Lewis Dyani, Bacic Antony, Chandler Peter M, Newbigin Edward J
Plant Cell Biology Research Centre and Australian Centre for Plant Functional Genomics, School of Botany, University of Melbourne, Parkville, VIC 3010, Australia.
Plant Cell Physiol. 2009 Mar;50(3):554-71. doi: 10.1093/pcp/pcp015. Epub 2009 Jan 30.
The elongation (elo) mutants of barley (Hordeum vulgare cv 'Himalaya') are a class of dwarf plants with defects affecting cell expansion. The phenotypes of mutants in three of the elo loci (elo1, elo2 and elo3) are recessive to the wild-type allele, and the mutations at elo-4 and elo-5 are semi-dominant. Allelism tests showed that elo1, elo2 and elo3 were at separate loci, and mapping data indicated that elo-5 was possibly allelic to either elo1 or elo2. A phenotype common to all elo mutants was the presence of short, radially swollen cells on the leaf epidermis, indicating a defect in longitudinal cell expansion. In three of the mutants, elo1, elo3 and elo5, this was accompanied by a twisting growth habit. Two of the mutations, elo2 and elo-5, affected cell division, with aberrant periclinal cell division resulting in the formation of increased cell layers in the leaf epidermis of elo2 and elo-5 homozygotes and in the aleurone layer of elo2 grains. Misplaced anticlinal divisions also occurred in the elo-5 leaf epidermis. Leaf cell walls of all elo lines contained less cellulose than the wild- type, and the cortical microtubules in elongating root epidermal cells in some elo lines were more randomly oriented than in the wild-type, consistent with the presence of radially swollen cells. We discuss possible functions for the Elo genes in primary cell wall synthesis.
大麦(Hordeum vulgare cv 'Himalaya')的伸长(elo)突变体是一类矮化植株,其缺陷影响细胞扩张。三个elo位点(elo1、elo2和elo3)的突变体表型相对于野生型等位基因为隐性,而elo - 4和elo - 5的突变是半显性的。等位性测试表明elo1、elo2和elo3位于不同位点,定位数据表明elo - 5可能与elo1或elo2等位。所有elo突变体共有的一个表型是叶片表皮上存在短的、径向肿胀的细胞,表明纵向细胞扩张存在缺陷。在其中三个突变体elo1、elo3和elo5中,这伴随着扭曲的生长习性。其中两个突变elo2和elo - 5影响细胞分裂,异常的平周细胞分裂导致elo2和elo - 5纯合子叶片表皮以及elo2籽粒糊粉层中细胞层数增加。elo - 5叶片表皮也出现了错位的垂周分裂。所有elo株系的叶片细胞壁含有的纤维素比野生型少,并且一些elo株系伸长的根表皮细胞中的皮层微管比野生型更随机地定向,这与径向肿胀细胞的存在一致。我们讨论了Elo基因在初生细胞壁合成中的可能功能。