School of Life Sciences and Biotechnology, Korea University Seoul 136-701 Korea.
J Exp Bot. 2013 Jan;64(1):129-42. doi: 10.1093/jxb/ers236. Epub 2012 Sep 3.
The role of an expansin gene (IbEXP1) in the formation of the storage root (SR) was investigated by expression pattern analysis and characterization of IbEXP1-antisense sweetpotato (Ipomoea batatas cv. Yulmi) plants in an attempt to elucidate the molecular mechanism underlying SR development in sweetpotato. The transcript level of IbEXP1 was high in the fibrous root (FR) and petiole at the FR stage, but decreased significantly at the young storage root (YSR) stage. IbEXP1-antisense plants cultured in vitro produced FRs which were both thicker and shorter than those of wild-type (WT) plants. Elongation growth of the epidermal cells was significantly reduced, and metaxylem and cambium cell proliferation was markedly enhanced in the FRs of IbEXP1-antisense plants, resulting in an earlier thickening growth in these plants relative to WT plants. There was a marked reduction in the lignification of the central stele of the FRs of the IbEXP1-antisense plants, suggesting that the FRs of the mutant plants possessed a higher potential than those of WT plants to develop into SRs. IbEXP1-antisense plants cultured in soil produced a larger number of SRs and, consequently, total SR weight per IbEXP1-antisense plant was greater than that per WT plant. These results demonstrate that SR development was accelerated in IbEXP1-antisense plants and suggest that IbEXP1 plays a negative role in the formation of SR by suppressing the proliferation of metaxylem and cambium cells to inhibit the initial thickening growth of SRs. IbEXP1 is the first sweetpotato gene whose role in SR development has been directly identified in soil-grown transgenic sweetpotato plants.
通过表达模式分析和 IbEXP1-反义甘薯(Ipomoea batatas cv. Yulmi)植株的特征研究,探讨了一个扩展蛋白基因(IbEXP1)在块根(SR)形成中的作用,试图阐明甘薯 SR 发育的分子机制。IbEXP1 的转录水平在纤维根(FR)和 FR 叶柄中较高,但在幼龄 SR 阶段显著降低。体外培养的 IbEXP1-反义植株产生的 FR 比野生型(WT)植株的 FR 更粗更短。IbEXP1-反义植株 FR 的表皮细胞伸长生长显著降低,木质部和形成层细胞增殖明显增强,导致这些植株比 WT 植株更早地进行加粗生长。IbEXP1-反义植株 FR 中心中柱木质化明显减少,表明突变植株的 FR 比 WT 植株具有更高的发育成 SR 的潜力。在土壤中培养的 IbEXP1-反义植株产生了更多的 SR,因此,每株 IbEXP1-反义植株的总 SR 重量大于每株 WT 植株的总 SR 重量。这些结果表明,IbEXP1-反义植株的 SR 发育加速,并表明 IbEXP1 通过抑制木质部和形成层细胞的增殖来抑制 SR 最初的加粗生长,从而在 SR 的形成中起负调控作用。IbEXP1 是第一个在土壤中生长的转基因甘薯植株中直接鉴定出其在 SR 发育中作用的甘薯基因。