首页> 外文期刊>Environmental and experimental botany >Differential invertase activity and root growth between Cu-tolerant and non-tolerant populations in Kummerowia stipulacea under Cu stress and nutrient deficiency.
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Differential invertase activity and root growth between Cu-tolerant and non-tolerant populations in Kummerowia stipulacea under Cu stress and nutrient deficiency.

机译:铜胁迫和养分亏缺下阔叶红柏铜耐性和非耐性种群之间的差异性转化酶活性和根系生长。

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There has been no study on key enzymes in sucrose cleavage in metallophyte plants so far, which may be crucial for the plants' root growth and heavy-metal tolerance maintenance. Here, we tested the hypothesis that the roots of copper tolerant plants should manifest a higher activity of acid invertases that are rate-limiting in sucrose catabolism than non-tolerant plants both for supporting growth and for their maintaining tolerance under Cu stress. Two populations of Kummerowia stipulacea, one from an ancient waste heap at a Cu mine, and the other from a non-contaminated site, were used in the experiments. The plants were grown in 1/2-fold (control) or 1/20-fold (nutrient deficiency) Hoagland' solution, with (Cu stress) or without (control) 10 micro mol/L Cu2+. Plants from the mine proved to be of Cu tolerance. Cu exposure had a stronger inhibition on root growth and thus resulting in a lower root/shoot ratio in the plants of non-mine population compared to the mine population. Cu exposure showed a stronger inhibition of acid invertase activity of Cu non-tolerant plants than Cu-tolerant plants, while neutral/alkaline invertase was insensitive to Cu. A positive correlation between the activity of acid invertases and the root growth and root/shoot ratio was observed. The results indicated an important role of acid invertases in governing root growth and root/shoot biomass allocation in the plants of mine population. The results also suggested that the higher activities in acid invertases of mine population plants might at least partly associate with the plants' Cu tolerance, and their higher activities in acid invertases in turn played an role in maintenance of the Cu tolerance by supplying carbon and energy for tolerance mechanisms. In addition, the results showed evidence that neutral/alkaline invertase might play a role in compensating for the depression in sucrose catabolism due to Cu-induced inhibition in acid invertases.
机译:迄今为止,尚未对金属植物的蔗糖裂解过程中的关键酶进行研究,这对于植物根系的生长和重金属​​的耐受性维持至关重要。在这里,我们测试了以下假设:铜耐受植物的根应显示出蔗糖分解代谢中限速酸转化酶的活性高于非耐受植物,以支持生长并保持其在铜胁迫下的耐受性。实验中使用了两种种群的阔叶小Ku(Kummerowia stipulacea),一种来自一个铜矿的古老废物堆,另一种来自未被污染的地点。使植物在有(铜胁迫)或没有(对照)10 micro mol / L Cu2 +的1/2倍(对照)或1/20倍(营养缺乏)Hoagland'溶液中生长。来自矿山的植物证明具有铜耐受性。铜暴露对根系的生长有更强的抑制作用,因此与矿山种群相比,非矿物质种群的植物的根/枝比率更低。铜暴露显示出对铜不耐性植物的酸转化酶活性的抑制作用强于铜耐性植物,而中性/碱性转化酶对铜不敏感。观察到酸转化酶的活性与根的生长和根/根比之间呈正相关。结果表明酸转化酶在控制矿山种群植物根系生长和根/茎生物量分配中具有重要作用。研究结果还表明,矿山种群植物体内酸性转化酶的较高活性可能至少部分与植物的铜耐受性有关,而它们在酸性转化酶中的较高活性又通过提供碳和能量来维持铜耐受性。容忍机制。此外,结果表明,由于铜诱导的酸性转化酶抑制作用,中性/碱性转化酶可能在补偿蔗糖分解代谢的降低中起作用。

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