首页> 外文期刊>Journal of plant nutrition and soil science >Excess sulfate supply and onion-induced human antiplatelet activity
【24h】

Excess sulfate supply and onion-induced human antiplatelet activity

机译:硫酸盐供应过多和洋葱诱导的人抗血小板活性

获取原文
获取原文并翻译 | 示例
           

摘要

Awareness is growing of health-promoting functional foods and the use of various plants as nutraceuticals. Due to a suite of organosulfur compounds, onion, and other vegetable Alliums possess a unique antiplatelet effect that may promote cardiovascular health because aggregating platelets can lead to heart attack and stroke. Investigation of the consequences of S nutrition in onion has primarily focused on levels of S ranging from deficiency to just above sufficiency; however, little work has been conducted to examine the effects of supraoptimal S nutrition on organosulfur-based traits. Four onion selections were grown in hydroponic solutions with 2, 7, and 12 MM SO42- -S in greenhouse experiments during 1995-1996 and 1996-1997. Onion plants were separated into root, leaf, and bulb portions and analyzed for mineral content. Onion bulb extracts were assayed for in vitro human antiplatelet activity. Bulb and leaf S were not affected by increasing solution culture S, but root S was increased by 98 % when solution culture S was increased from 2 mM to 12 mM. Similar increases in root Ca and Al were detected, suggesting CaSO4 and AlSO4+ were accumulated in and on the root. No directional change in antiplatelet activity was detected as S was increased from 2 to 12 mM. This lack of significant change in antiplatelet activity with increasing S levels suggests that modification of this trait by simply increasing S levels may not be feasible in a solution culture environment.
机译:促进健康的功能性食品以及各种植物作为保健食品的意识正在提高。由于含有一组有机硫化合物,洋葱和其他蔬菜葱属具有独特的抗血小板作用,可促进心血管健康,因为聚集的血小板会导致心脏病和中风。对洋葱中S营养的影响的调查主要集中在S水平上,从不足到刚好高于饱和。然而,很少有工作检查超最佳S营养对基于有机硫的性状的影响。在1995-1996年和1996-1997年的温室试验中,在2、7和12 MM SO42--S的水培溶液中种植了四种洋葱。将洋葱植物分成根,叶和鳞茎部分,并分析其矿物质含量。分析洋葱鳞茎提取物的体外人抗血小板活性。鳞茎和叶片S不受溶液培养物S增加的影响,但是当溶液培养物S从2 mM增加到12 mM时,根S增加了98%。根中Ca和Al的增加也相似,表明CaSO4和AlSO4 +积累在根中和根上。由于S从2 mM增加到12 mM,未检测到抗血小板活性的方向变化。随着S含量的增加,抗血小板活性缺乏明显变化,这表明仅通过增加S含量来修饰该性状在溶液培养环境中可能不可行。

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