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Ectopic Overexpression of The Transcription Factor OsGLK1 Induces Chloroplast Development in Non-Green Rice Cells

机译:异位转录因子OsGLK1的过表达诱导非绿色水稻细胞中叶绿体的发育。

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摘要

For systematic and genome-wide analyses of rice gene functions, we took advantage of the full-length cDNA overexpresser (FOX) gene-hunting system and generated >12 000 independent FOX-rice lines from >25 000 rice calli treated with the rice-FOX Agrobacterium library. We found two FOX-rice lines generating green calli on a callus-inducing medium containing 2,4-D, on which wild-type rice calli became ivory yellow. In both lines, OsGLK1 cDNA encoding a GARP transcription factor was ectopically overexpressed. Using rice expression-microarray and northern blot analyses, we found that a large number of nucleus-encoded genes involved in chloroplast functions were highly expressed and transcripts of plastid-encoded genes, psaA, psbA and rbcL, increased in the OsGLK1-FOX calli. Transmission electron microscopy showed the existence of differentiated chloroplasts with grana stacks in OsGLK1-FOX calli cells. However, in darkness, OsGLK1-FOX calli did not show a green color or develop grana stacks. Furthermore, we found developed chloroplasts in vascular bundle and bundle sheath cells of coleoptiles and leaves from OsGLK1-FOX seedlings. The OsGLK1-FOX calli exhibited high photosynthetic activity and were able to grow on sucrose-depleted media, indicating that developed chloroplasts in OsGLK1-FOX rice calli are functional and active. We also observed that the endogenous OsGLK1 mRNA level increased synchronously with the greening of wild-type calli after transfer to plantlet regeneration medium. These results strongly suggest that OsGLK1 regulates chloroplast development under the control of light and phytohormones, and that it is a key regulator of chloroplast development.
机译:为了对水稻基因功能进行系统和全基因组分析,我们利用了全长cDNA过表达(FOX)基因狩猎系统,并从经过25-000个水稻愈伤组织处理的水稻愈伤组织中产生了> 12 000个独立的FOX-水稻系, FOX农杆菌文库。我们在含有2,4-D的愈伤组织诱导培养基上发现了两条FOX-大米系,产生绿色愈伤组织,其上的野生型水稻愈伤组织变成了象牙黄色。在这两行中,编码GARP转录因子的OsGLK1 cDNA在异位过表达。使用水稻表达微阵列和Northern印迹分析,我们发现OsGLK1-FOX愈伤组织中大量表达了参与叶绿体功能的核编码基因,质体编码基因psaA,psbA和rbcL的转录本增加。透射电子显微镜显示在OsGLK1-FOX愈伤组织细胞中存在着具有颗粒堆叠的分化叶绿体。但是,在黑暗中,OsGLK1-FOX愈伤组织没有显示绿色或形成格兰娜堆栈。此外,我们在胚芽鞘和Os​​GLK1-FOX幼苗的叶片的血管束和束鞘细胞中发现了叶绿体。 OsGLK1-FOX愈伤组织表现出高的光合作用活性,并且能够在缺蔗糖的培养基上生长,这表明OsGLK1-FOX水稻愈伤组织中发育的叶绿体具有功能性和活性。我们还观察到内源性OsGLK1 mRNA水平与野生型愈伤组织的绿化同步转移到小植株再生培养基后增加。这些结果强烈表明,OsGLK1在光和植物激素的控制下调节叶绿体的发育,并且它是叶绿体发育的关键调节剂。

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