首页> 美国卫生研究院文献>Plant Physiology >Reduced Activity of Geranylgeranyl Reductase Leads to Loss of Chlorophyll and Tocopherol and to Partially Geranylgeranylated Chlorophyll in Transgenic Tobacco Plants Expressing Antisense RNA for Geranylgeranyl Reductase
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Reduced Activity of Geranylgeranyl Reductase Leads to Loss of Chlorophyll and Tocopherol and to Partially Geranylgeranylated Chlorophyll in Transgenic Tobacco Plants Expressing Antisense RNA for Geranylgeranyl Reductase

机译:Geranylgeranyl还原酶的活性降低导致叶绿素和geranyl还原酶的反义RNA的转基因烟草植物中叶绿素和生育酚的损失以及部分Geranylgeranylated叶绿素的损失。

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摘要

The enzyme geranylgeranyl reductase (CHL P) catalyzes the reduction of geranylgeranyl diphosphate to phytyl diphosphate. We identified a tobacco (Nicotiana tabacum) cDNA sequence encoding a 52-kD precursor protein homologous to the Arabidopsis and bacterial CHL P. The effects of deficient CHL P activity on chlorophyll (Chl) and tocopherol contents were studied in transgenic plants expressing antisense CHL P RNA. Transformants with gradually reduced Chl P expression showed a delayed growth rate and a pale or variegated phenotype. Transformants grown in high (500 μmol m−2 s−1; HL) and low (70 μmol photon m−2 s−1; LL) light displayed a similar degree of reduced tocopherol content during leaf development, although growth of wild-type plants in HL conditions led to up to a 2-fold increase in tocopherol content. The total Chl content was more rapidly reduced during HL than LL conditions. Up to 58% of the Chl content was esterified with geranylgeraniol instead of phytol under LL conditions. Our results indicate that CHL P provides phytol for both tocopherol and Chl synthesis. The transformants are a valuable model with which to investigate the adaptation of plants with modified tocopherol levels against deleterious environmental conditions.
机译:Geranylgeranyl还原酶(CHL P)催化将Geranylgeranyl diphosphate还原为植酸二磷酸酯。我们鉴定了编码与拟南芥和细菌CHL P同源的52 kD前体蛋白的烟草(Nicotiana tabacum)cDNA序列。在表达反义CHL P的转基因植物中研究了CHL P活性不足对叶绿素(Chl)和生育酚含量的影响。 RNA。具有逐渐降低的ChIP表达的转化体显示出延迟的生长速率和浅色或杂色表型。在高(500μmolm −2 s -1 ; HL)和低(70μmol光子m −2 s -1 ; LL)光在叶片发育过程中显示出相似的降低的生育酚含量,尽管在HL条件下野生型植物的生长导致生育酚含量增加了2倍。在HL条件下,总的Chl含量比LL条件下的下降更快。在LL条件下,用香叶基香叶醇而不是植醇酯化了多达58%的Chl。我们的结果表明,CHL P为生育酚和Chl的合成提供了植物醇。转化子是一种有价值的模型,通过该模型可以研究生育酚水平提高的植物对有害环境条件的适应性。

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