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首页> 外文期刊>Allelopathy Journal >Molecular physiological mechanism of increased weed suppression ability of allelopathic rice mediated by low phosphorus stress.
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Molecular physiological mechanism of increased weed suppression ability of allelopathic rice mediated by low phosphorus stress.

机译:低磷胁迫介导的化感水稻抑制杂草能力增强的分子生理机制。

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摘要

To explore the inducible mechanism of weed-suppressive potential in allelopatic rice accession mediated by phosphorus nutrient deficiency, we studied the molecular physiological properties of allelopathic rice regulated by different phosphorus concentrations in hydroponics. We found that in hydroponics, the weed-suppressive potential of allelopathic rice PI312777 was enhanced under low phosphorus treatment, showing higher inhibitory effects on the dry weight of barnyard grass in presence of root exudates of allelopathic rice PI312777 than control (normal nutrient condition). However, reverse was true in non-allelopathic rice Lemont. The expression of four genes encoded the key enzymes involved in phenolic metabolism pathway were all up-regulated in allelopathic rice PI312777, but down-regulated in non-allelopathic rice Lemont, except slightly up-regulated phenylalanine ammonialyase. The HPLC analysis showed that some phenolic acids (Cinnamic acid, caffeic acid, 4-hydroxybenzoic acid, syringic acid and ferulic acid) were enhanced in the leaves, roots and root exudates of allelopathic rice PI312777 under low phosphorus treatment compared to control. But they were not influenced in non-allelopathic rice Lemont. Thus low phosphorus stress increased the allelopathic potential of allelopathic rice PI312777 to prevent the competitor to absorb the nutrients in hydroponics. The enhanced weed-suppressive potential in allelopathic rice mediated by low phosphorus stress was due to the up-regulation of the genes associated with phenolic metabolism, which led to the accumulation of phenolic acids in hydroponic solution from the roots of donor plant.
机译:为了探讨磷营养素缺乏介导的异化水稻入土抑制杂草的潜在诱导机制,我们研究了水培法中不同磷浓度调节的化感水稻的分子生理特性。我们发现在水培法中,化感水稻PI312777在低磷处理下的杂草抑制能力增强,在化感水稻PI312777的根系分泌物存在下,对bar草干重的抑制作用高于对照(正常营养条件)。然而,在非化感水稻Lemont中,逆转是正确的。在化感水稻PI312777中,编码参与酚代谢途径关键酶的四个基因的表达均上调,但在非化感水稻Lemont中均下调,但苯丙氨酸氨解酶略有上调。 HPLC分析表明,与对照相比,在低磷处理下化感水稻PI312777的叶片,根和根分泌物中某些酚酸(肉桂酸,咖啡酸,4-羟基苯甲酸,丁香酸和阿魏酸)得到增强。但是它们在非化感大米柠​​檬中没有受到影响。因此,低磷胁迫增加了化感水稻PI312777的化感潜力,从而阻止了竞争者吸收水培法中的养分。低磷胁迫介导的化感水稻的杂草抑制能力增强是由于与酚类代谢相关的基因的上调,这导致供体植物根部的水培溶液中酚酸的积累。

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