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来自紫花苜蓿的 P-羟基苯丙酮酸双加氧酶参与维生素 E 生物合成和脱落酸介导的种子萌发。

P-HYDROXYPHENYLPYRUVATE DIOXYGENASE from Medicago sativa is involved in vitamin E biosynthesis and abscisic acid-mediated seed germination.

机构信息

Institute of Animal Sciences, Chinese Academy of Agricultural Sciences, Beijing 100193, China.

National Animal Husbandry Service, Ministry of Agriculture, Beijing 100125, China.

出版信息

Sci Rep. 2017 Jan 13;7:40625. doi: 10.1038/srep40625.

Abstract

P-HYDROXYPHENYLPYRUVATE DIOXYGENASE (HPPD) is the first committed enzyme involved in the biosynthesis of vitamin E, and is characterized by catalyzing the conversion of p-hydroxyphenyl pyruvate (HPP) to homogentisic acid (HGA). Here, an HPPD gene was cloned from Medicago sativa L. and designated MsHPPD, which was expressed at high levels in alfalfa leaves. PEG 6000 (polyethylene glycol), NaCl, abscisic acid and salicylic acid were shown to significantly induce MsHPPD expression, especially in the cotyledons and root tissues. Overexpression of MsHPPD was found to significantly increase the level of β-tocotrienol and the total vitamin E content in Arabidopsis seeds. Furthermore, these transgenic Arabidopsis seeds exhibited an accelerated germination time, compared with wild-type seeds under normal conditions, as well as under NaCl and ABA treatments. Meanwhile, the expression level of several genes associated with ABA biosynthesis (NCED3, NCED5 and NCED9) and the ABA signaling pathway (RAB18, ABI3 and ABI5) were significantly down-regulated in MsHPPD-overexpressing transgenic lines, as well as the total free ABA content. Taken together, these results demonstrate that MsHPPD functions not only in the vitamin E biosynthetic pathway, but also plays a critical role in seed germination via affecting ABA biosynthesis and signaling.

摘要

对羟基苯丙酮酸双加氧酶(HPPD)是维生素 E 生物合成途径中第一个关键酶,它能够催化对羟基苯丙酮酸(HPP)转化为高丝氨酸内酯(HGA)。本研究从紫花苜蓿中克隆了 HPPD 基因,命名为 MsHPPD,该基因在紫花苜蓿叶片中呈高水平表达。PEG6000(聚乙二醇)、NaCl、脱落酸和水杨酸能够显著诱导 MsHPPD 表达,特别是在子叶和根组织中。过表达 MsHPPD 能够显著提高拟南芥种子中β-生育三烯酚和总维生素 E 的含量。此外,与野生型种子相比,这些转基因拟南芥种子在正常条件下以及在 NaCl 和 ABA 处理下具有更快的萌发时间。同时,MsHPPD 过表达转基因系中与 ABA 生物合成(NCED3、NCED5 和 NCED9)和 ABA 信号通路(RAB18、ABI3 和 ABI5)相关的几个基因的表达水平以及总游离 ABA 含量显著下调。综上所述,这些结果表明 MsHPPD 不仅在维生素 E 生物合成途径中发挥作用,而且通过影响 ABA 生物合成和信号转导在种子萌发过程中也起着关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff10/5233959/7f0830d659d2/srep40625-f1.jpg

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