干旱强度和持续时间对形态根性状的影响因性状类型和植物功能群而异:一项荟萃分析。

IF 2.3 Q2 ECOLOGY
Yu Sun, Christelle Am Robert, Madhav P Thakur
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引用次数: 0

摘要

干旱的严重程度和频率不断增加,对全球植物物种构成严重威胁。然而,我们对各种强度的干旱如何影响植物性状,尤其是根系性状缺乏普遍了解。在此,我们利用对干旱实验的荟萃分析(来自 76 篇论文的 997 个效应大小),研究了不同强度的干旱对一些关键根系形态特征的影响。我们的结果表明,当干旱达到严重或极端强度时,根长、根平均直径和根面积会下降,而严重干旱会增加根组织密度。与其他植物功能群相比,这些模式在树木中最为明显。此外,严重干旱持续时间长会降低禾本科植物的根长和豆科植物的根平均直径。严重干旱导致的树木根长和根直径的下降与干旱持续时间无关。我们的研究结果表明,根的形态特征对干旱强度的增加反应强烈,这进一步取决于干旱持续时间,并可能因植物功能群而异。我们的荟萃分析突出表明,未来的研究需要考虑干旱强度和干旱持续时间的交互作用,以便更好地了解植物对干旱的不同反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Drought intensity and duration effects on morphological root traits vary across trait type and plant functional groups: a meta-analysis.

Drought intensity and duration effects on morphological root traits vary across trait type and plant functional groups: a meta-analysis.

The increasing severity and frequency of drought pose serious threats to plant species worldwide. Yet, we lack a general understanding of how various intensities of droughts affect plant traits, in particular root traits. Here, using a meta-analysis of drought experiments (997 effect sizes from 76 papers), we investigate the effects of various intensities of droughts on some of the key morphological root traits. Our results show that root length, root mean diameter, and root area decline when drought is of severe or extreme intensity, whereas severe drought increases root tissue density. These patterns are most pronounced in trees compared to other plant functional groups. Moreover, the long duration of severe drought decreases root length in grasses and root mean diameter in legumes. The decline in root length and root diameter due to severe drought in trees was independent of drought duration. Our results suggest that morphological root traits respond strongly to increasing intensity of drought, which further depends on drought duration and may vary among plant functional groups. Our meta-analysis highlights the need for future studies to consider the interactive effects of drought intensity and drought duration for a better understanding of variable plant responses to drought.

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