONLW). Nevertheless, individual amino compounds accumulated in the xylem sap of mistletoe relative to the host xylem sap, indicating selective uptake. In the xylem sap of Populus, major amino compounds (asparagine (Asn) and glutamine (Gln)) and the bulk parameters, TONLW and proteinogenic amino acids, showed significant seasonal variation. In Abies and in mistletoe on either host, variation of amino compounds in xylem sap was largely explained by inter-annual differences, not by seasonal variation. In both hosts, TONLW in the xylem sap was dominated by Gln. There was a steady decrease in relative abundance of Gln from the host xylem sap to the mistletoe xylem sap and to the stems and leaves of mistletoe. Simultaneously, the abundance of arginine (Arg) increased. Arginine was the predominant amino compound in the stems and leaves of mistletoe, occurring at concentrations previously observed only in leaves of trees exposed to excess nitrogen. We conclude that Gln (2 mol N mol(-1)) delivered by the host xylem sap is converted, in mistletoe, to Arg (4 mol N mol(-1)) and that the organic carbon liberated from Gln contributes significantly to the parasite's heterotrophic carbon gain. Statistical analyses of the data support this conclusion. Accumulation of Arg in mistletoe is an indication of excess N supply as a result of the uptake of amino compounds from the host xylem sap and a lack of phloem uploading.

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Year:  2004        PMID: 15059764     DOI: 10.1093/treephys/24.6.639

Source DB:  PubMed          Journal:  Tree Physiol        ISSN: 0829-318X            Impact factor:   4.196


  6 in total

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Authors:  Marina Corrêa Scalon; Davi Rodrigo Rossatto; Fabricius Maia Chaves Bicalho Domingos; Augusto Cesar Franco
Journal:  Oecologia       Date:  2015-12-19       Impact factor: 3.225

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3.  There Is No Carbon Transfer Between Scots Pine and Pine Mistletoe but the Assimilation Capacity of the Hemiparasite Is Constrained by Host Water Use Under Dry Conditions.

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4.  Multi-Spectroscopic Analysis of Seed Quality and 13C-Stable-Iotopologue Monitoring in Initial Growth Metabolism of Jatropha curcas L.

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5.  Functional Research on Three Presumed Asparagine Synthetase Family Members in Poplar.

Authors:  Chunpu Qu; Bingqing Hao; Xiuyue Xu; Yuchen Wang; Chengjun Yang; Zhiru Xu; Guanjun Liu
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6.  Untargeted metabolomics approach to discriminate mistletoe commercial products.

Authors:  Cécile Vanhaverbeke; David Touboul; Nicolas Elie; Martine Prévost; Cécile Meunier; Sylvie Michelland; Valérie Cunin; Ling Ma; David Vermijlen; Cédric Delporte; Stéphanie Pochet; Audrey Le Gouellec; Michel Sève; Pierre Van Antwerpen; Florence Souard
Journal:  Sci Rep       Date:  2021-07-09       Impact factor: 4.379

  6 in total

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