Welham Tracey, Pike Jodie, Horst Irmtraud, Flemetakis Emmanouil, Katinakis Panagiotis, Kaneko Takakazu, Sato Shusei, Tabata Satoshi, Perry Jillian, Parniske Martin, Wang Trevor L
Metabolic Biology, John Innes Centre, Norwich Research Park, Colney, Norwich NR4 7UH, UK.
J Exp Bot. 2009;60(12):3353-65. doi: 10.1093/jxb/erp169. Epub 2009 May 27.
Neutral/alkaline invertases are a subgroup, confined to plants and cyanobacteria, of a diverse family of enzymes. A family of seven closely-related genes, LjINV1-LjINV7, is described here and their expression in the model legume, Lotus japonicus, is examined. LjINV1 previously identified as encoding a nodule-enhanced isoform is the predominant isoform present in all parts of the plant. Mutants for two isoforms, LjINV1 and LjINV2, were isolated using TILLING. A premature stop codon allele of LjINV2 had no effect on enzyme activity nor did it show a visible phenotype. For LjINV1, premature stop codon and missense mutations were obtained and the phenotype of the mutants examined. Recovery of homozygous mutants was problematic, but their phenotype showed a severe reduction in growth of the root and the shoot, a change in cellular development, and impaired flowering. The cellular organization of both roots and leaves was altered; leaves were smaller and thicker with extra layers of cells and roots showed an extended and broader zone of cell division. Moreover, anthers contained no pollen. Both heterozygotes and homozygous mutants showed decreased amounts of enzyme activity in nodules and shoot tips. Shoot tips also contained up to a 9-fold increased level of sucrose. However, mutants were capable of forming functional root nodules. LjINV1 is therefore crucial to whole plant development, but is clearly not essential for nodule formation or function.
中性/碱性转化酶是一类局限于植物和蓝细菌的酶亚群,属于一个多样的酶家族。本文描述了一个由七个密切相关基因组成的家族,即LjINV1 - LjINV7,并研究了它们在模式豆科植物百脉根中的表达。先前被鉴定为编码结节增强型同工型的LjINV1是植物所有部位中存在的主要同工型。利用定向诱导基因组局部突变技术(TILLING)分离出了两种同工型LjINV1和LjINV2的突变体。LjINV2的一个提前终止密码子等位基因对酶活性没有影响,也没有表现出可见的表型。对于LjINV1,获得了提前终止密码子和错义突变,并对突变体的表型进行了检测。纯合突变体的恢复存在问题,但它们的表型显示根和地上部分的生长严重减少,细胞发育发生变化,开花受损。根和叶的细胞组织都发生了改变;叶子更小更厚,有额外的细胞层,根显示出细胞分裂区域扩大和变宽。此外,花药中没有花粉。杂合子和纯合突变体在结节和茎尖中的酶活性都降低。茎尖中的蔗糖水平也高达9倍增加。然而,突变体能够形成功能性根瘤。因此,LjINV1对整个植物发育至关重要,但显然对根瘤的形成或功能不是必需的。