• Title of article

    Preferential accumulation of betaine uncoupled to choline monooxygenase in young leaves of sugar beet – Importance of long-distance translocation of betaine under normal and salt-stressed conditions

  • Author/Authors

    Nana Yamada، نويسنده , , Worrawat Promden، نويسنده , , Koji Yamane، نويسنده , , Hideto Tamagake، نويسنده , , Takashi Hibino، نويسنده , , Yoshito Tanaka، نويسنده , , Teruhiro Takabe، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2009
  • Pages
    13
  • From page
    2058
  • To page
    2070
  • Abstract
    It has been reported that glycinebetaine (betaine) is synthesized in response to abiotic stresses via a two-step oxidation of choline in which choline monooxygenase (CMO) and betaine aldehyde dehydrogenase (BADH) are involved. Here we show that significant amounts of betaine, >20 μmol/gFW, accumulated in young leaves of Beta vulgaris even under normal growth conditions, whereas levels in old leaves, cotyledons, hypocotyls, and roots were low. Under the same conditions, CMO accumulates exclusively in old leaves and is difficult to be detected in young leaves. By contrast, the levels of BADH were high in all tissues. Exogenously supplied choline was converted into betaine in old leaves, but levels were significantly lower in young leaves under the same conditions. When d11-betaine was applied exogenously to old leaves, it was translocated preferentially into young leaves and roots. In response to salt stress, betaine levels increased in all tissues, but most significantly increased in young leaves. The levels of CMO increased in various tissues, but were low in young leaves. A betaine transporter gene was isolated. Its expression was more strongly induced in old leaves than in young leaves. Based on these data, we discussed the role of CMO and betaine transporter under stress and non-stress conditions.
  • Keywords
    salt stress , Choline monooxygenase , Sugar beet , betaine transport , Betaine synthesis
  • Journal title
    Journal of Plant Physiology
  • Serial Year
    2009
  • Journal title
    Journal of Plant Physiology
  • Record number

    1281749