Luo Anding, Qian Qian, Yin Hengfu, Liu Xiaoqiang, Yin Changxi, Lan Ying, Tang Jiuyou, Tang Zuoshun, Cao Shouyun, Wang Xiujie, Xia Kai, Fu Xiangdong, Luo Da, Chu Chengcai
National Key Laboratory of Plant Genomics, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing 100101, PR China.
Plant Cell Physiol. 2006 Feb;47(2):181-91. doi: 10.1093/pcp/pci233. Epub 2005 Nov 23.
Elongation of rice internodes is one of the most important agronomic traits, which determines the plant height and underlies the grain yield. It has been shown that the elongation of internodes is under genetic control, and various factors are implicated in the process. Here, we report a detailed characterization of an elongated uppermost internode1 (eui1) mutant, which has been used in hybrid rice breeding. In the eui1-2 mutant, the cell lengths in the uppermost internodes are significantly longer than that of wild type and thus give rise to the elongated uppermost internode. It was found that the level of active gibberellin was elevated in the mutant, whereas its growth in response to gibberellin is similar to that of the wild type, suggesting that the higher level accumulation of gibberellin in the eui1 mutant causes the abnormal elongation of the uppermost internode. Consistently, the expression levels of several genes which encode gibberellin biosynthesis enzymes were altered. We cloned the EUI1 gene, which encodes a putative cytochrome P450 monooxygenase, by map-based cloning and found that EUI1 was weakly expressed in most tissues, but preferentially in young panicles. To confirm its function, transgenic experiments with different constructs of EUI1 were conducted. Overexpression of EUI1 gave rise to the gibberellin-deficient-like phenotypes, which could be partially reversed by supplementation with gibberellin. Furthermore, apart from the alteration of expression levels of the gibberellin biosynthesis genes, accumulation of SLR1 protein was found in the overexpressing transgenic plants, indicating that the expression level of EUI1 is implicated in both gibberellin-mediated SLR1 destruction and a feedback regulation in gibberellin biosynthesis. Therefore, we proposed that EUI1 plays a negative role in gibberellin-mediated regulation of cell elongation in the uppermost internode of rice.
水稻节间伸长是最重要的农艺性状之一,它决定株高并影响粮食产量。已有研究表明,节间伸长受遗传控制,且该过程涉及多种因素。在此,我们报告了一个用于杂交水稻育种的伸长最上节间1(eui1)突变体的详细特征。在eui1 - 2突变体中,最上节间的细胞长度显著长于野生型,从而导致最上节间伸长。研究发现,突变体中活性赤霉素水平升高,而其对赤霉素的生长反应与野生型相似,这表明eui1突变体中赤霉素的高水平积累导致了最上节间的异常伸长。一致地,几个编码赤霉素生物合成酶的基因的表达水平发生了改变。我们通过图位克隆法克隆了EUI1基因,该基因编码一种假定的细胞色素P450单加氧酶,发现EUI1在大多数组织中表达较弱,但在幼穗中优先表达。为了确认其功能,我们进行了不同EUI1构建体的转基因实验。EUI1的过表达产生了类似赤霉素缺乏的表型,补充赤霉素可部分逆转该表型。此外,除了赤霉素生物合成基因表达水平的改变外,在过表达转基因植物中还发现了SLR1蛋白的积累,这表明EUI1的表达水平与赤霉素介导的SLR1降解以及赤霉素生物合成中的反馈调节都有关。因此,我们提出EUI1在赤霉素介导的水稻最上节间细胞伸长调控中起负作用。