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首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Angiosperm leaf vein evolution was physiologically and environmentally transformative
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Angiosperm leaf vein evolution was physiologically and environmentally transformative

机译:被子植物叶脉的进化具有生理和环境上的转变

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The veins that irrigate leaves during photosynthesis are demonstrated to be strikingly more abundant in flowering plants than in any other vascular plant lineage. Angiosperm vein densities average 8 mm of vein per mm~2 of leaf area and can reach 25 mm mm~(-2), whereas such high densities are absent from all other plants, living or extinct. Leaves of non-angiosperms have consistently averaged close to 2 mm mm~(-2) throughout 380 million years of evolution despite a complex history that has involved four or more independent origins of laminate leaves with many veins and dramatic changes in climate and atmospheric composition. We further demonstrate that the high leaf vein densities unique to the angiosperms enable unparalleled transpiration rates, extending previous work indicating a strong correlation between vein density and assimilation rates. Because vein density is directly measurable in fossils, these correlations provide new access to the physiology of extinct plants and how they may have impacted their environments. First, the high assimilation rates currently confined to the angiosperms among living plants are likely to have been unique throughout evolutionary history. Second, the transpiration-driven recycling of water that is important for bolstering precipitation in modern tropical rainforests might have been significantly less in a world before the angiosperms.
机译:事实证明,在光合作用过程中灌溉叶片的静脉在开花植物中比在任何其他维管植物谱系中丰富得多。被子植物的静脉密度平均为每mm〜2叶面积有8 mm的静脉,可达到25 mm mm〜(-2),而所有其他活的或绝种的植物都没有如此高的密度。尽管经历了复杂的历史,包括四个或更多独立的层压叶片起源,许多脉和气候和大气成分的剧烈变化,但整个3.8亿年的进化过程中,非血管类植物的叶片始终平均接近2 mm mm〜(-2)。 。我们进一步证明,被子植物特有的高叶静脉密度可以实现无与伦比的蒸腾速率,扩展了先前的工作,表明了静脉密度和同化率之间的强相关性。由于在化石中可以直接测量静脉密度,因此这些相关性为灭绝植物的生理学及其对环境的影响提供了新的途径。首先,在整个进化历史中,目前仅限于活植物中被子植物的高同化率可能是独特的。其次,蒸腾驱动的水循环对于增强现代热带雨林的降水至关重要,在被子植物之前的世界中可能要少得多。

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