United States Plant, Soil, and Nutrition Laboratory, United States Department of Agriculture-Agricultural Research Service, Ithaca, New York 14853.
Plant Physiol. 1985 Oct;79(2):474-9. doi: 10.1104/pp.79.2.474.
Cowpeas grown in nutrient solutions, from which Ni had been removed by a ligand exchange technique, accumulated urea in most tissues. Urea levels were highest (up to 3.1 percent dry weight) in necrotic leaf tips. Urea accumulation in Ni-deficient cowpea tissues amounted to about 1 percent of the total N. The accumulation of urea was presumably associated with the catabolism of N compounds in older tissues and the redistribution of N catabolites within the plant during the reproductive growth. The exclusion of N salts from the nutrient media at a late stage of growth, either with or without added Ni, led to a general amelioration of urea accumulation and a lower level of the related amino acid, arginine, in root and stem tissue. Plant leaves that contained toxic levels of urea and displayed necrotic symptoms had tissue Ni levels ranging from less than 0.01 to 0.15 mug Ni per gram dry weight. Nickel concentrations in tissue from plants not treated with Ni, were initially very low, but increased as the cowpeas matured. Apparently, there was a source of Ni contamination in the Ni-deficient growth media which provided a source of Ni for uptake by the plants during growth. Ureide levels were low and unaffected by Ni deprivation. No evidence for free purines or uric acid accumulation in plant tissues could be found. It is hypothesized that Ni (and urease) participates in the normal N metabolism of these plants during the reproductive phase of growth.
在去除镍的营养溶液中生长的豇豆在大多数组织中积累了尿素。在坏死的叶片尖端,尿素含量最高(高达 3.1%干重)。在镍缺乏的豇豆组织中,尿素的积累量约占总氮的 1%。尿素的积累可能与衰老组织中氮化合物的分解代谢以及生殖生长过程中植物体内氮分解产物的再分配有关。在生长后期,无论是添加镍还是不添加镍,将氮盐从营养介质中排除,都会导致尿素积累的普遍减轻和根和茎组织中相关氨基酸精氨酸的水平降低。含有有毒水平尿素并显示坏死症状的叶片的组织镍含量范围为每克干重小于 0.01 至 0.15 微克镍。未用镍处理的植物组织中的镍浓度最初非常低,但随着豇豆的成熟而增加。显然,在镍缺乏的生长培养基中有镍污染的来源,为植物在生长过程中提供了镍的吸收来源。脲水平较低,不受镍缺乏的影响。在植物组织中没有发现游离嘌呤或尿酸积累的证据。据推测,镍(和脲酶)在生长的生殖阶段参与了这些植物的正常氮代谢。