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拟南芥类脂酶 A 在根系发育中的作用与生长素响应和缺磷有关。

Roles of Arabidopsis patatin-related phospholipases a in root development are related to auxin responses and phosphate deficiency.

机构信息

Max Planck Institute for Plant Breeding Research, Department of Plant Microbe Interactions, Carl von Linné Weg 10, D-50829 Cologne, Germany.

出版信息

Mol Plant. 2010 May;3(3):524-38. doi: 10.1093/mp/ssp109. Epub 2010 Jan 6.

Abstract

Phospholipase A enzymes cleave phospho- and galactolipids to generate free fatty acids and lysolipids that function in animal and plant hormone signaling. Here, we describe three Arabidopsis patatin-related phospholipase A (pPLA) genes AtPLAIVA, AtPLAIVB, and AtPLAIVC and their corresponding proteins. Loss-of-function mutants reveal roles for these pPLAs in roots during normal development and under phosphate deprivation. AtPLAIVA is expressed strongly and exclusively in roots and AtplaIVA-null mutants have reduced lateral root development, characteristic of an impaired auxin response. By contrast, AtPLAIVB is expressed weakly in roots, cotyledons, and leaves but is transcriptionally induced by auxin, although AtplaIVB mutants develop normally. AtPLAIVC is expressed in the floral gynaecium and is induced by abscisic acid (ABA) or phosphate deficiency in roots. While an AtplaIVC-1 loss-of-function mutant displays ABA responsiveness, it exhibits an impaired response to phosphate deficiency during root development. Recombinant AtPLA proteins hydrolyze preferentially galactolipids and, less efficiently, phospholipids, although these enzymes are not localized in chloroplasts. We find that AtPLAIVA and AtPLAIVB are phosphorylated by calcium-dependent protein kinases in vitro and this enhances their activities on phosphatidylcholine but not on phosphatidylglycerol. Taken together, the data reveal novel functions of pPLAs in root development with individual roles at the interface between phosphate deficiency and auxin signaling.

摘要

磷脂酶 A 酶可切割磷酸酯和半乳糖酯,生成游离脂肪酸和溶血磷脂,在动植物激素信号转导中发挥作用。在此,我们描述了三个拟南芥类脂酶相关磷脂酶 A(pPLA)基因 AtPLAIVA、AtPLAIVB 和 AtPLAIVC 及其相应的蛋白质。功能丧失突变体揭示了这些 pPLA 在正常发育和缺磷条件下根中的作用。AtPLAIVA 在根中强烈且特异性表达,而 AtplaIVA 缺失突变体侧根发育减少,表现出受损的生长素响应特征。相比之下,AtPLAIVB 在根、子叶和叶片中弱表达,但受生长素转录诱导,尽管 AtplaIVB 突变体发育正常。AtPLAIVC 在花雌蕊中表达,并被生长素和根中的脱落酸(ABA)或缺磷诱导。虽然 AtplaIVC-1 功能丧失突变体表现出对 ABA 的响应,但在根发育过程中对缺磷的响应受损。重组 AtPLA 蛋白优先水解半乳糖脂,其次是磷脂,但这些酶不在叶绿体中定位。我们发现 AtPLAIVA 和 AtPLAIVB 在体外可被钙依赖性蛋白激酶磷酸化,这增强了它们对卵磷脂的活性,但对磷脂酰甘油的活性没有增强。综上所述,这些数据揭示了 pPLA 在根发育中的新功能,在缺磷和生长素信号之间的界面上具有各自的作用。

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