首页> 外文期刊>The Plant Cell >An ATP binding cassette transporter is required for cuticular wax deposition and desiccation tolerance in the moss Physcomitrella patens.
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An ATP binding cassette transporter is required for cuticular wax deposition and desiccation tolerance in the moss Physcomitrella patens.

机译:在苔藓小立碗藓(Physcomitrella patens)中,需要一个ATP结合盒转运蛋白来实现表皮蜡沉积和干燥耐受性。

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摘要

The plant cuticle is thought to be a critical evolutionary adaptation that allowed the first plants to colonize land, because of its key roles in regulating plant water status and providing protection from biotic and abiotic stresses. Much has been learned about cuticle composition and structure through genetic and biochemical studies of angiosperms, as well as underlying genetic pathways, but little is known about the cuticles of early diverging plant lineages. Here, we demonstrate that the moss Physcomitrella patens, an extant relative of the earliest terrestrial plants, has a cuticle that is analogous in both structure and chemical composition to those of angiosperms. To test whether the underlying cuticle biosynthetic pathways were also shared among distant plant lineages, we generated a genetic knockout of the moss ATP binding cassette subfamily G (ABCG) transporter Pp-ABCG7, a putative ortholog of Arabidopsis thaliana ABCG transporters involved in cuticle precursor trafficking. We show that this mutant is severely deficient in cuticular wax accumulation and has a reduced tolerance of desiccation stress compared with the wild type. This work provides evidence that the cuticle was an adaptive feature present in the first terrestrial plants and that the genes involved in their formation have been functionally conserved for over 450 million years.
机译:植物角质层被认为是关键的进化适应,它允许第一批植物在土地上定居,因为它在调节植物水分状况和提供保护免受生物和非生物胁迫方面起关键作用。通过被子植物的遗传和生化研究以及潜在的遗传途径,人们已经了解了很多关于角质层组成和结构的知识,但是对于早期分化的植物谱系的角质层知之甚少。在这里,我们证明了苔藓Physcomitrella patens(最早的陆生植物的现存亲戚)的表皮在结构和化学组成上都类似于被子植物。为了测试远处植物谱系之间是否也共享潜在的表皮生物合成途径,我们产生了苔藓ATP结合盒亚家族G(ABCG)转运蛋白Pp-ABCG7的基因敲除,这是拟南芥拟南芥ABCG转运蛋白的一个直系同源基因。 。我们表明,该突变体在表皮蜡积累中严重缺乏,并且与野生型相比具有降低的脱水胁迫耐受性。这项工作提供了证据,表明表皮是最早的陆生植物中存在的一种适应性特征,并且参与其形成的基因在功能上已保存了4.5亿多年。

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