Ma H, McMullen M D, Finer J J
Department of Agronomy, Ohio State University.
Plant Mol Biol. 1994 Feb;24(3):465-73. doi: 10.1007/BF00024114.
Homeotic gene are key 'switches' that control developmental processes. Homeotic genes containing the consensus 'homeobox' domain have been identified from a number of organisms including Drosophila melanogaster, Caenorhabditis elegans, Homo sapiens, and Zea mays. Although homeotic genes have been demonstrated to be important in embryo development of some insects, amphibians, and mammals, there are no reports of their involvement in plant embryogenesis. Here, we report the isolation and characterization of a cDNA clone for a homeobox-containing gene expressed in somatic embryos of soybean. The cDNA (Sbh1 for soybean homeobox-containing gene) was isolated using maize Knotted-1 (Kn1) cDNA as a heterologous probe. The Sbh1 cDNA clone is 1515 bp long which is the approximate size of its transcript. Within the homeodomain, the amino acid sequence of a helix-turn-helix structure, and invariant and conserved residues were identified. The deduced SBH1 protein shares a high amino acid identity with KN1 protein (47.0% overall and 87.5% for the homeodomain). Southern hybridization analysis indicated that Sbh1 is a member of a small gene family. The expression of Sbh1 is development- and tissue-specific. The transcript of Sbh1 was present in early-stage somatic embryos, increased prior to cotyledon formation and decreased thereafter. Sbh1 was weakly expressed in soybean stems and hypocotyl but was not detected in other plant tissues and nonembryogenic materials. The enhanced expression during embryogenesis, the homology with maize Kn1 gene, and the regulatory nature of homeodomain proteins suggest that the SBH1 protein plays an important role in plant embryo development.
同源异型基因是控制发育过程的关键“开关”。从包括黑腹果蝇、秀丽隐杆线虫、智人以及玉米在内的多种生物中,已鉴定出含有共有“同源异型框”结构域的同源异型基因。尽管同源异型基因已被证明在某些昆虫、两栖动物和哺乳动物的胚胎发育中很重要,但尚无关于它们参与植物胚胎发生的报道。在此,我们报告了一个在大豆体细胞胚中表达的含同源异型框基因的cDNA克隆的分离与鉴定。该cDNA(大豆含同源异型框基因的Sbh1)是用玉米的Knotted-1(Kn1)cDNA作为异源探针分离得到的。Sbh1 cDNA克隆长1515 bp,与其转录本大小相近。在同源异型结构域内,鉴定出了螺旋-转角-螺旋结构的氨基酸序列以及不变和保守残基。推导的SBH1蛋白与KN1蛋白具有较高的氨基酸同一性(总体为47.0%,同源异型结构域为87.5%)。Southern杂交分析表明Sbh1是一个小基因家族的成员。Sbh1的表达具有发育和组织特异性。Sbh1的转录本存在于早期体细胞胚中,在子叶形成前增加,之后减少。Sbh1在大豆茎和下胚轴中弱表达,但在其他植物组织和非胚性材料中未检测到。胚胎发生过程中的增强表达、与玉米Kn1基因的同源性以及同源异型结构域蛋白的调控性质表明,SBH1蛋白在植物胚胎发育中起重要作用。