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首页> 外文期刊>Journal of Plant Physiology >Leaf size as a key determinant of contrasting growth patterns in closely related Limonium (Plumbaginaceae) species
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Leaf size as a key determinant of contrasting growth patterns in closely related Limonium (Plumbaginaceae) species

机译:叶片大小作为与密切相关的褐煤(脂峰岩)物种造影生长模式的关键决定因素

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摘要

This study aims to analyze the importance of leaf size on plant growth capacity among an array of closely related Limonium species, and its impact on the underlying determinants of growth reduction under extreme water deficit conditions. To do so, thirteen Balearic Limonium species with contrasting leaf size were grown under long-term well-watered (WW) and severe water-deficit (WD) conditions in a common garden experiment. Fundamental growth traits were measured, including relative growth rate (RGR), net assimilation rate (NAR), leaf area ratio (LAR), leaf mass area (LMA) and leaf mass ratio (LMR). WD promoted small changes in leaf size, and species with larger leaves had higher RGR than species with smaller leaves, irrespective of the water treatment. Most RGR variation across species and treatments was explained by NAR, with comparatively much lower importance of LAR. The factorization of LAR underlying components denoted the importance of LMA in explaining RGR, whereas the impact of LMR on RGR was negligible in Limonium. Further, species with larger leaves had higher water consumption but also higher water use efficiency, especially under WD. Therefore, contrary to general trends in species from dry environments, increased leaf size is linked to increased growth capacity and also increased water use efficiency across closely related Limonium species.
机译:本研究旨在分析叶片大小对植物生长能力的重要性,在一系列密切相关的褐煤物种中,其对极端水缺陷条件下的生长减少的潜在决定因素的影响。为此,在共同的园林实验中,在长期浇水(WW)和严重的水缺水(WD)条件下,十三个巴利阿里贴膜种类在具有对比的叶片尺寸下生长。测量基本生长特征,包括相对生长速率(RGR),净同化率(NAR),叶面积比(LAR),叶片质量区域(LMA)和叶质质量比(LMR)。 WD促进叶片尺寸的小变化,而叶片较大的物种比叶片的种类更高,无论水处理如何。大多数RGR在物种和治疗中的变化都是由NAR解释的,而LAR​​的重要性相对较低。 LAR底层组分的分解表示LMA在解释RGR时的重要性,而LMR对RGR的影响在褐藻中可以忽略不计。此外,叶片较大的物种具有较高的耗水量,但水使用效率较高,特别是在WD下。因此,与干燥环境中物种的一般趋势相反,叶片尺寸增加与增长能力增加,并且在密切相关的褐煤物种上增加了水利用效率。

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