Herbers K, Lorences E P, Barrachina C, Sonnewald U
U.D. Fisiología Vegetal, Facultad de Ciencias Biológicas, Univ. de Valencia, Spain.
Planta. 2001 Jan;212(2):279-87. doi: 10.1007/s004250000393.
To study the function of xyloglucan endotransglycosylase (XET) in vivo we isolated, a tomato (Lycopersicon esculentum Mill.) XET cDNA (GenBank AA824986) from the homologous tobacco (Nicotiana tabacum L.) clone named NtXET-1 (Accession no. D86730). The expression pattern revealed highest levels of NtXET-1 mRNA in organs highly enriched in vascular tissue. The levels of NtXET-1 mRNA decreased in midribs with increasing age of leaves. Increasing leaf age was correlated with an increase in the average molecular weight (MW) of xyloglucan (XG) and a decrease in the relative growth rates of leaves. Transgenic tobacco plants with reduced levels of XET activity were created to further study the biochemical consequences of reduced levels of NtXET-1 expression. In two independent lines, total XET activity could be reduced by 56% and 37%, respectively, in midribs of tobacco plants transformed with an antisense construct. The decreased activity led to an increase in the average MW of XG by at least 20%. These two lines of evidence argue for NtXET-1 being involved in the incorporation of small XG molecules into the cell wall by transglycosylation. Reducing the incorporation of small XG molecules will result in a shift towards a higher average MW. The observed reduction in NtXET-1 expression and increase in the MW of XG in older leaves might be associated with strengthening of cell walls by reduced turnover and hydrolysis of XG.
为了研究木葡聚糖内转糖基酶(XET)在体内的功能,我们从名为NtXET - 1(登录号D86730)的同源烟草(Nicotiana tabacum L.)克隆中分离出一个番茄(Lycopersicon esculentum Mill.)XET cDNA(GenBank AA824986)。表达模式显示,在富含维管组织的器官中,NtXET - 1 mRNA水平最高。随着叶片年龄的增加,中脉中NtXET - 1 mRNA水平下降。叶片年龄的增加与木葡聚糖(XG)平均分子量(MW)的增加以及叶片相对生长速率的下降相关。为了进一步研究NtXET - 1表达水平降低的生化后果,构建了XET活性降低的转基因烟草植株。在两个独立的株系中,用反义构建体转化的烟草植株中脉中,总XET活性分别可降低56%和37%。活性降低导致XG的平均MW至少增加20%。这两条证据表明NtXET - 1参与通过转糖基化将小的XG分子掺入细胞壁。减少小XG分子的掺入将导致向更高平均MW的转变。在老叶中观察到的NtXET - 1表达降低和XG MW增加可能与XG周转和水解减少导致细胞壁强化有关。