首页> 外文期刊>Journal of Chemical Ecology >Juglone Disrupts Root Plasma Membrane H+-ATPase Activity and Impairs Water Uptake, Root Respiration, and Growth in Soybean (Glycine max) and Corn (Zea mays)
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Juglone Disrupts Root Plasma Membrane H+-ATPase Activity and Impairs Water Uptake, Root Respiration, and Growth in Soybean (Glycine max) and Corn (Zea mays)

机译:Juglone破坏大豆(Glycine max)和玉米(Zea mays)的根质膜H + -ATPase活性并损害水分吸收,根系呼吸和生长

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摘要

Juglone is phytotoxic, but the mechanisms of growth inhibition have not been fully explained. Previous studies have proposed that disruption of electron transport functions in mitochondria and chloroplasts contribute to observed growth reduction in species exposed to juglone. In studies reported here, corn and soybean seedlings grown in nutrient solution amended with 10, 50, or 100 μM juglone showed significant decreases in root and shoot dry weights and lengths with increasing concentrations. However, no significant differences in leaf chlorophyll fluorescence or CO2-dependent leaf oxygen evolution were observed, even in seedlings that were visibly affected. Disruption of root oxygen uptake was positively correlated with increasing concentrations of juglone, suggesting that juglone may reach mitochondria in root cells. Water uptake and acid efflux also decreased for corn and soybean seedlings treated with juglone, suggesting that juglone may affect metabolism of root cells by disrupting root plasma membrane function. Therefore, the effect of juglone on H+-ATPase activity in corn and soybean root microsomes was tested. Juglone treatments from 10 to 1000 μM significantly reduced H+-ATPase activity compared to controls. This inhibition of H+-ATPase activity and observed reduction of water uptake offers a logical explanation for previously documented phytotoxicity of juglone. Impairment of this enzyme's activity could affect plant growth in a number of ways because proton-pumping in root cells drives essential plant processes such as solute uptake and, hence, water uptake.
机译:Juglone具有植物毒性,但尚未完全阐明其抑制生长的机制。先前的研究提出,线粒体和叶绿体中电子传递功能的破坏有助于暴露于胡桃木中的物种减少生长。在这里报道的研究中,在营养液中用10、50或100μM的朱古力修正后生长的玉米和大豆幼苗显示,根和茎干的重量和长度随浓度的增加而显着降低。然而,即使在受到明显影响的幼苗中,也未观察到叶绿素荧光或CO2依赖性叶氧释放的显着差异。破坏根系吸氧量与增加的juglone浓度呈正相关,表明juglone可能到达根细胞中的线粒体。用juglone处理的玉米和大豆幼苗的水分吸收和酸流出也降低,这表明juglone可能通过破坏根的质膜功能而影响根细胞的代谢。因此,测试了Juglone对玉米和大豆根部微粒体中H + -ATPase活性的影响。与对照相比,Juglone处理10至1000μM可以显着降低H + ATPase的活性。 H + -ATPase活性的这种抑制作用和观察到的水分吸收减少,为先前记载的胡桃酮的植物毒性提供了逻辑上的解释。这种酶活性的削弱可能会以多种方式影响植物的生长,因为根细胞中的质子泵浦驱动着植物的基本过程,例如溶质的吸收和水分的吸收。

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