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首页> 外文期刊>Plant and Soil >The role of nitrate reduction in the anoxic metabolism of roots II. Anoxic metabolism of tobacco roots with or without nitrate reductase activity
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The role of nitrate reduction in the anoxic metabolism of roots II. Anoxic metabolism of tobacco roots with or without nitrate reductase activity

机译:硝酸盐还原在根的缺氧代谢中的作用II。具有或不具有硝酸还原酶活性的烟草根的缺氧代谢

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The effects of root anoxia on a tobacco (Nicotiana tabacum) wild type (WT) and a transformant (LNR-H) lacking root nitrate reductase were compared. LNR-H plants were visibly more sensitive to oxygen deprivation than WT, showing rapid and heavy wilting symptoms. LNR-H roots also produced substantially more ethanol and lactate than WT roots under anoxia, and their sugar and sugar-P content, as well as their ATP levels, remained higher. The fermentation rates of WT and LNR-H roots were unaffected by sugar feeding and the higher fermentation rate in the LNR-H roots was associated with a greater acidification of the cytoplasm under anoxia. From these observations it is concluded: (i) that the absence of NR activity in the LNR-H roots does not necessarily limit NADH recycling; and (ii) that nitrate reduction in the WT roots results in a more acidifying metabolism. It is the higher metabolic rate in the LNR-H roots that leads to the greater cytoplasmic acidification under anoxia despite the absence of a contribution from the metabolism of nitrate. Competition for NADH cannot explain this difference in metabolic rate, and it remains unclear why the NR-free LNR-H, and tungstate-treated WT roots, had much higher fermentation rates than WT roots. The difference in anaerobic metabolism could still be due to the presence or absence of nitrate reductase and the possibility that this could occur through the production of nitric oxide is discussed.
机译:比较了根缺氧对烟草(Nicotiana tabacum)野生型(WT)和缺乏根硝酸盐还原酶的转化体(LNR-H)的影响。 LNR-H植物对缺氧的敏感性明显高于WT,表现出快速和严重的萎症状。在缺氧条件下,LNR-H根也比WT根产生更多的乙醇和乳酸,它们的糖和糖P含量以及ATP含量仍然更高。 WT和LNR-H根的发酵速率不受食糖的影响,并且LNR-H根中较高的发酵速率与缺氧条件下细胞质的更大酸化有关。从这些观察得出结论:(i)LNR-H根中缺乏NR活性并不一定限制NADH的循环利用; (ii)WT根中硝酸盐的减少导致新陈代谢更加酸化。尽管缺乏硝酸盐的代谢,但正是LNR-H根部较高的代谢率导致了缺氧条件下更大的细胞质酸化。竞争NADH不能解释这种代谢速率的差异,并且尚不清楚为什么无NR的LNR-H和经钨酸盐处理的WT根的发酵速率比WT根高得多。无氧代谢的差异可能仍然是由于硝酸还原酶的存在与否,并讨论了可能通过产生一氧化氮而发生的可能性。

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