Delhaize E, Loneragan J F, Webb J
School of Environmental and Life Sciences, Murdoch University, Perth, Western Australia 6150, Australia.
Plant Physiol. 1985 May;78(1):4-7. doi: 10.1104/pp.78.1.4.
Subterranean clover (Trifolium subterraneum L. cv Seaton Park) was grown in solution cultures containing adequate nitrogen both with and without Cu. After Cu deficiency had developed, Cu(2+) was added to some deficient plants and Cu content, protein content, and activities of three Cu metalloenzymes (diamine oxidase [EC1.4.3.6], ascorbate oxidase [EC1.10.3.3] and o-diphenol oxidase [EC1.10.3.1]) were assayed in young and recently matured leaf blades over 11 days during the development of the next three leaves.Copper deficiency had little effect on protein concentrations, but markedly depressed enzyme activities and Cu concentration in all leaf blades assayed. Within 4 d of adding Cu(2+) to Cu-deficient plants, Cu concentrations of all the leaf blades increased to adequate values. Enzyme activities only increased to control levels in leaves which had not yet emerged at the time that Cu(2+) was added.The results suggest that active holoenzymes of diamine oxidase, ascorbate oxidase, and o-diphenol oxidase can only be synthesized in leaf blades during very early stages of their development.
在含有充足氮素的溶液培养中,种植了地下三叶草(Trifolium subterraneum L. cv Seaton Park),一组添加铜,另一组不添加铜。在出现铜缺乏症状后,向一些缺铜植株添加Cu(2+),并在接下来三片叶子发育的11天内,对幼嫩叶片和刚成熟的叶片进行铜含量、蛋白质含量以及三种铜金属酶(二胺氧化酶[EC1.4.3.6]、抗坏血酸氧化酶[EC1.10.3.3]和邻二酚氧化酶[EC1.10.3.1])活性的测定。铜缺乏对蛋白质浓度影响不大,但显著降低了所有测定叶片中的酶活性和铜浓度。向缺铜植株添加Cu(2+)后的4天内,所有叶片的铜浓度均升至适宜水平。酶活性仅在添加Cu(2+)时尚未长出的叶片中增加至对照水平。结果表明,二胺氧化酶、抗坏血酸氧化酶和邻二酚氧化酶的活性全酶只能在叶片发育的非常早期阶段合成。