Hooks M A, Turner J E, Murphy E C, Graham I A
School of Biological Sciences, University of Wales, Gwynedd LL57 2UW Bangor, Wales, UK.
Mol Genet Genomics. 2004 Apr;271(3):249-56. doi: 10.1007/s00438-004-0985-9. Epub 2004 Feb 13.
A phenotypic screen was employed to isolate Arabidopsis plants that are deficient in their ability to utilize or sense acetate. The screening strategy, based on resistance to the toxic acetate analogue monofluoroacetic acid, was adapted from one that has been used successfully to identify important metabolic and regulatory genes involved in acetate metabolism in fungi. Following conventions established from the fungal work, the mutants were called acn mutants for acetate non-utilization. Three highly resistant plant lines were the focus of genetic and physiological studies. Mutant acn1 appears to be a true acetate non-utilizing mutant, as it displays increased sensitivity to exogenous acetate. The progeny of the original acn2 mutant did not germinate, even in the presence of sucrose as an exogenous carbon source. The germination of seeds from the F3 generation depended on the sucrose concentration in the medium. Only a small proportion of seeds germinated in the absence of exogenous sucrose and in the presence of 100 mM sucrose, but up to 70% of seeds germinated on 20 mM sucrose. Mutant acn3 exhibited sensitivity to exogenous sucrose, showing significant chlorosis on medium containing 20 mM sucrose, but no chlorosis when grown in the absence of exogenous sucrose. This phenotype was alleviated if acetate was provided. The acn mutants demonstrate that disrupting organic acid utilization can have profound affects on carbohydrate metabolism.
采用表型筛选来分离在利用或感知乙酸盐能力方面存在缺陷的拟南芥植株。基于对有毒乙酸盐类似物一氟乙酸的抗性的筛选策略,是从已成功用于鉴定参与真菌乙酸盐代谢的重要代谢和调控基因的策略改编而来的。遵循真菌研究中确立的惯例,这些突变体被称为acn突变体,即乙酸盐不利用突变体。三个高抗性植株系是遗传和生理学研究的重点。突变体acn1似乎是一个真正的乙酸盐不利用突变体,因为它对外源乙酸盐表现出更高的敏感性。原始acn2突变体的后代即使在有蔗糖作为外源碳源的情况下也不发芽。F3代种子的发芽取决于培养基中的蔗糖浓度。在没有外源蔗糖且存在100 mM蔗糖的情况下,只有一小部分种子发芽,但在20 mM蔗糖上,高达70%的种子发芽。突变体acn3对外源蔗糖表现出敏感性,在含有20 mM蔗糖的培养基上出现明显的黄化现象,但在没有外源蔗糖的情况下生长时没有黄化现象。如果提供乙酸盐,这种表型会得到缓解。acn突变体表明,破坏有机酸的利用会对碳水化合物代谢产生深远影响。