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Phototropism of Thalli and Rhizoids Developed from the Thallus Segments of Bryopsis hypnoides Lamouroux 被引量:2

Phototropism of Thalli and Rhizoids Developed from the Thallus Segments of Bryopsis hypnoides Lamouroux
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摘要 Newly regenerated thalli were used to study the phototropism of Bryopsis hypnoides Lamouroux under different qualities of light. Positive phototropism in the thalli and negative phototropiam In the rhizoida of B. hypnoides were investigated and analyzed in terms of bending. Both thaiii and rhlzoids developed from thallus segments exhibited typical tip growth, and their photoreceptive sites for phototroplam were also restricted to the apical hemisphere. The bending curvature of rhizoids and thalli were determined with unilateral lights at various wavelengths and different fluence rates after a fixed duration of Illumination. The trends of bending from the rhizoid and thallus were coincident, which showed that the action spectrum had a large range, from ultraviolet radiation (366.5 nm) to green light (524 nm). Based on the bending curvatures, blue light had the highest efficiency, while the efficiency of longer wavelengths (〉500 nm) was significantly lower. External Ca^2+ had no effect on the bending curvature of thalli and rhlzolda. Blue light (440 nm) induced thallus branching from rhizoids, while red light (650 nm) had no such effect. Fast-occurring chloroplast accumulation In the outermost cytoplasmic layer of the blue light (440 nm)-Irradiated region In the rhizoid was observed, from which protrusions (new thalli) arose after 4 h of the onset of illumination, and this action was thought to be driven by the dynamics of actin microfilamenta. Newly regenerated thalli were used to study the phototropism of Bryopsis hypnoides Lamouroux under different qualities of light. Positive phototropism in the thalli and negative phototropiam In the rhizoida of B. hypnoides were investigated and analyzed in terms of bending. Both thaiii and rhlzoids developed from thallus segments exhibited typical tip growth, and their photoreceptive sites for phototroplam were also restricted to the apical hemisphere. The bending curvature of rhizoids and thalli were determined with unilateral lights at various wavelengths and different fluence rates after a fixed duration of Illumination. The trends of bending from the rhizoid and thallus were coincident, which showed that the action spectrum had a large range, from ultraviolet radiation (366.5 nm) to green light (524 nm). Based on the bending curvatures, blue light had the highest efficiency, while the efficiency of longer wavelengths (〉500 nm) was significantly lower. External Ca^2+ had no effect on the bending curvature of thalli and rhlzolda. Blue light (440 nm) induced thallus branching from rhizoids, while red light (650 nm) had no such effect. Fast-occurring chloroplast accumulation In the outermost cytoplasmic layer of the blue light (440 nm)-Irradiated region In the rhizoid was observed, from which protrusions (new thalli) arose after 4 h of the onset of illumination, and this action was thought to be driven by the dynamics of actin microfilamenta.
出处 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2006年第6期686-691,共6页 植物学报(英文版)
基金 Supported by the National Natural Science Foundation of China(30170499, 40476059,and 39890390) the Knowledge Innovation Program of the Chinese Academy of Sciences(KZCX2-211) the Hi-Tech Research and Development(863) Program of China(2004AA603220)
关键词 Bryopsis hypnoides chloroplast accumulation PHOTOTROPISM RHIZOID THALLUS Bryopsis hypnoides chloroplast accumulation phototropism rhizoid thallus
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参考文献27

  • 1Berthold G (1882).Beitrage zur morphologie und physiologie der meeresalgen.Jahrb Wiss Bot 13,569-717.
  • 2Blatt MR,Briggs W R (1980).Blue-light-induced cortical fiber reticulation concomitant with chloroplast aggregation in the alga Vaucheria sessilis.Planta 147,355-362.
  • 3Blatt MR,Weisenseel MH (1980).Blue light stimulates a local electric current efflux in the alga Vaucheria sessilis.Carnegie Inst Wash Year Book 1979,123-125.
  • 4Blatt MR,Wessels NK,Briggs WR (1980).Actin and cortical fiber reticulation in the siphonaceous alga Vaucheria sessilis.Planta 147,363-375.
  • 5Blatt MR (1983).The action spectrum for the chloroplast movements and evidence for blue-light-photoreceptor cycling in the alga Vaucheria.Planta 159,267-276.
  • 6Briggs WR,Olney MA (2001).Photoreceptors in plant photomorphogenesis to date,five phytochromes,two crytochromes,one phototropin,and one superchrome.Plant Physiol 125,85-88.
  • 7Christie JM,Salomon M,Nozue K,Wada M,Briggs WR (1999).LOV (light,oxygen,or voltage) domains of the blue-light photoreceptor phototropin (nphl):Binding sites for the chromophore flavin mononucleotide.Proc Natl Acad Sci USA 96,8779-8783.
  • 8Darwin C (1880).The Power of Movement in Plants.John Murray,London.
  • 9Darsie ML (1939).Certain Aspects of Phototropism,Growth and Polarity in the Single Celled Marine Alga,Bryopsis.PhD.Dissertation,Stanford University,Stanford.
  • 10Ebrey TG (2002).A new type of photoreceptor in algae.Proc Natl Acad Sci USA 99,8463-8464.

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