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Citramalic acid and salicylic acid in sugar beet root exudates solubilize soil phosphorus

机译:甜菜根分泌物中的柠檬酸和水杨酸增溶土壤磷

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Background In soils with a low phosphorus (P) supply, sugar beet is known to intake more P than other species such as maize, wheat, or groundnut. We hypothesized that organic compounds exuded by sugar beet roots solubilize soil P and that this exudation is stimulated by P starvation. Results Root exudates were collected from plants grown in hydroponics under low- and high-P availability. Exudate components were separated by HPLC, ionized by electrospray, and detected by mass spectrometry in the range of mass-to-charge ratio (m/z) from 100 to 1000. Eight mass spectrometric signals were enhanced at least 5-fold by low P availability at all harvest times. Among these signals, negative ions with an m/z of 137 and 147 were shown to originate from salicylic acid and citramalic acid. The ability of both compounds to mobilize soil P was demonstrated by incubation of pure substances with Oxisol soil fertilized with calcium phosphate. Conclusions Root exudates of sugar beet contain salicylic acid and citramalic acid, the latter of which has rarely been detected in plants so far. Both metabolites solubilize soil P and their exudation by roots is stimulated by P deficiency. These results provide the first assignment of a biological function to citramalic acid of plant origin.
机译:背景技术在磷(P)含量低的土壤中,甜菜比其他物种(例如玉米,小麦或花生)的P含量更高。我们假设甜菜根系渗出的有机化合物可溶解土壤磷,磷的饥饿会刺激这种渗出。结果根系渗出液是从低磷和高磷条件下的水培植物中收集的。通过HPLC分离渗出液成分,通过电喷雾将其电离,并通过质谱检测,在100至1000的质荷比(m / z)范围内。低P可使至少八倍的质谱信号增强在所有收获时间均可用。在这些信号中,显示出m / z为137和147的负离子源自水杨酸和柠康酸。通过将纯物质与施有磷酸钙的Oxisol土壤一起孵育,证明了这两种化合物迁移土壤P的能力。结论甜菜根分泌物含有水杨酸和柠康酸,到目前为止,在植物中很少发现后者。两种代谢物均能溶解土壤中的磷,而磷缺乏会刺激根部渗出。这些结果为植物来源的柠檬酸提供了生物学功能的第一分配。

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