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Citrate exudation and proton release by phosphorus-deficient Lupinus albus as affected by fusicoccin and vanadate

机译:磷酸含氟含糊不清的柠檬酸渗出和质子释放,血红素血红蛋白受氟辛酸和钒酸盐的影响

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White lupin (Lupinus albus L. cv. Kiev) plants were grown in nutrient solution at 0, 1, 25 250 mu M P for 36 d to exarnme carboxylate exudation and H~+ release from roots in response to fusicoccin and vanadate application and to assess relationship between carboxylate exudation and H~+ release. Root exudates were collected in the nutrient solution containing K Ca, Mg, B, and vanadate or fusicoccin. The results showed that lupin crops tended to develop cluster root regardless of P supply before 12 days after treatment (DAT), but cluster root formation was significantly inhibited by high P supply with time. The application of mu M P induced more cluster roots compared wifli the 0 mu M P treatment after 21 DAT. In contrast, cluster root formation was significantly inhibited by P supply of 25 or 250 uM P. The low-P supply induced higher citrate exudation and proton release. Acidification was also evident at 25 and 250 uM P though citrate exudation was not detected. Proton release mainly occurred in active normal or cluster roots, indicating higher spatial heterogeneity within root system. Proton release decreased with increased application of vanadate, and was significant inhibited at over 100 uM vanadate. Citrate exudation showed a similar pattern tovanadate, but an increased exudation was observed at 500 uM vanadate. Localised supply of 100 mu M vanadate to single cluster root inhibited proton release, but there was still a higher citrate exudation. Fusicoccin enhanced significantly the proton release and citrate exudation in comparison to control. The results suggest that non-synchronous presses may be involved in the release of proton and exudation of citrate under P deficiency, but citrate exudation is highly associated with activity of ATPase. Proton release is mainly caused by excess cation uptake by the roots of plants.
机译:白色羽扇豆(Lupinus Albus L.CV。基辅)植物在0,1,25250μmP的营养溶液中生长,36d至exarnme羧酸盐渗出和H〜+从根部的释放响应于Fusicoccin和钒酸盐应用并评估羧酸盐渗出与H〜+释放之间的关系。在含有K Ca,Mg,B和钒酸盐或氟磷酸盐的营养溶液中收集根渗出物。结果表明,羽扇豆作物倾向于在治疗后12天之前发育群体根系,但在12天内(DAT),但随着时间的推移,高P供应显着抑制簇根部形成。 Mu M P诱导更多簇根的应用比较了WiFli的0μmp治疗21 dat后。相比之下,通过25或250μmP的P供应显着抑制簇根形成。低P供给诱导较高的柠檬酸盐渗出和质子释放。酸化也在25和250μmp中也明显明显,但没有检测到柠檬酸盐渗出。质子释放主要发生在活性正常或簇根中,表明根系中的较高的空间异质性。质子释放随着钒酸盐的增加而降低,并且在100微米钒酸盐上显着抑制。柠檬酸盐渗出显示出类似的图案TOVANADATE,但在500μm钒酸盐中观察到增加的渗出。局部供应100 mu m钒酸盐到单簇根抑制质子释放,但仍然存在较高的柠檬酸盐渗出。与对照相比,Fusicoccin显着提高质子释放和柠檬酸盐渗出。结果表明,非同步压力可能涉及质子的释放和柠檬酸盐的P缺乏,但柠檬酸盐渗出与ATP酶的活性高度相关。质子释放主要是由植物根部的过度阳离子摄取引起的。

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