...
首页> 外文期刊>Journal of the American Society for Horticultural Science >Nickel deficiency affects nitrogenous forms and urease activity in spring xylem sap of pecan.
【24h】

Nickel deficiency affects nitrogenous forms and urease activity in spring xylem sap of pecan.

机译:镍缺乏会影响山核桃春季木质部汁液中的氮形态和脲酶活性。

获取原文
获取原文并翻译 | 示例
           

摘要

While nickel (Ni) deficiency occurs in certain agricultural crops, little is known regarding the influence of deficiency on metabolic or physiological processes. We studied the influence of Ni deficiency on the reduced-nitrogen (N) composition of early spring xylem sap of pecan [Carya illinoinensis (Wangenh.) C. Koch]. High-performance liquid chromatography (HPLC) analysis of sap composition found the presence of ureido-, amide-, and amino-N substances and that they are quantitatively influenced by tree Ni nutritional status. Ureido-N forms quantitatively dominated amide-N forms with respect to both molar concentration and the forms in which reduced N atoms are present; thus, pecan appears to be predominately a ureide-transporting species. The primary ureido-N substances in sap of Ni-sufficient trees are citrulline ~ asparagine ~ xanthine > ureidoglycolate > allantoic acid > allantoin ~ uric acid ~ urea. Asparagine is the primary amide-N form, while only traces of amino-N forms (e.g., tryptamine and beta -phenylethylamine) are found in xylem sap. Nickel deficiency substantially increased citrulline and allantoic acid in xylem sap while decreasing the asparagine, xanthine, and beta -phenylethylamine concentrations. These Ni-linked quantitative shifts in reduced-N forms indicate that Ni nutrition potentially affects intermediates of both the ureide catabolic pathway and the urea cycle as well as the nitrogen/carbon (N/C) economy of the tree. Xylem sap-associated urease-specific activity was also reduced as a consequence of Ni deficiency. These results indicate that Ni deficiency potentially disrupts normal N-cycling via disruption of ureide metabolism..
机译:尽管某些农作物中存在镍(Ni)缺乏症,但对于缺乏对代谢或生理过程的影响知之甚少。我们研究了镍缺乏对山核桃早春木质部汁液中还原氮(N)组成的影响[伊利诺伊山核桃(Wangenh。)C. Koch]。汁液成分的高效液相色谱(HPLC)分析发现了尿素,酰胺和氨基N物质的存在,并且它们受到树镍营养状况的定量影响。就摩尔浓度和存在还原的N原子的形式而言,Ureido-N形式在定量上占优势。因此,山核桃似乎主要是可运输尿素的物种。镍充足的树液中主要的尿素-N物质为瓜氨酸〜天冬酰胺〜黄嘌呤>脲基乙醇酸酯>尿囊酸>尿囊素〜尿酸〜尿素。天冬酰胺是主要的酰胺-N形式,而在木质部树液中仅发现痕量的氨基-N形式(例如色胺和β-苯基乙胺)。镍缺乏会大大增加木质部汁液中的瓜氨酸和尿囊酸,同时降低天冬酰胺,黄嘌呤和β-苯乙胺的浓度。这些以减少氮含量形式存在的与镍相关的定量变化表明,镍营养可能影响尿素分解代谢途径和尿素循环以及树的氮/碳(N / C)经济性的中间体。由于缺乏镍,木质部汁液相关的脲酶特异性活性也降低了。这些结果表明,镍缺乏症可能通过破坏脲离子代谢而破坏正常的N循环。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号