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Antimony tolerance and accumulation in a metallicolous and a non-metallicolous population of Salvia spinosa L.

机译:金属色和非金属色群体中的锑耐受性和积累的丹参

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AimsAntimony (Sb) is locally found at potentially toxic concentrations in mineralized soils, usually together with arsenic (As). However, local adaptation of plant populations to Sb toxicity has never been shown thus far. Here we compared Sb tolerance and accumulation between a non-metallicolous (NM) population of Salvia spinosa, and a con-specific metallicolous (M) population from a strongly Sb/As-enriched soil in Dashkasan, Iran.MethodsPlants were exposed in hydroponics to a series of Sb[III] and Sb[V] concentrations. After 3 weeks the dry weights and Sb concentrations of roots and shoots were determined.ResultsEstimated from the effects on shoot dry weight, the M population was more tolerant than the NM one, particularly to Sb[V], but to a lower degree also to Sb[III]. In both populations Sb[III] was taken up and translocated at higher rates than Sb[V]. The Sb concentrations in roots and shoots were slightly, but significantly higher in the M than in the NM population.ConclusionsSince Sb[V] and As[V] seem to follow very different detoxification pathways, it can be argued that the superior tolerance to Sb[V] in M represents a local adaptation to Sb[V] toxicity itself, rather than being a mere by-product of hypertolerance to its chemical analogue, As[V]. Since Sb[III] and As[III] or As[V] share common detoxification pathways, the apparent Sb[III] hypertolerance in the M population might represent a by-product of As hypertolerance.
机译:Aimsistimony(SB)在含有矿化土壤中的潜在有毒浓度的局部发现,通常与砷(AS)一起。然而,到目前为止,从未显示出植物群体对SB毒性的局部适应。在这里,我们比较了Salvia spinosa的非金属致(NM)群体之间的SB耐受性和积累,以及来自Dashkasan的强烈的SB /富含土壤的Con特异性的金属溶解(M)群,伊朗。在水培中暴露在水培中一系列Sb [III]和SB [V]浓度。在3周后,确定干重和Sb浓度的根和芽。从芽干重的效果中,M人群比NMα更耐受,特别是对于Sb [V],但对较低程度来说,但对较低程度来说也是更耐受的。 SB [III]。在两个人群中,SB [III]被占据并以比SB更高的速率(V])。在根和芽中的Sb浓度略微,但在m群体中显着高。结论Sb [V]和似乎[V]似乎遵循非常不同的解毒途径,可以认为对SB的卓越耐受性[v]在M中表示对Sb [V]毒性本身的局部适应,而不是仅为化学类似物的超级高层产物,如[V]。由于Sb [III]和作为[III]或[V]共享常见的解毒途径,M人群中的表观SB [III]高度耐受性可能代表作为高级潜力的副产物。

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