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首页> 外文期刊>Functional Plant Biology >Phosphorus deficiency enhances plasma membrane H+-ATPase activity and citrate exudation in greater purple lupin (Lupinus pilosus).
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Phosphorus deficiency enhances plasma membrane H+-ATPase activity and citrate exudation in greater purple lupin (Lupinus pilosus).

机译:磷缺乏会增强紫色羽扇豆羽扇豆(Lupinus pilosus)的质膜H + -ATPase活性和柠檬酸盐的渗出。

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The response of greater purple lupin (L. pilosus) to a combination of phosphorus (P) deficiency and aluminium (Al) toxicity is unknown, and the mechanisms involved in the exudation of organic anions from greater purple lupin have not been reported. Therefore, plants grown with (+P) or without (-P) 250 micro M P were exposed to 0 or 50 micro M AlCl3 and the amount of organic anions exuded and the activities of plasma membrane H+-adenosinetriphosphatase and H+-pumps were investigated. Twenty days of P deficiency resulted in significantly reduced shoot growth and increased proteoid root formation. Exposure to 50 micro M AlCl3 did not induce citrate exudation but induced some malate exudation in -P plants. In contrast, P deficiency induced exudation of citrate. Enhanced citrate exudation was attributed to the large increase in the activity of plasma membrane H+-ATPase and associated H+ transport. This was shown by the inhibitory effect of vanadate on plasma membrane H+-ATPase activity in vitro and on citrate exudation in vivo. However, vanadate did not suppress the exudation of malate. During 9 h of Al exposure, exudation of citrate showed a continuing increase for both -P and +P plants, while malate exudation increased only during the first 3 h, after which it rapidly declined. The total amount of organic anion exudation was significantly higher for -P plants. In the presence of 50 micro M anion channel blockers (anthracene-9-carboxylic acid (A-9-C), niflumic acid (NIF) and phenylglyoxal (PG)), the exudation of citrate and malate was reduced by 25-40%. It was concluded that P deficiency induces citrate exudation by enhancing the activity of plasma membrane H+-ATPase and H+ export. In L. pilosus, exudation of organic anions occurs primarily in response to P deficiency but not Al toxicity. This contrasts with previous results obtained in Brassica napus.
机译:尚不知道较大的紫色羽扇豆(羽扇豆)对磷(P)缺乏和铝(Al)毒性的组合的反应,并且尚未报道从较大的紫色羽扇豆中渗出有机阴离子的机理。因此,将有(+ P)或没有(-P)250 micro M P的植物暴露于0或50 micro M AlCl3并渗出有机阴离子,研究了质膜H +-腺苷三磷酸酶和H +-泵的活性。缺磷20天导致芽生长显着减少和类固醇根形成增加。暴露于50 micro M AlCl3不会诱导柠檬酸盐渗出,但会导致-P植物中苹果酸的渗出。相反,磷缺乏导致柠檬酸盐渗出。柠檬酸盐渗出的增强归因于质膜H + -ATPase的活性和相关H +转运的大量增加。钒酸盐对体外质膜H + -ATPase活性的抑制作用以及体内对柠檬酸盐渗出的抑制作用表明了这一点。但是,钒酸盐不能抑制苹果酸的渗出。在铝暴露的9小时内,-P和+ P植物的柠檬酸盐渗出均持续增加,而苹果酸的渗出仅在前3小时才增加,此后迅速下降。 -P植物的有机阴离子渗出总量明显更高。在存在50种微量M阴离子通道阻滞剂(蒽9-羧酸(A-9-C),尼氟酸(NIF)和苯乙二醛(PG))的情况下,柠檬酸和苹果酸的分泌减少了25-40% 。结论是,磷缺乏通过增强质膜H + -ATPase活性和H +出口而诱导柠檬酸盐渗出。在毛状紫苏中,有机阴离子的渗出主要是由于磷缺乏引起的,而不是铝的毒性。这与在甘蓝型油菜中获得的先前结果相反。

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