Kyushu University, Hakozaki 6-10-1, Fukuoka 812-8581, Japan.
Mol Plant. 2012 May;5(3):611-8. doi: 10.1093/mp/ssr119. Epub 2012 Jan 20.
Phytochromes in seed plants are known to move into nuclei in a red light-dependent manner with or without interacting factors. Here, we show phytochrome relocation to the nuclear region in phytochrome-dependent Adiantum capillus-veneris spore germination by partial spore-irradiation experiments. The nuclear or non-nuclear region of imbibed spores was irradiated with a microbeam of red and/or far-red light and the localization of phytochrome involved in spore germination was estimated from the germination rate. The phytochrome for spore germination existed throughout whole spore under darkness after imbibition, but gradually migrated to the nuclear region following red light irradiation. Intracellular distribution of PHY-GUS fusion proteins expressed in germinated spores by particle bombardment showed the migration of Acphy2, but not Acphy1, into nucleus in a red light-dependent manner, suggesting that Acphy2 is the photoreceptor for fern spore germination.
已知在种子植物中,光敏色素在有或没有相互作用因子的情况下,以红光依赖的方式进入细胞核。在这里,我们通过部分孢子辐照实验显示,在光敏色素依赖的凤尾蕨孢子萌发中,光敏色素向核区的重新定位。用红和/或远红光束对吸胀孢子的核或非核区进行辐照,并根据萌发率来估计参与孢子萌发的光敏色素的定位。在黑暗中吸胀后,整个孢子中都存在萌发所必需的光敏色素,但在红光照射后,它逐渐迁移到核区。通过粒子轰击在萌发孢子中表达的 PHY-GUS 融合蛋白的细胞内分布显示,Acphy2 而不是 Acphy1 以红光依赖的方式进入细胞核,表明 Acphy2 是蕨类植物孢子萌发的光受体。