Sugimoto Hiroki, Kusumi Kensuke, Tozawa Yuzuru, Yazaki Junshi, Kishimoto Naoki, Kikuchi Shoshi, Iba Koh
Department of Biology, Faculty of Science, Kyushu University, Fukuoka, 812-8581 Japan.
Plant Cell Physiol. 2004 Aug;45(8):985-96. doi: 10.1093/pcp/pch111.
The rice virescent-2 mutant (v(2)) is temperature conditional and develops chlorotic, chloroplast-deficient leaves at the restrictive temperature. In the v(2) mutant, plastid-encoded proteins involved in photosynthesis and plastid transcriptional regulation were not detectable at any time during chloroplast differentiation. However, the plastid transcripts for these two classes of proteins behaved differently in the mutant, with those for the plastid transcription/translation apparatus accumulating to wild-type levels and those for photosynthetic apparatus being suppressed. Polysome analysis showed that translation of the plastid transcripts encoding the plastid transcription/translation apparatus was blocked at an early stage of chloroplast differentiation. Accumulation of transcripts of nuclear-encoded photosynthetic genes, such as cab and rbcS, was strongly suppressed in the mutant at later stages of chloroplast differentiation, whereas transcripts of genes for the plastid transcription apparatus, such as OsRpoTp and OsSIG2A, accumulated to abnormally high levels at these stages. These results suggest that activation of the plastid translation machinery at an early stage of chloroplast differentiation is important for triggering the transmission of information about plastid developmental state to the nucleus, which in turn is required for the induction of nuclear-encoded chloroplast proteins at later stages of chloroplast differentiation.
水稻黄绿叶突变体2(v(2))是温度条件型的,在限制温度下会发育出黄化、叶绿体缺失的叶片。在v(2)突变体中,参与光合作用和叶绿体转录调控的质体编码蛋白在叶绿体分化的任何阶段都检测不到。然而,这两类蛋白的质体转录本在突变体中的表现不同,质体转录/翻译装置的转录本积累到野生型水平,而光合装置的转录本受到抑制。多核糖体分析表明,编码质体转录/翻译装置的质体转录本的翻译在叶绿体分化的早期阶段就被阻断。在叶绿体分化后期,突变体中核编码光合基因(如cab和rbcS)的转录本积累受到强烈抑制,而在这些阶段,质体转录装置基因(如OsRpoTp和OsSIG2A)的转录本积累到异常高水平。这些结果表明,叶绿体分化早期质体翻译机制的激活对于触发质体发育状态信息向细胞核的传递很重要,而这反过来又是叶绿体分化后期诱导核编码叶绿体蛋白所必需的。