Zhan Junpeng, Thakare Dhiraj, Ma Chuang, Lloyd Alan, Nixon Neesha M, Arakaki Angela M, Burnett William J, Logan Kyle O, Wang Dongfang, Wang Xiangfeng, Drews Gary N, Yadegari Ramin
School of Plant Sciences, University of Arizona, Tucson, Arizona 85721.
Department of Biology, University of Utah, Salt Lake City, Utah 84112.
Plant Cell. 2015 Mar;27(3):513-31. doi: 10.1105/tpc.114.135657. Epub 2015 Mar 17.
Endosperm is an absorptive structure that supports embryo development or seedling germination in angiosperms. The endosperm of cereals is a main source of food, feed, and industrial raw materials worldwide. However, the genetic networks that regulate endosperm cell differentiation remain largely unclear. As a first step toward characterizing these networks, we profiled the mRNAs in five major cell types of the differentiating endosperm and in the embryo and four maternal compartments of the maize (Zea mays) kernel. Comparisons of these mRNA populations revealed the diverged gene expression programs between filial and maternal compartments and an unexpected close correlation between embryo and the aleurone layer of endosperm. Gene coexpression network analysis identified coexpression modules associated with single or multiple kernel compartments including modules for the endosperm cell types, some of which showed enrichment of previously identified temporally activated and/or imprinted genes. Detailed analyses of a coexpression module highly correlated with the basal endosperm transfer layer (BETL) identified a regulatory module activated by MRP-1, a regulator of BETL differentiation and function. These results provide a high-resolution atlas of gene activity in the compartments of the maize kernel and help to uncover the regulatory modules associated with the differentiation of the major endosperm cell types.
胚乳是一种吸收性结构,在被子植物中支持胚胎发育或幼苗萌发。谷物的胚乳是全球食物、饲料和工业原料的主要来源。然而,调节胚乳细胞分化的遗传网络在很大程度上仍不清楚。作为表征这些网络的第一步,我们分析了正在分化的胚乳的五种主要细胞类型、胚胎以及玉米(Zea mays)籽粒的四个母体组织中的mRNA。对这些mRNA群体的比较揭示了子代和母体组织之间不同的基因表达程序,以及胚胎与胚乳糊粉层之间意外的紧密相关性。基因共表达网络分析确定了与单个或多个籽粒组织相关的共表达模块,包括胚乳细胞类型的模块,其中一些模块显示出先前鉴定的时间激活和/或印记基因的富集。对与胚乳基部转移层(BETL)高度相关的一个共表达模块的详细分析确定了一个由MRP-1激活的调控模块,MRP-1是BETL分化和功能的调节因子。这些结果提供了玉米籽粒各组织中基因活性的高分辨率图谱,并有助于揭示与主要胚乳细胞类型分化相关的调控模块。