Priest David M, Ambrose Stephen J, Vaistij Fabián E, Elias Luisa, Higgins Gillian S, Ross Andrew R S, Abrams Suzanne R, Bowles Dianna J
CNAP, Department of Biology (Area 8), University of York, York YO10 5YW, UK.
Plant J. 2006 May;46(3):492-502. doi: 10.1111/j.1365-313X.2006.02701.x.
A glucosyltransferase (GT) of Arabidopsis, UGT71B6, recognizing the naturally occurring enantiomer of abscisic acid (ABA) in vitro, has been used to disturb ABA homeostasis in planta. Transgenic plants constitutively overexpressing UGT71B6 (71B6-OE) have been analysed for changes in ABA and the related ABA metabolites abscisic acid glucose ester (ABA-GE), phaseic acid (PA), dihydrophaseic acid (DPA), 7'-hydroxyABA and neo-phaseic acid. Overexpression of the GT led to massive accumulation of ABA-GE and reduced levels of the oxidative metabolites PA and DPA, but had marginal effect on levels of free ABA. The control of ABA homeostasis, as reflected in levels of the different metabolites, differed in the 71B6-OEs whether the plants were grown under standard conditions or subjected to wilt stress. The impact of increased glucosylation of ABA on ABA-related phenotypes has also been assessed. Increased glucosylation of ABA led to phenotypic changes in post-germinative growth. The use of two structural analogues of ABA, known to have biological activity but to differ in their capacity to act as substrates for 71B6 in vitro, confirmed that the phenotypic changes arose specifically from the increased glucosylation caused by overexpression of 71B6. The phenotype and profile of ABA and related metabolites in a knockout line of 71B6, relative to wild type, has been assessed during Arabidopsis development and following stress treatments. The lack of major changes in these parameters is discussed in the context of functional redundancy of the multigene family of GTs in Arabidopsis.
拟南芥的一种葡糖基转移酶(GT)UGT71B6在体外可识别天然存在的脱落酸(ABA)对映体,已被用于扰乱植物体内的ABA稳态。对组成型过表达UGT71B6的转基因植物(71B6 - OE)进行了分析,以研究ABA及其相关ABA代谢产物脱落酸葡萄糖酯(ABA - GE)、相酸(PA)、二氢相酸(DPA)、7'-羟基ABA和新相酸的变化。该GT的过表达导致ABA - GE大量积累,氧化代谢产物PA和DPA水平降低,但对游离ABA水平影响很小。不同代谢产物水平所反映的ABA稳态调控,在71B6 - OE植物中,无论植株是在标准条件下生长还是遭受萎蔫胁迫,情况都有所不同。还评估了ABA糖基化增加对ABA相关表型的影响。ABA糖基化增加导致种子萌发后生长出现表型变化。使用两种已知具有生物活性但在体外作为71B6底物的能力不同的ABA结构类似物,证实了表型变化是由71B6过表达导致的糖基化增加特异性引起的。在拟南芥发育过程中和胁迫处理后,评估了相对于野生型,71B6基因敲除系中ABA及其相关代谢产物的表型和特征。在拟南芥GT多基因家族功能冗余的背景下,讨论了这些参数缺乏重大变化的情况。