Montag K, Salamini F, Thompson R D
Max-Planck-Institut für Züchtungsforschung, Carl-von-Linné Weg 10, Köln, Germany.
Nucleic Acids Res. 1995 Jun 25;23(12):2168-77. doi: 10.1093/nar/23.12.2168.
The identification of a number of cis-elements which direct gene expression in maize endosperm, and the characterization of corresponding DNA binding proteins, point to the interaction of different classes of transcription factors in this tissue. To assess whether MADS box genes are also involved in maize endosperm development, cDNA and genomic MADS box clones have been isolated. The three cDNA clones ZEM1, ZEM2 and ZEM3 were cloned from a maize endosperm cDNA library using a probe based on sequences conserved in plant MADS box genes. Further transcripts were cloned by RT-PCR experiments and designated ZEM4 and ZEM5. Analysis of the corresponding genomic clones led to the identification of the ZEM2 MADS box gene family, three members of which were characterized sharing 97% sequence identity in corresponding domains. 100% sequence identities between cDNA and one of the genomic clones, conserved exon-intron boundaries and the demonstration of in vivo splicing in a maize endosperm transient expression system, show that the transcripts ZEM1-5 are derived by alternative splicing of ZEMa, one ZEM2 member. The ZEMa transcripts are present in almost all maize tissues, but specific differentially spliced forms accumulate preferentially in maturing endosperm and leaf. The function of the ZEMa gene is discussed in the light of similarities in the expression pattern with members of the human MEF2/RSRF gene family.
一些指导玉米胚乳基因表达的顺式元件的鉴定以及相应DNA结合蛋白的特性分析,表明了该组织中不同类转录因子之间的相互作用。为了评估MADS盒基因是否也参与玉米胚乳发育,已分离出cDNA和基因组MADS盒克隆。三个cDNA克隆ZEM1、ZEM2和ZEM3是使用基于植物MADS盒基因保守序列的探针从玉米胚乳cDNA文库中克隆出来的。通过RT-PCR实验克隆了更多转录本,并命名为ZEM4和ZEM5。对相应基因组克隆的分析导致了ZEM2 MADS盒基因家族的鉴定,其中三个成员在相应结构域具有97%的序列同一性。cDNA与其中一个基因组克隆之间100%的序列同一性、保守的外显子-内含子边界以及在玉米胚乳瞬时表达系统中体内剪接的证明,表明转录本ZEM1-5是由ZEMa(ZEM2家族的一个成员)的可变剪接产生的。ZEMa转录本几乎存在于所有玉米组织中,但特定的差异剪接形式优先在成熟胚乳和叶片中积累。根据与人类MEF2/RSRF基因家族成员表达模式的相似性,对ZEMa基因的功能进行了讨论。