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An ATP-binding cassette subfamily G full transporter is essential for the retention of leaf water in both wild barley and rice

机译:ATP结合盒亚家族G完全转运蛋白对于在野生大麦和水稻中保留叶水至关重要

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摘要

Land plants have developed a cuticle preventing uncontrolled water loss. Here we report that an ATP-binding cassette (ABC) subfamily G (ABCG) full transporter is required for leaf water conservation in both wild barley and rice. A spontaneous mutation, eibi1.b, in wild barley has a low capacity to retain leaf water, a phenotype associated with reduced cutin deposition and a thin cuticle. Map-based cloning revealed that Eibi1 encodes an HvABCG31 full transporter. The gene was highly expressed in the elongation zone of a growing leaf (the site of cutin synthesis), and its gene product also was localized in developing, but not in mature tissue. A de novo wild barley mutant named “eibi1.c,” along with two transposon insertion lines of rice mutated in the ortholog of HvABCG31 also were unable to restrict water loss from detached leaves. HvABCG31 is hypothesized to function as a transporter involved in cutin formation. Homologs of HvABCG31 were found in green algae, moss, and lycopods, indicating that this full transporter is highly conserved in the evolution of land plants.
机译:陆地植物已经开发出一种表皮,可以防止失水。在这里我们报告说,野生大麦和水稻均需要ATP结合盒(ABC)亚家族G(ABCG)完全转运体来保持叶片水分。野生大麦中的自发突变eibi1.b保持叶片水分的能力低,具有与角质沉积减少和表皮薄有关的表型。基于图的克隆显示Eibi1编码HvABCG31完整转运蛋白。该基因在生长叶片的延伸区(角质合成部位)高表达,其基因产物也位于发育中,而不位于成熟组织中。一个从头开始的名为“ eibi1.c”的野生大麦突变体,以及在HvABCG31直系同源物中突变的两个水稻转座子插入系,也无法限制叶片脱落的水分流失。假设HvABCG31起角质形成的转运蛋白的作用。 HvABCG31的同系物在绿藻,苔藓和番茄科动物中发现,表明这种完整的转运蛋白在陆地植物的进化中高度保守。

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