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厚叶凤尾藓中油体的形成受 MpC1HDZ 调控,并可作为抵御节肢动物食草动物的防御机制。

Oil Body Formation in Marchantia polymorpha Is Controlled by MpC1HDZ and Serves as a Defense against Arthropod Herbivores.

机构信息

Instituto de Agrobiotecnología del Litoral, Universidad Nacional del Litoral - CONICET, Facultad de Bioquímica y Ciencias Biológicas, Centro Científico Tecnológico CONICET Santa Fe, Colectora Ruta Nacional No. 168 km. 0, Paraje El Pozo, Santa Fe 3000, Argentina.

Department of Comparative Development and Genetics, Max Planck Institute for Plant Breeding Research, Carl-von-Linné-Weg 10, 50829 Cologne, Germany.

出版信息

Curr Biol. 2020 Jul 20;30(14):2815-2828.e8. doi: 10.1016/j.cub.2020.05.081. Epub 2020 Jun 18.

DOI:10.1016/j.cub.2020.05.081
PMID:32559445
Abstract

The origin of a terrestrial flora in the Ordovician required adaptation to novel biotic and abiotic stressors. Oil bodies, a synapomorphy of liverworts, accumulate secondary metabolites, but their function and development are poorly understood. Oil bodies of Marchantia polymorpha develop within specialized cells as one single large organelle. Here, we show that a class I homeodomain leucine-zipper (C1HDZ) transcription factor controls the differentiation of oil body cells in two different ecotypes of the liverwort M. polymorpha, a model genetic system for early divergent land plants. In flowering plants, these transcription factors primarily modulate responses to abiotic stress, including drought. However, loss-of-function alleles of the single ortholog gene, MpC1HDZ, in M. polymorpha did not exhibit phenotypes associated with abiotic stress. Rather, Mpc1hdz mutant plants were more susceptible to herbivory, and total plant extracts of the mutant exhibited reduced antibacterial activity. Transcriptomic analysis of the mutant revealed a reduction in expression of genes related to secondary metabolism that was accompanied by a specific depletion of oil body terpenoid compounds. Through time-lapse imaging, we observed that MpC1HDZ expression maxima precede oil body formation, indicating that MpC1HDZ mediates differentiation of oil body cells. Our results indicate that M. polymorpha oil bodies, and MpC1HDZ, are critical for defense against herbivory, but not for abiotic stress tolerance. Thus, C1HDZ genes were co-opted to regulate separate responses to biotic and abiotic stressors in two distinct land plant lineages.

摘要

陆生植物谱系的起源需要适应新的生物和非生物胁迫。油体是苔藓植物的一个共衍特征,积累次生代谢物,但它们的功能和发育仍知之甚少。地钱属植物的油体在专门的细胞内发育为一个单一的大型细胞器。在这里,我们展示了一类 I 型同源结构域亮氨酸拉链 (C1HDZ) 转录因子控制着两种不同生态型地钱属植物油体细胞的分化,地钱属植物是早期分化的陆地植物的模式遗传系统。在开花植物中,这些转录因子主要调节对非生物胁迫的反应,包括干旱。然而,地钱属植物中单个同源基因 MpC1HDZ 的功能丧失等位基因并没有表现出与非生物胁迫相关的表型。相反,Mpc1hdz 突变体植物更容易受到草食性动物的侵害,并且突变体的总植物提取物表现出降低的抗菌活性。对突变体的转录组分析显示,与次生代谢相关的基因表达减少,同时油体萜类化合物也特异性耗尽。通过延时成像,我们观察到 MpC1HDZ 的表达最大值先于油体形成,表明 MpC1HDZ 介导油体细胞的分化。我们的结果表明,地钱属植物的油体和 MpC1HDZ 对于抵御草食性动物至关重要,但对于非生物胁迫耐受性则不重要。因此,C1HDZ 基因被共同选择来调节两个不同的陆地植物谱系中对生物和非生物胁迫的独立反应。

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