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首页> 外文期刊>Allelopathy Journal >Physiological responses of allelopathic rice accessions to low phosphorus stress
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Physiological responses of allelopathic rice accessions to low phosphorus stress

机译:化感水稻品种对低磷胁迫的生理响应

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摘要

Physiological responses of rice accessions, PI1312777 (allelopathic) and Lemont (non-allelopathic) to phosphorus supply were evaluated in hydroponics in a greenhouse experiment. Under the low phosphorus supply, the weed-suppressive potential of PI312777 was enhanced and inhibited the morphological traits of barnyardgrass; besides, the root length of PI312777 was enhanced and that of Lemont was reduced. There were no decreases in plant height and dry weight of PI312777, but these were significantly reduced in Lemont. The contents of soluble sugar and protein were increased in PI312777, but these were decreased in Lemont. Compared to control, all photosynthetic physiological indices in PI312777 were slightly decreased in low P condition but were increased in Lemont. Furthermore, the uptake efficiency of nitrogen and potassium in two rice accessions was enhanced under low P treatment, but phosphorus uptake efficiency was decreased. At low P supply, the nitrogen, phosphorus and potassium utilization efficiency was higher in allelopathie rice 'PI312777' than in non allelopathic rice 'Lemont'. The differential expression of key enzymes involved in photosynthesis and nutrient absorption, was higher in allelopathic rice than in non-allelopathic rice underlow P dose. This study confirmed that allelopathic rice 'PI312777' maintained high photosynthesis and nutrients absorption than non-allelopathic 'Lemont'.
机译:在温室试验中,在水培法中评估了水稻种质,PI1312777(化感物质)和Lemont(非化感物质)对磷供应的生理响应。在低磷供应下,PI312777的抑草潜力增强,抑制了of草的形态特征。另外,增加了PI312777的根长,减少了Lemont的根长。 PI312777的株高和干重没有降低,但Lemont中的这些显着降低。 PI312777中可溶性糖和蛋白质的含量增加,而Lemont中可溶性糖和蛋白质的含量减少。与对照相比,在低磷条件下,PI312777的所有光合生理指标均略有降低,而在Lemont中则升高。此外,低磷处理提高了两个水稻品种中氮,钾的吸收效率,但降低了磷的吸收效率。在低磷供应下,化感水稻'PI312777'的氮,磷和钾利用效率高于非化感水稻'Lemont'。在低磷剂量下,化感水稻的光合作用和养分吸收的关键酶的差异表达高于非化感水稻。这项研究证实,化感水稻“ PI312777”比非化感水稻“ Lemont”具有更高的光合作用和养分吸收能力。

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