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首页> 外文期刊>Trees. Structure and Function >Aluminum (Al)-induced organic acid exudation in an Al-accumulating species from the Brazilian savanna
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Aluminum (Al)-induced organic acid exudation in an Al-accumulating species from the Brazilian savanna

机译:铝(Al)诱导来自巴西大草原的Al累积物种中的有机酸渗出

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摘要

Key message Styrax camporum, an Al-accumulating species from the Cerrado, seems to rely on the exudation of citric and oxalic acids to avoid excessive Al. Organic acid (OA) exudation by the roots of plants to chelate aluminum (Al) and forming non-toxic complexes is a known mechanism of Al exclusion in some plants, including some Al-accumulating species. The Cerrado vegetation in South America is composed of Al non-accumulating species and some Al-accumulating species from few families, all growing healthy on acidic soils with high Al saturation but never tested for OA exudation. We elected Styrax camporum (Styracaceae), a Cerrado woody species that accumulates in their leaves approximately 1500 mg Al kg(-1) dry mass, to examine whether plantlets of this species exude OAs in response to changes in Al concentrations in a nutrient solution, for 30 days. Citric, malic and oxalic acids exuded by the roots of this species were cumulatively measured in nutrient solutions containing 0, 740 and 1480 mu M Al. Also, we measured the Al concentration of whole plantlets at 0 and 30 days. Malic acid was not exuded by the plantlets, but it was detected inside root tips of plantlets exposed to Al. Plantlets exposed to 740 mu M Al released more oxalic and citric acid in the nutrient solution than those exposed to 0 and 1480 mu M Al after 30 days. On the other hand, between 0 and 30 days, plantlets exposed to 740 mu M Al increased the Al concentration (in whole plantlet) by three times while those exposed to 1480 mu M Al, by seven times. This higher OA exudation associated with lower Al uptake at 740 mu M Al suggests an Al exclusion mechanism that is impaired at higher Al concentrations. This is the first report showing that an Al-accumulating species from the Cerrado exudes OAs in response to the Al concentration in the root environment.
机译:关键消息Styrax域名,来自Cerrado的Al累积物种,似乎依赖于柠檬酸和草酸的渗出,以避免过量的Al。通过植物的根部以螯合铝(Al)和形成无毒复合物的有机酸(OA)渗出是一些植物中的Al排除的已知机制,包括一些累积物种。南美洲的Cerrado植被由Al非积累物种和来自少数家庭的一些累积物种组成,所有人对酸性土壤的酸性土壤繁体健康,但从未测试过OA渗出。我们选择Styrax露营机(缩架术),一种Cerrado木质物种,其在其饲料中积聚大约1500mg Al Kg(-1)干肿块,以检查该物种的植物是否响应于营养溶液中的Al浓度的变化而渗透OAS, 30天。通过该物种根部渗出的柠檬酸,苹果和草酸累积地以含有0,740和1480μmAl的营养溶液测量。此外,我们在0和30天中测量了整个植株的Al浓度。苹果酸未被植物渗出,但在暴露于Al的植物的根尖尖端中检测到它。暴露于740μm的小植物在营​​养溶液中释放出更多的草酸和柠檬酸,而不是在30天后暴露于0和1480μm的溶液。另一方面,在0到30天之间,暴露于740μm的小植物,将Al浓度(在整个小植物中)增加了三次,而暴露于1480μmAl的那些,七次。与740 mu m Al的较低Al摄取相关的较高的OA渗出表明Al排除机制在较高的铝浓度下受损。这是第一个报告,表明,来自Cerrado的Al累积物种散发OAS响应于根环境中的Al浓度。

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