Montgomery B L, Yeh K C, Crepeau M W, Lagarias J C
Section of Molecular and Cellular Biology, One Shields Avenue, University of California, Davis, California 95616, USA.
Plant Physiol. 1999 Oct;121(2):629-39. doi: 10.1104/pp.121.2.629.
The phenotypic consequences of targeted expression of mammalian biliverdin IXalpha reductase (BVR), an enzyme that metabolically inactivates the linear tetrapyrrole precursors of the phytochrome chromophore, are addressed in this investigation. Through comparative phenotypic analyses of multiple plastid-targeted and cytosolic BVR transgenic Arabidopsis plant lines, we show that the subcellular localization of BVR affects distinct subsets of light-mediated and light-independent processes in plant growth and development. Regardless of its cellular localization, BVR suppresses the phytochrome-modulated responses of hypocotyl growth inhibition, sucrose-stimulated anthocyanin accumulation, and inhibition of floral initiation. By contrast, reduced protochlorophyll levels in dark-grown seedlings and fluence-rate-dependent reduction of chlorophyll occur only in transgenic plants in which BVR is targeted to plastids. Together with companion analyses of the phytochrome chromophore-deficient hy1 mutant, our results suggest a regulatory role for linear tetrapyrroles within the plastid compartment distinct from their assembly with apophytochromes in the cytosol.
本研究探讨了哺乳动物胆绿素IXα还原酶(BVR)靶向表达的表型后果,该酶可代谢失活植物色素发色团的线性四吡咯前体。通过对多个质体靶向和胞质BVR转基因拟南芥株系的比较表型分析,我们发现BVR的亚细胞定位影响植物生长和发育中光介导和光非依赖过程的不同子集。无论其细胞定位如何,BVR均抑制植物色素调节的下胚轴生长抑制、蔗糖刺激的花青素积累和花起始抑制反应。相比之下,黑暗生长幼苗中原叶绿素水平降低以及叶绿素的光通量率依赖性降低仅发生在BVR靶向质体的转基因植物中。结合对缺乏植物色素发色团的hy1突变体的伴随分析,我们的结果表明质体内线性四吡咯具有不同于其在胞质溶胶中与脱辅基植物色素组装的调节作用。