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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >The effect of pds gene silencing on chloroplast pigment composition, thylakoid membrane structure and photosynthesis efficiency in tobacco plants
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The effect of pds gene silencing on chloroplast pigment composition, thylakoid membrane structure and photosynthesis efficiency in tobacco plants

机译:pds基因沉默对烟草植物叶绿体色素组成,类囊体膜结构和光合作用效率的影响

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摘要

Nicotiana tabacum plants that are silenced in pds gene have been constructed by RNAi technology. Transgenics showed different degrees of albinism and PSII efficiency was decreased significantly compared to wild type plants. The total carotenoid contents decreased. The ratio of chlorophyll (Chl) a to b was unchanged while the content of both declined. The grana stacking of thylakoid in variegation part was as normal as in the control and etioplast occurred in the white sector of leaf. The concentration of thylakoid membrane protein of molecular weight about 20 kDa was significantly increased compared to wild type plants according to the same contents of Chl. These observations suggest the exact matching of pigments and proteins is important for energy absorption and transfer in photosynthesis and mismatching of them could cause malfunction of PSII.
机译:通过RNAi技术已经构建了在pds基因中沉默的烟草植物。转基因植物显示出不同程度的白化病,与野生型植物相比,PSII效率显着降低。总类胡萝卜素含量下降。叶绿素(Chl)a与b的比例不变,但两者的含量均下降。类杂豆体在杂色部分的粒状堆积与对照一样正常,并且原生质体发生在叶的白色部分。根据相同的Chl含量,与野生型植物相比,分子量约20kDa的类囊体膜蛋白的浓度显着增加。这些观察结果表明,色素和蛋白质的精确匹配对于光合作用中的能量吸收和转移非常重要,而它们的不匹配会导致PSII的功能失常。

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