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Spatial distribution and expression of intracellular and extracellular acid phosphatases of cluster roots at different developmental stages in white lupin

机译:白羽扇豆不同发育阶段簇状根细胞内和细胞外酸性磷酸酶的空间分布与表达

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摘要

Acid phosphatases (APases) play a key role in phosphorus (P) acquisition and recycling in plants. White lupin (Lupinus albus L) forms cluster roots (CRs) and produces large amounts of APases under P deficiency. However, the relationships between the activity of intracellular and extracellular APases (EC 3.1.3.2) and CR development are not fully understood. Here, comparative studies were conducted to examine the spatial variation pattern of APase activity during CR development using the enzyme-labelled fluorescence-97 (ELF-97) and the p-nitrophenyl phosphate methods. The activity of intracellular and extracellular APases was significantly enhanced under P deficiency in the non-CRs and CRs at different developmental stages. These two APases exhibited different spatial distribution patterns during CR development, and these distribution patterns were highly modified by P deficiency. The activity of extracellular APase increased steadily with CR development from meristematic, juvenile, mature to senescent stages under P deficiency. In comparison, P deficiency-induced increase in the activity of intracellular APase remained relatively constant during CR development. Increased activity of intracellular and extracellular APases was associated with enhanced expression of LaSAP1 encoding intracellular APase and LaSAP2 encoding extracellular APase. The expression levels of these two genes were significantly higher at transcriptional level in both mature and senescent CRs. Taken together, these findings demonstrate that both activity and gene expression of intracellular or extracellular APases exhibit a differential response pattern during CR development, depending on root types, CR developmental stages and P supply. Simultaneous in situ determination of intracellular and extracellular APase activity has proved to be an effective approach for studying spatial variation of APases during CR development. (C) 2013 Elsevier GmbH. All rights reserved.
机译:酸性磷酸酶(APase)在植物中磷(P)的获取和回收中起着关键作用。白羽扇豆(羽扇豆L)形成簇根(CR),并在磷缺乏时产生大量的APase。但是,细胞内和细胞外APase的活性(EC 3.1.3.2)与CR发育之间的关系尚不完全清楚。在这里,进行了比较研究,以研究使用酶标记的荧光97(ELF-97)和对硝基苯基磷酸酯方法在CR发育过程中APase活性的空间变化模式。在不同发育阶段的非CR和CR中,磷缺乏时细胞内和细胞外APase的活性显着增强。这两种APase在CR发育过程中表现出不同的空间分布模式,并且这些分布模式因P缺乏而被高度修饰。在缺磷条件下,随着CR从分生,幼年,成熟到衰老阶段的发展,胞外APase的活性稳定增加。相比之下,在CR发展过程中,磷缺乏引起的细胞内APase活性的增加保持相对恒定。细胞内和细胞外APase活性的增加与编码细胞内APase的LaSAP1和编码细胞外APase的LaSAP2的表达增强有关。在成熟和衰老的CR中,这两个基因的表达水平在转录水平上均显着较高。综上所述,这些发现表明,在CR发育过程中,细胞内或细胞外APase的活性和基因表达均表现出不同的响应模式,这取决于根系类型,CR发育阶段和磷的供应。胞内和胞外APase活性的同时原位测定已被证明是研究CR发育过程中APase的空间变异的有效方法。 (C)2013 Elsevier GmbH。版权所有。

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