Ordonio Reynante L, Ito Yusuke, Hatakeyama Asako, Ohmae-Shinohara Kozue, Kasuga Shigemitsu, Tokunaga Tsuyoshi, Mizuno Hiroshi, Kitano Hidemi, Matsuoka Makoto, Sazuka Takashi
Bioscience and Biotechnology Center, Nagoya University, Furo-cho, Nagoya, Aichi 464-8601, Japan.
Education and Research Center of Alpine Field Science, Faculty of Agriculture, Shinshu University, Minamiminowa, Nagano 399-4598, Japan.
Sci Rep. 2014 Jun 13;4:5287. doi: 10.1038/srep05287.
Regulation of symmetrical cell growth in the culm is important for proper culm development. So far, the involvement of gibberellin (GA) in this process has not yet been demonstrated in sorghum. Here, we show that GA deficiency resulting from any loss-of-function mutation in four genes (SbCPS1, SbKS1, SbKO1, SbKAO1) involved in the early steps of GA biosynthesis, not only results in severe dwarfism but also in abnormal culm bending. Histological analysis of the bent culm revealed that the intrinsic bending was due to an uneven cell proliferation between the lower and upper sides of culm internodes. GA treatment alleviated the bending and dwarfism in mutants, whereas the GA biosynthesis inhibitor, uniconazole, induced such phenotypes in wild-type plants--both in a concentration-dependent manner, indicating an important role of GA in controlling erectness of the sorghum culm. Finally, we propose that because of the tight relationship between GA deficiency-induced dwarfism and culm bending in sorghum, GA-related mutations have unlikely been selected in the history of sorghum breeding, as could be inferred from previous QTL and association studies on sorghum plant height that did not pinpoint GA-related genes.
茎秆中对称细胞生长的调控对茎秆的正常发育很重要。到目前为止,赤霉素(GA)在高粱这一过程中的作用尚未得到证实。在此,我们表明,参与GA生物合成早期步骤的四个基因(SbCPS1、SbKS1、SbKO1、SbKAO1)中任何一个功能丧失突变导致的GA缺乏,不仅会导致严重矮化,还会导致茎秆异常弯曲。对弯曲茎秆的组织学分析表明,内在弯曲是由于茎节间上下侧细胞增殖不均所致。GA处理减轻了突变体的弯曲和矮化,而GA生物合成抑制剂烯效唑则以浓度依赖的方式在野生型植物中诱导出这些表型,这表明GA在控制高粱茎秆直立性方面具有重要作用。最后,我们提出,由于高粱中GA缺乏诱导的矮化与茎秆弯曲之间关系密切,从之前关于高粱株高的QTL和关联研究未确定GA相关基因可以推断,在高粱育种历史中不太可能选择与GA相关的突变。