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首页> 外文期刊>Photosynthesis Research >Characterization of the NADP malic enzyme gene family in the facultative, single-cell C4 monocot Hydrilla verticillata
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Characterization of the NADP malic enzyme gene family in the facultative, single-cell C4 monocot Hydrilla verticillata

机译:兼性单细胞C4 单子叶植物Hydrilla verticillata中NADP苹果酶基因家族的特征

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Hydrilla verticillata has a facultative single-cell system that changes from C3 to C4 photosynthesis. A NADP+-dependent malic enzyme (NADP-ME) provides a high [CO2] for Rubisco fixation in the C4 leaf chloroplasts. Of three NADP-ME genes identified, only hvme1 was up-regulated in the C4 leaf, during the light period, and it possessed a putative transit peptide. Unlike obligate C4 species, H. verticillata exhibited only one plastidic isoform that may perform housekeeping functions, but is up-regulated as the photosynthetic decarboxylase. Of the two cytosolic forms, hvme2 and hvme3, the latter exhibited the greatest expression, but was not light-regulated. The mature isoform of hvme1 had a pI of 6.0 and a molecular mass of 64 kD, as did the recombinant rHVME1m, and it formed a tetramer in the chloroplast. The recombinant photosynthetic isoform showed intermediate characteristics between isoforms in terrestrial C3 and C4 species. The catalytic efficiency of rHVME1m was four-fold higher than the cytosolic rHVME3 and two-fold higher than recombinant cytosolic isoforms of rice, but lower than plastidic forms of maize. The K m (malate) of 0.6 mM for rHVME1 was higher than maize plastid isoforms, but four-fold lower than found with rice. A comprehensive phylogenetic analysis of 25 taxa suggested that chloroplastic NADP-ME isoforms arose from four duplication events, and hvme1 was derived from cytosolic hvme3. The chloroplastic eudicot sequences were a monophyletic group derived from a cytosolic clade after the eudicot and monocot lineages separated, while the monocots formed a polyphyletic group. The findings support the hypothesis that a NADP-ME isoform with specific and unusual regulatory properties facilitates the functioning of the single-cell C4 system in H. verticillata.
机译:疣丝藻具有兼性的单细胞系统,其光合作用从C3 变为C4 。 NADP + 依赖性苹果酸酶(NADP-ME)为Rubisco固定在C4 叶绿体中提供了很高的[CO2 ]。在鉴定到的三个NADP-ME基因中,只有hvme1在光亮时期在C4 叶片中被上调,并且具有推定的转运肽。与专性的C4 物种不同,verticalillata表现出仅一种质体同工型,可以执行管家功能,但被上调为光合脱羧酶。在两种细胞质形式hvme2和hvme3中,后者表现出最大的表达,但不受光调节。与重组rHVME1m一样,hvme1的成熟同工型的pI为6.0,分子量为64 kD,并在叶绿体中形成了四聚体。重组光合亚型在陆生C3 和C4 物种之间表现出中间特征。 rHVME1m的催化效率比胞质rHVME3高4倍,比水稻的重组胞质亚型高2倍,但比玉米的质体形式低。 rHVME1的K m(苹果酸)为0.6 mM,高于玉米质体亚型,但比水稻低四倍。对25个类群的全面系统发育分析表明,叶绿体NADP-ME亚型是由四个重复事件引起的,而hvme1来源于胞质hvme3。叶绿体真双子叶植物序列是在单子叶植物和单子叶植物谱系分离后源自胞质进化枝的单系统群体,而单子叶植物形成了多系统群体。这些发现支持以下假设:具有特定和异常调控特性的NADP-ME同工型促进了黄褐藻中单细胞C4 系统的功能。

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