Dresselhaus Thomas, Amien Suseno, Márton Mihaela, Strecke Anemone, Brettschneider Reinhold, Cordts Simone
Developmental Biology and Biotechnology, Biocenter Klein Flottbek, University of Hamburg, D-22609 Hamburg, Germany.
Plant Cell. 2005 Mar;17(3):730-45. doi: 10.1105/tpc.104.028340. Epub 2005 Feb 10.
We report the identification and functional analysis of TRANSPARENT LEAF AREA1 (TLA1), a maize (Zea mays) gene representing a novel class of secreted, extremely hydrophobic peptides (proteolipids) with a C-terminal Caax box-like motif. ZmTLA1 encodes 27 amino acid residues and is most strongly expressed in the egg cell and microspores. Lower transcript amounts were detected during vegetative development. Transgenic maize expressing an antisense transcript displayed a variety of phenotypes. The most visible phenotypes were dwarfism and transparent leaf areas resulting from defective morphogenesis of mesophyll, bundle sheath, stomatal, and epidermal cells during leaf development. Incomplete cell walls were observed, indicating a defect of cytokinesis. The accumulation of gerontoplasts was probably a secondary effect caused by defects of leaf cell morphogenesis. A defect of anther maturation was observed in approximately 30% of the plants displaying the tla phenotype. Male sterility was mainly caused by incomplete disintegration of the tapetal cell layers and tetrad callose as 90% of the microspores developed into functional pollen. Overexpression of ZmTLA1 seemed to have a lethal effect both in maize and Arabidopsis thaliana. Development of primary roots, root hairs, primary leaves, and chloroplasts was suppressed in Arabidopsis seedlings expressing an inducible ZmTLA1-green fluorescent protein (GFP) fusion protein. GFP signals were exclusively detected in cell walls. Based on our observations, we suggest that the ZmTLA1 peptide represents a class of novel plant morphogens required for the development and maturation of leaf and reproductive tissues.
我们报告了对透明叶面积1(TLA1)的鉴定和功能分析,TLA1是玉米(Zea mays)中的一个基因,代表一类新型的分泌型、极度疏水的肽(蛋白脂质),具有C端Caax盒样基序。ZmTLA1编码27个氨基酸残基,在卵细胞和小孢子中表达最强。在营养发育过程中检测到较低的转录本量。表达反义转录本的转基因玉米表现出多种表型。最明显的表型是矮化和透明叶面积,这是由于叶片发育过程中叶肉、维管束鞘、气孔和表皮细胞形态发生缺陷所致。观察到不完全的细胞壁,表明存在胞质分裂缺陷。老年质体的积累可能是叶片细胞形态发生缺陷引起的次生效应。在约30%表现出tla表型的植株中观察到花药成熟缺陷。雄性不育主要是由于绒毡层细胞层和四分体胼胝质不完全解体,因为90%的小孢子发育成功能性花粉。ZmTLA1的过表达在玉米和拟南芥中似乎都具有致死效应。在表达可诱导的ZmTLA1-绿色荧光蛋白(GFP)融合蛋白的拟南芥幼苗中,初生根、根毛、初生叶和叶绿体的发育受到抑制。GFP信号仅在细胞壁中检测到。基于我们的观察,我们认为ZmTLA1肽代表一类叶片和生殖组织发育和成熟所需的新型植物形态发生素。