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首页> 外文期刊>Photosynthesis Research >Cool temperatures interfere with D1 synthesis in tomato by causing ribosomal pausing
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Cool temperatures interfere with D1 synthesis in tomato by causing ribosomal pausing

机译:低温会导致核糖体暂停,从而干扰番茄中D1的合成

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摘要

Photodamage occurs when leaves are exposed to light in excess of what can be used for photosynthesis and in excess of the capacity of ancillary photoprotective as well as repair mechanisms. An important site of photodamage is the chloroplast encoded D1 protein, a component of the photosystem II (PSII) reaction center. Even under optimal growth irradiance, D1 is photodamaged necessitating rapid turnover to prevent the accumulation of photodamaged PSII reaction centers and consequent inhibition of photosynthesis. However, this on-going process of D1 turnover and replacement was impeded in the chilling-sensitive tomato (Solanum lycopersicum) plants when exposed to high-growth light at cool temperature. The decrease in D1 turnover and replacement was found not to be due to changes in the steady-state level of the psbA message. While the recruitment of ribosomes to psbA transcript, initiation of D1 translation, and the association of polysomes with the thylakoid membrane occurred normally, chilling temperatures caused ribosomal pausing during D1 peptide elongation in tomato. The pause locations were non-randomly located on the D1 transcript. The interference with translation caused by ribosomal pausing allowed photodamaged PSII centers to accumulate leading to the consequent inhibition of photosynthesis.
机译:当叶片暴露于光合作用的光,辅助光保护和修复机制的光中时,就会发生光损伤。光损伤的重要部位是叶绿体编码的D1蛋白,它是光系统II(PSII)反应中心的组成部分。即使在最佳的生长辐照度下,D1也会受到光损伤,因此必须快速周转,以防止光损伤的PSII反应中心的积累并因此抑制光合作用。但是,当在低温下暴露于高生长光下时,这种对D1持续转换和替换的过程在对低温敏感的番茄(Solanum lycopersicum)植物中受到阻碍。发现D1转换和替换的减少不是由于psbA消息的稳态水平的变化。正常情况下,核糖体募集到psbA转录物,D1翻译的起始以及类囊体与类囊体膜的结合均发生,而寒冷的温度导致番茄D1肽伸长期间核糖体暂停。暂停位置非随机地位于D1成绩单上。由核糖体暂停引起的翻译干扰使光损伤的PSII中心得以积累,从而导致光合作用受到抑制。

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