Bauer Petra, Lubkowitz Mark, Tyers Randall, Nemoto Keisuke, Meeley Robert B, Goff Steven A, Freeling Michael
Department of Plant and Microbial Biology, UC Berkeley, 111 Koshland Hall, Berkeley, CA 94720-3102, USA.
Planta. 2004 Jun;219(2):359-68. doi: 10.1007/s00425-004-1233-6. Epub 2004 Mar 19.
The nine class-I maize (Zea mays L.) knox genes are putative transcription factors normally expressed in shoot apices, but not in leaves. knotted1 (kn1) seems to function in shoot apical meristem maintenance, and rough sheath1 (rs1)-like genes may act in internode elongation. The function of liguleless3 (lg3)-type genes is still unknown. Here, we characterized lg3 as well as the two most closely related genes liguleless4a (lg4a, formerly knox11) and liguleless4b (lg4b, formerly knox5). We termed this subclass of knox genes lg3/4 genes. We studied the expression patterns of lg3/4 genes and compared their sequences. We obtained knockout mutants of lg3 by finding Mu transposon insertions into exons. Our results show that lg3 was not essential for plant development, and that lg4a and lg4b were likely to encode the redundant function. In addition, lg4a but not lg4b was ectopically expressed in the Lg4-O mutant, suggesting that this mutant was affected at the lg4a locus. We found that the lg3 gene was unique among knox genes as it was co-induced in the leaves of leaf mutants that ectopically expressed knox genes in the leaves. The leaf phenotype expressed in the dominant Rs1-O mutant was not altered when lg3 function was removed using the knockout. Genomic sequence comparisons of lg3, lg4a and lg4b from maize and the two homologous genes, osh6 and osh71, from rice revealed a 14-bp phylogenetic footprint in intron II. This sequence was conserved in nucleotide composition, position and polarity in the lg3/4 genes of divergent grasses representing six Gramineae subfamilies. In an independent experiment, this same conserved sequence was found in a yeast reverse one-hybrid screen for putative binding sites of the LG3 homeodomain protein. Distribution of this 14-bp sequence was examined within the public rice database. The possible function of this sequence in regulation of lg3/4 genes is discussed.
九个I类玉米(Zea mays L.)knox基因是假定的转录因子,通常在茎尖表达,而不在叶片中表达。knotted1(kn1)似乎在茎尖分生组织维持中起作用,而rough sheath1(rs1)样基因可能在节间伸长中起作用。liguleless3(lg3)型基因的功能仍然未知。在这里,我们对lg3以及两个最密切相关的基因liguleless4a(lg4a,以前称为knox11)和liguleless4b(lg4b,以前称为knox5)进行了表征。我们将这个knox基因亚类称为lg3/4基因。我们研究了lg3/4基因的表达模式并比较了它们的序列。我们通过发现Mu转座子插入外显子获得了lg3的敲除突变体。我们的结果表明,lg3对植物发育不是必需的,并且lg4a和lg4b可能编码冗余功能。此外,lg4a而非lg4b在Lg4-O突变体中异位表达,表明该突变体在lg4a位点受到影响。我们发现lg3基因在knox基因中是独特的,因为它在叶片中异位表达knox基因的叶片突变体的叶片中被共同诱导。当使用敲除去除lg3功能时,显性Rs1-O突变体中表达的叶片表型没有改变。玉米的lg3、lg4a和lg4b与水稻的两个同源基因osh6和osh71的基因组序列比较揭示了内含子II中的一个14bp系统发育足迹。该序列在代表六个禾本科亚科的不同禾本科植物的lg3/4基因的核苷酸组成、位置和极性方面是保守的。在一项独立实验中,在酵母反向单杂交筛选LG3同源域蛋白的假定结合位点时发现了相同的保守序列。在公共水稻数据库中检查了这个14bp序列的分布。讨论了该序列在lg3/4基因调控中的可能功能。