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    Online Resource
    Online Resource
    Oxford University Press (OUP) ; 2002
    In:  Plant Physiology Vol. 128, No. 2 ( 2002-02-01), p. 634-642
    In: Plant Physiology, Oxford University Press (OUP), Vol. 128, No. 2 ( 2002-02-01), p. 634-642
    Abstract: In a search for potassium channels involved in light- and clock-regulated leaf movements, we cloned four putative K channel genes from the leaf-moving organs, pulvini, of the legume Samanea saman. The S. saman SPOCK1 is homologous to KCO1, an Arabidopsis two-pore-domain K channel, the S. saman SPORK1 is similar to SKOR and GORK, Arabidopsis outward-rectifying Shaker-like K channels, and theS. saman SPICK1 and SPICK2 are homologous to AKT2, a weakly-inward-rectifying Shaker-like Arabidopsis K channel. All four S. saman sequences possess the universal K-channel-specific pore signature, TXXTXGYG, strongly suggesting a role in transmembrane K+ transport. The fourS. saman genes had different expression patterns within four leaf parts: ‘extensor’ and ‘flexor’ (the motor tissues), the leaf blades (mainly mesophyll), and the vascular bundle (‘rachis’). Based on northern blot analysis, their transcript level was correlated with the rhythmic leaf movements: (a) all four genes were regulated diurnally (Spick2, Spork1, andSpock1 in extensor and flexor, Spick1 in extensor and rachis); (b) Spork1 andSpock1 rhythms were inverted upon the inversion of the day-night cycle; and (c) in extensor and/or flexor, the expression ofSpork1, Spick1, and Spick2was also under a circadian control. These findings parallel the circadian rhythm shown to govern the resting membrane K+permeability in extensor and flexor protoplasts and the susceptibility of this permeability to light stimulation (Kim et al., 1993). Thus,Samanea pulvinar motor cells are the first described system combining light and circadian regulation of K channels at the level of transcript and membrane transport.
    Type of Medium: Online Resource
    ISSN: 1532-2548 , 0032-0889
    RVK:
    Language: English
    Publisher: Oxford University Press (OUP)
    Publication Date: 2002
    detail.hit.zdb_id: 2004346-6
    detail.hit.zdb_id: 208914-2
    SSG: 12
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