Otani Masahiro, Sharifi Ahmad, Kubota Shosei, Oizumi Kanako, Uetake Fumi, Hirai Masayo, Hoshino Yoichiro, Kanno Akira, Nakano Masaru
Faculty of Agriculture, Niigata University, 2-8050 Ikarashi, Nishi-ku, Niigata 950-2181, Japan.
Faculty of Ornamental Plant Biotechnology Research Department, Iranian Academic Center for Education, Culture &Research, Khorasan Razavi Branch, P.O.Box 91775-1163, Mashhad, Iran.
Sci Rep. 2016 Apr 15;6:24549. doi: 10.1038/srep24549.
B class MADS-box genes play important roles in petal and stamen development. Some monocotyledonous species, including liliaceous ones, produce flowers with petaloid tepals in whorls 1 and 2. A modified ABCE model has been proposed to explain the molecular mechanism of development of two-layered petaloid tepals. However, direct evidence for this modified ABCE model has not been reported to date. To clarify the molecular mechanism determining the organ identity of two-layered petaloid tepals, we used chimeric repressor gene-silencing technology (CRES-T) to examine the suppression of B function in the liliaceous ornamental Tricyrtis sp. Transgenic plants with suppressed B class genes produced sepaloid tepals in whorls 1 and 2 instead of the petaloid tepals as expected. In addition, the stamens of transgenic plants converted into pistil-like organs with ovule- and stigma-like structures. This report is the first to describe the successful suppression of B function in monocotyledonous species with two-layered petaloid tepals, and the results strongly support the modified ABCE model.
B类MADS-box基因在花瓣和雄蕊发育中起重要作用。一些单子叶植物物种,包括百合科植物,在第一轮和第二轮中产生具有花瓣状花被片的花。已提出一种改良的ABCE模型来解释两层花瓣状花被片发育的分子机制。然而,迄今为止尚未报道该改良ABCE模型的直接证据。为了阐明决定两层花瓣状花被片器官特性的分子机制,我们使用嵌合阻遏基因沉默技术(CRES-T)来检测百合科观赏植物延龄草属中B功能的抑制情况。B类基因被抑制的转基因植物在第一轮和第二轮中产生的是萼片状花被片,而不是预期的花瓣状花被片。此外,转基因植物的雄蕊转化为具有胚珠状和柱头状结构的雌蕊状器官。本报告首次描述了在具有两层花瓣状花被片的单子叶植物物种中成功抑制B功能,结果有力地支持了改良的ABCE模型。