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Cool Temperature-Induced Chlorosis in Rice Plants (II. Effects of Cool Temperature on the Expression of Plastid-Encoded Genes during Shoot Growth in Darkness).

机译:水稻中低温诱导的绿化作用(II。低温对黑暗中枝条生长过程中质体编码基因表达的影响)。

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摘要

It has been proposed that cool temperature-induced chlorosis (CTIC) in Indica cultivars of rice (Oryza sativa L.) is caused by cell growth and plastid development being impeded at cool temperatures. Since it is well known that the overall rate of transcription of plastid-encoded genes changes dramatically during the early phases of plastid development, in this study we focused on the patterns of expression of these genes. Northern blot analysis revealed that the level of 16S rRNA is decreased in a CTIC-sensitive rice cultivar grown at a cool temperature. The expression of the gene for the [beta] subunit of plasmid RNA polymerase (rpoB) was shown to be somewhat disturbed, particularly in terms of its resuppression under cool conditions. The level of transcripts or proteins of plastid-encoded photosynthetic genes was also decreased in a CTIC-sensitive cultivar at a cool temperature. These results suggest that the temperature-dependent inhibition of the onset of gene expression encoding the transcription/translation apparatus may be primarily involved in the mechanism causing CTIC.
机译:已经提出,在低温下,cell稻(Oryza sativa L.)栽培品种的低温诱导绿化(CTIC)是由于细胞生长和质体发育受到阻碍而引起的。由于众所周知,质体编码基因的总体转录速率在质体发育的早期会发生巨大变化,因此在本研究中,我们着重研究了这些基因的表达模式。 Northern印迹分析显示,在低温下生长的对CTIC敏感的水稻品种中16S rRNA的水平降低。已显示出质粒RNA聚合酶(rpoB)的β亚基的基因表达受到一定程度的干扰,特别是在凉爽条件下的抑制下。在低温下,对CTIC敏感的品种中质体编码的光合基因的转录本或蛋白质水平也降低了。这些结果表明,编码转录/翻译装置的基因表达开始的温度依赖性抑制可能主要与引起CTIC的机制有关。

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