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拟南芥中甘蓝型油菜 BrARGOS 基因的异位表达增加了器官大小。

Ectopic expression of a Chinese cabbage BrARGOS gene in Arabidopsis increases organ size.

机构信息

Shandong Key Laboratory of Greenhouse Vegetable Biology, Institute of Vegetables, Shandong Academy of Agricultural Sciences, 250100, Jinan, Shandong, China.

出版信息

Transgenic Res. 2010 Jun;19(3):461-72. doi: 10.1007/s11248-009-9324-6. Epub 2009 Sep 30.

Abstract

Chinese cabbage (Brassica rapa L. ssp. pekinensis) is a common and economically important crop in Asia. Specific targets of plant breeding programs for cabbage have been improvement in yield, resistance to environment stresses, and nutrition quality by means of genetic manipulation. To obtain information on yield improvement applicable for the genetic engineering approach, we have attempted to dissect the molecular pathways that regulate organ size. We first isolated a putative homolog of ARGOS full-length cDNA from Chinese cabbage leaves, which we designated BrARGOS. At the transcription level, BrARGOS was detected in all organs tested in Chinese cabbage. To test the function of this gene, we then engineered Arabidopsis plants that would overexpress BrARGOS ectopically. The organs of the transgenic Arabidopsis plants were significantly larger than those of the control plants. This increase in size was due to enhanced cell proliferation, with no contribution from cell expansion. The molecular analysis revealed that overexpression of BrARGOS up-regulated the transcription of several genes involved in the control of organ size. These results suggest that the BrARGOS gene may function as one of the regulators of organ size in Chinese cabbage. As such, manipulation of the BrARGOS gene may significantly increase the size of Chinese cabbage organs, such as Chinese cabbage heads.

摘要

白菜(Brassica rapa L. ssp. pekinensis)是亚洲一种常见且经济重要的作物。通过遗传操作,白菜的植物育种计划的具体目标是提高产量、抗环境胁迫和营养品质。为了获得适用于遗传工程方法的产量提高信息,我们试图剖析调节器官大小的分子途径。我们首先从白菜叶片中分离出一个假定的 ARGOS 全长 cDNA 的同源物,我们将其命名为 BrARGOS。在转录水平上,BrARGOS 在所有测试的白菜器官中均有检测到。为了测试该基因的功能,我们随后构建了拟南芥植株,这些植株会异位过表达 BrARGOS。转基因拟南芥植株的器官明显大于对照植株。这种大小的增加是由于细胞增殖增强所致,而不是由于细胞扩张所致。分子分析表明,BrARGOS 的过表达上调了几个参与器官大小控制的基因的转录。这些结果表明,BrARGOS 基因可能作为白菜器官大小的调节剂之一发挥作用。因此,操纵 BrARGOS 基因可能会显著增加白菜器官的大小,如白菜头。

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