Gruis Darren Fred, Guo Hena, Selinger David, Tian Qing, Olsen Odd-Arne
Pioneer Hi-Bred International, a DuPont Company, Johnston, Iowa 50131, USA.
Plant Physiol. 2006 Jul;141(3):898-909. doi: 10.1104/pp.106.080945. Epub 2006 May 12.
Maize (Zea mays) endosperm consists of an epidermal-like surface layer of aleurone cells, an underlying body of starchy endosperm cells, and a basal layer of transfer cells. To determine whether surrounding maternal tissues perform a role in specifying endosperm cell fates, a maize endosperm organ culture technique was established whereby the developing endosperm is completely removed from surrounding maternal tissues. Using cell type-specific fluorescence markers, we show that aleurone cell fate specification occurs exclusively in response to surface position and does not require specific, continued maternal signal input. The starchy endosperm and aleurone cell fates are freely interchangeable throughout the lifespan of the endosperm, with internalized aleurone cells converting to starchy endosperm cells and with starchy endosperm cells that become positioned at the surface converting to aleurone cells. In contrast to aleurone and starchy endosperm cells, transfer cells fail to develop in in vitro-grown endosperm, supporting earlier indications that maternal tissue interaction is required to fully differentiate this cell type. Several parameters confirm that the maize endosperm organ cultures described herein retain the main developmental features of in planta endosperm, including fidelity of aleurone mutant phenotypes, temporal and spatial control of cell type-specific fluorescent markers, specificity of cell type transcripts, and control of mitotic cell divisions.
玉米(Zea mays)胚乳由一层类似表皮的糊粉层细胞、下层的淀粉胚乳细胞主体以及一层基部的转移细胞组成。为了确定周围的母体组织是否在决定胚乳细胞命运中发挥作用,建立了一种玉米胚乳器官培养技术,通过该技术将发育中的胚乳从周围的母体组织中完全分离出来。使用细胞类型特异性荧光标记,我们发现糊粉层细胞命运的决定仅取决于表面位置,并不需要特定的、持续的母体信号输入。在胚乳的整个生命周期中,淀粉胚乳和糊粉层细胞的命运可以自由互换,内化的糊粉层细胞会转变为淀粉胚乳细胞,而位于表面的淀粉胚乳细胞则会转变为糊粉层细胞。与糊粉层细胞和淀粉胚乳细胞不同,转移细胞在体外培养的胚乳中无法发育,这支持了早期的观点,即母体组织相互作用是该细胞类型完全分化所必需的。几个参数证实,本文所述的玉米胚乳器官培养保留了体内胚乳的主要发育特征,包括糊粉层突变体表型的忠实性、细胞类型特异性荧光标记的时空控制、细胞类型转录本的特异性以及有丝分裂细胞分裂的控制。