Decroocq V, Zhu X, Kauffman M, Kyozuka J, Peacock W J, Dennis E S, Llewellyn D J
CSIRO Plant Industry, P.O. Box 1600, Canberra, ACT 2601, Australia.
Gene. 1999 Mar 4;228(1-2):155-60. doi: 10.1016/s0378-1119(98)00613-1.
MADS-box genes in plants are a diverse class of transcription factors that are involved in regulating developmental processes, particularly meristem and organ identity during floral development. They are characterized by a highly conserved MADS-box domain of 59 amino acids that binds to specific DNA sequences. We report the characterization of a cDNA clone, ETL (Eucalyptus TM3 Like), from Eucalyptus globulus subspecies bicostata encoding a putative transcription factor of the MADS-box class that is strongly expressed in both vegetative and floral tissues, suggesting that it regulates processes other than floral development. The clone was isolated from a floral bud cDNA library with a probe generated from Eucalyptus genomic DNA by PCR using degenerate primers to the MADS-box of the floral regulatory gene APETALA 1. The ETL cDNA clone encodes a putative protein of 206 amino acids that contains an N-terminal MADS-box and a helical domain of approx. 60 amino acids predicted to form a coiled-coil (K-box). These structural features are characteristic of plant MADS-box proteins. The MADS-box domain contains all the signature residues of a class of MADS-box genes typified by the tomato gene TM3 and overall, ETL shows 56% amino acid identity to TM3. Like TM3, the ETL gene is expressed in both vegetative and reproductive organs, predominantly in root and shoot meristems and organ primordia, as well as in developing male and female floral organs.
植物中的MADS-box基因是一类多样的转录因子,参与调控发育过程,特别是在花发育过程中调控分生组织和器官特征。它们的特征是具有一个由59个氨基酸组成的高度保守的MADS-box结构域,该结构域可与特定DNA序列结合。我们报道了一个来自蓝桉亚种双肋蓝桉的cDNA克隆ETL(类似桉树叶绿体TM3)的特征,它编码一个假定的MADS-box类转录因子,在营养组织和花组织中均强烈表达,这表明它调控花发育以外的过程。该克隆是从花芽cDNA文库中分离出来的,使用针对花调控基因APETALA 1的MADS-box的简并引物通过PCR从桉属基因组DNA生成的探针进行筛选。ETL cDNA克隆编码一个由206个氨基酸组成的假定蛋白质,该蛋白质包含一个N端MADS-box和一个约60个氨基酸的螺旋结构域,预计形成一个卷曲螺旋(K-box)。这些结构特征是植物MADS-box蛋白的特征。MADS-box结构域包含以番茄基因TM3为代表的一类MADS-box基因的所有特征性残基,总体而言,ETL与TM3的氨基酸同一性为56%。与TM3一样,ETL基因在营养器官和生殖器官中均有表达,主要在根和茎分生组织以及器官原基中表达,也在发育中的雄性和雌性花器官中表达。