首页> 外文期刊>Journal of Plant Biology >Root Proliferation, Proton Efflux, and Acid Phosphatase Activity in Common Bean (Phaseolus vulgaris) Under Phosphorus Shortage
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Root Proliferation, Proton Efflux, and Acid Phosphatase Activity in Common Bean (Phaseolus vulgaris) Under Phosphorus Shortage

机译:缺磷条件下普通豆(Phaseolus vulgaris)的根系增殖,质子流出和酸性磷酸酶活性

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The impact of phosphorus (P) availability on root proliferation, proton efflux, and acid phosphatase activities in roots and leaves was investigated in two lines of common bean (Phaseolus vulgaris): BAT 477 and CocoT. Phosphorus was supplied as KH2PO4 at 0 and 60 μmol per plant (0P and 60P, respectively). Under P shortage, the plant growth was more restricted in CocoT than in BAT 477, shoots being more affected than roots. The root area increased significantly at 0P in both lines. Up to 1 week following P shortage, the proton efflux increased in both lines despite a higher extent in BAT 477 as compared to CocoT. Root acid phosphatase activity was significantly higher under P limitation in the both lines, this trend being more pronounced in BAT 477 than in CocoT. This was also true for the leaf acid phosphatase. Regardless of the bean line, higher values were recorded for the old leaves as compared to the young ones for this parameter. Interestingly, a significant correlation between Pi content in old leaves and their acid phosphatase activity was found in P-lacking (0P) plants of the both bean lines, suggesting that acid phosphatase may contribute to increase the phosphorus use efficiency in bean through the P remobilization from the old leaves. As a whole, our results highlight the significance of the root H+ extrusion and the acid phosphatase activity rather than the root proliferation in the relative tolerance of BAT 477 to severe P deficiency.
机译:磷(P)的可用性对根和叶中根系增殖,质子外排以及酸性磷酸酶活性的影响在两种普通豆(菜豆)中进行了研究:BAT 477和CocoT。磷以每株植物0和60μmol(分别为0P和60P)的KH2 PO4 的形式提供。在缺磷的情况下,与BAT 477相比,CocoT中的植物生长受到的限制更大,而芽比根部受到的影响更大。两条线的根系面积均在0P时显着增加。缺磷后长达1周,尽管BAT 477中的质子流出量比CocoT更高,但两条系中的质子外流均增加。在两个品系中,在磷限制下,根系磷酸磷酸酶的活性均显着较高,在BAT 477中这种趋势比在CocoT中更为明显。叶酸磷酸酶也是如此。无论使用哪种豆系,该参数记录的老叶值均高于年轻叶。有趣的是,在两个豆系的P缺乏(0P)植物中,老叶中的Pi含量与其酸性磷酸酶活性之间存在显着的相关性,这表明酸性磷酸酶可能通过P迁移而有助于提高豆中磷的利用效率。从老叶子。总体而言,我们的研究结果突出了BAT 477对严重磷缺乏的相对耐受性,表明根H +挤出和酸性磷酸酶活性的重要性,而不是根增殖的重要性。

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