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Wheat genotypes differing in aluminum tolerance differ in their growth response to CO2 enrichment in acid soils

机译:铝耐性不同的小麦基因型在酸性土壤中对二氧化碳富集的生长反应也不同

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摘要

Aluminum (Al) toxicity is a major factor limiting plant growth in acid soils. Elevated atmospheric CO2 [CO2] enhances plant growth. However, there is no report on the effect of elevated [CO2] on growth of plant genotypes differing in Al tolerance grown in acid soils. We investigated the effect of short-term elevated [CO2] on growth of Al-tolerant (ET8) and Al-sensitive (ES8) wheat plants and malate exudation from root apices by growing them in acid soils under ambient [CO2] and elevated [CO2] using open-top chambers. Exposure of ET8 plants to elevated [CO2] enhanced root biomass only. In contrast, shoot biomass of ES8 was enhanced by elevated [CO2]. Given that exudation of malate to detoxify apoplastic Al is a mechanism for Al tolerance in wheat plants, ET8 plants exuded greater amounts of malate from root apices than ES8 plants under both ambient and elevated [CO2]. These results indicate that elevated [CO2] has no effect on malate exudation in both ET8 and ES8 plants. These novel findings have important implications for our understanding how plants respond to elevated [CO2] grown in unfavorable edaphic conditions in general and in acid soils in particular.
机译:铝(Al)毒性是限制酸性土壤中植物生长的主要因素。升高的大气CO2 [CO2]可促进植物生长。但是,没有关于[CO2]升高对酸性土壤中耐铝性不同的植物基因型生长的影响的报道。我们研究了短期升高的[CO2]对耐Al(ET8)和Al敏感(ES8)小麦植物的生长以及在环境[CO2]和升高的[AC2]下在酸性土壤中使其生长的影响。 [CO2]使用敞开式腔室。 ET8植物暴露于升高的[CO2]仅能增强根系生物量。相反,升高的[CO2]可增强ES8的芽生物量。考虑到苹果酸的渗出以解毒质外性铝是小麦植物对铝的耐受性的机制,在环境和升高的[CO2]条件下,ET8植物从根尖分泌的苹果酸量都比ES8植物高。这些结果表明,升高的[CO2]对ET8和ES8植物的苹果酸分泌没有影响。这些新颖的发现对于我们理解植物如何应对一般不利条件下(特别是在酸性土壤中)生长在不利的土壤条件下升高的[CO2]具有重要意义。

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