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磷缺乏调节白羽扇豆排根簇中磷酸烯醇式丙酮酸羧化酶的表达。

Phosphate deficiency regulates phosphoenolpyruvate carboxylase expression in proteoid root clusters of white lupin.

作者信息

Peñaloza Enrique, Muñoz Gastón, Salvo-Garrido Haroldo, Silva Herman, Corcuera Luis J

机构信息

Instituto de Investigaciones Agropecuarias, Unidad de Biotecnología, INIA Carillanca, Casilla 58-D, Temuco, Chile.

出版信息

J Exp Bot. 2005 Jan;56(409):145-53. doi: 10.1093/jxb/eri008. Epub 2004 Oct 22.

Abstract

Proteoid roots play a major role in enabling white lupin (Lupinus albus L.) to adapt to phosphate (Pi) deficiency. Such roots release citrate from proteoid rootlets, which allows this species to mobilize Pi from sparingly soluble Pi sources. Release of citrate is preceded by a significant accumulation of organic acids, in which a Pi deficiency-inducible phosphoenolpyruvate carboxylase (PEPC) activity has been involved. To gain an insight into this adaptive mechanism, the expression of three different transcripts coding for PEPC was examined in proteoid rootlets of Pi-starved and Pi-starved-and-rescued white lupin. Semi-quantitative reverse transcriptase (RT)-PCR experiments performed with gene-specific primers targeted to the 3'-end region of the corresponding cDNAs revealed that the transcripts for these three PEPCs differentially accumulate in both Pi-starved and Pi-starved-and-rescued proteoid rootlets. Semi-quantitative RT-PCR analysis in Pi-starved proteoid rootlets sampled at different times after being rescued from Pi deficiency showed that Pi levels differentially down-regulated the three PEPC transcripts. RT-PCR experiments were further extended to Pi-starved and Pi-fed whole roots, cotyledons, and leaves on which a tissue-specific, Pi-dependent PEPC expression was observed. These results indicate that there exists at least three different transcripts coding for PEPC in proteoid root clusters of white lupin, whose expression are differentially regulated by Pi.

摘要

排根在使白羽扇豆(Lupinus albus L.)适应缺磷环境中起主要作用。这类根从排根小根中释放柠檬酸,这使得该物种能够从难溶性磷源中活化磷。柠檬酸的释放之前会有有机酸的显著积累,其中涉及一种缺磷诱导型磷酸烯醇式丙酮酸羧化酶(PEPC)活性。为深入了解这种适应性机制,研究了编码PEPC的三种不同转录本在缺磷以及缺磷后又恢复供磷的白羽扇豆排根小根中的表达情况。用针对相应cDNA 3'端区域的基因特异性引物进行的半定量逆转录酶(RT)-PCR实验表明,这三种PEPC的转录本在缺磷和缺磷后又恢复供磷的排根小根中差异积累。对从缺磷状态恢复不同时间后取样的缺磷排根小根进行半定量RT-PCR分析表明,磷水平差异下调了这三种PEPC转录本。RT-PCR实验进一步扩展到缺磷和供磷的完整根、子叶和叶片,在这些部位观察到了组织特异性的、依赖磷的PEPC表达。这些结果表明,白羽扇豆排根簇中至少存在三种编码PEPC的不同转录本,其表达受磷的差异调节。

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