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Organic Anion Exudation by Lowland Rice (Oryza sativa L.) at Zinc and Phosphorus Deficiency

机译:缺锌和缺磷条件下低地稻(Oryza sativa L.)的有机阴离子渗出

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The objectives of this paper were to determine (1) if lowland rice (Oryza sativa L.) plants respond similarly to low zinc (Zn) and phosphorus (P) availability by increased root exudation of low-molecular weight organic anions (LMWOAs) and (2) if genotypic variation in tolerance to low soil supply of either Zn or P is related to LMWOA exudation rates. Exudation of LMWOAs can increase bioavailability of both Zn and P to the plant, through partly similar chemical mechanisms. We used seven lowland rice genotypes and showed in two experiments that genotypes that grow relatively well on a soil with low Zn availability also grow well on a sparingly soluble Ca-phosphate (r = 0.80, P = 0.03). We measured exudation rates of LMWOAs on nutrient solution and found that both Zn and P deficiency induced significant increases. Among the LMWOAs detected oxalate was quantitatively the most important, but citrate is considered more effective in mobilizing Zn. Citrate exudation rates correlated with tolerance to low soil levels of Zn (P=0.05) and P (P = 0.07). In a low-Zn-field we found an increased biomass production at higher plant density, which is supportive for a concentration-dependent rhizosphere effect on Zn bioavailability such as LMWOA exudation. We, for the first time, showed that tolerance to low Zn availability is related to the capacity of a plant to exude LMWOAs and confirmed that exudation of LMWOAs must be regarded a multiple stress response.
机译:本文的目的是确定(1)低地水稻(Oryza sativa L.)植物是否通过增加低分子量有机阴离子(LMWOAs)的根系分泌量而对低锌(Zn)和磷(P)可用性做出类似反应。 (2)对低土壤锌或磷供应的耐受性的基因型变化是否与LMWOA渗出率有关。通过部分相似的化学机制,LMTOA的渗出可以增加锌和磷对植物的生物利用度。我们使用了7种低地水稻基因型,并在两次实验中表明,在锌利用率较低的土壤上生长相对良好的基因型在微溶的Ca-磷酸盐上也生长良好(r = 0.80,P = 0.03)。我们测量了LMWOAs在营养液上的渗出率,发现锌和磷缺乏均引起显着增加。在LMWOA中,检测到的草酸盐在数量上是最重要的,但柠檬酸盐被认为对动员锌更有效。柠檬酸盐的渗出速率与对低土壤锌(P = 0.05)和磷(P = 0.07)的耐受性相关。在低锌田中,我们发现在较高的植物密度下生物量产量增加,这支持浓度依赖性的根际对锌生物利用度的影响,例如LMWOA渗出。我们首次表明对低锌可用性的耐受性与植物散发LMWOA的能力有关,并证实必须将LMWOA的渗出视为多重胁迫反应。

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