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木本植物幼苗脯氨酸浓度随干旱胁迫持续时间而变化,并受种子特性的调节:一项荟萃分析。

Proline concentrations in seedlings of woody plants change with drought stress duration and are mediated by seed characteristics: a meta-analysis.

机构信息

Institute of Dendrology, Polish Academy of Sciences, Parkowa 5, 62-035, Kórnik, Poland.

Department of Zoology, Poznań University of Life Sciences, Wojska Polskiego 71C, 60-625, Poznań, Poland.

出版信息

Sci Rep. 2023 Sep 13;13(1):15157. doi: 10.1038/s41598-023-40694-5.

Abstract

Proline accumulation represents one of mechanisms used by plants to prevent the adverse consequences of water stress. The effects of increased proline levels in response to drought differ among species. Trees are exposed to the long-term effects of climate change. The reproductive success of species in a specific environment depends on the functional trait of tree seeds. We conducted a meta-analysis to evaluate the effects of drought stress on the proline concentrations in seedling leaf tissues of woody plant species and their relationships to drought duration, seed mass, seed category and coniferous/deciduous classification. Drought duration exhibited a nonlinear effect on proline accumulations. The drought effect on proline accumulations is greater for deciduous than for coniferous species and is higher for orthodox seed species than for recalcitrant. The seedlings of large-seeded species showed greater effect sizes than those of small-seeded species. Our results suggest that there is an optimum level at which proline accumulations under the influence of drought are the highest. A link between seed functional traits, as well as the coniferous/deciduous classification, and proline concentrations in tree seedlings during water stress were determined for the first time. Proline may help to identify high-quality seeds of trees used for reforestation.

摘要

脯氨酸积累是植物用来防止水分胁迫产生不利后果的机制之一。不同物种对干旱响应增加脯氨酸水平的影响不同。树木长期受到气候变化的影响。特定环境中物种的繁殖成功取决于树木种子的功能特性。我们进行了荟萃分析,以评估干旱胁迫对木本植物幼苗叶片组织中脯氨酸浓度的影响及其与干旱持续时间、种子质量、种子类别和针叶树/落叶树分类的关系。干旱持续时间对脯氨酸积累有非线性影响。落叶树种比针叶树种受到干旱的影响更大,而正种比顽拗种受到的影响更大。大种子物种的幼苗表现出比小种子物种更大的效应大小。我们的结果表明,在干旱影响下,脯氨酸积累存在一个最佳水平。首次确定了种子功能特性以及针叶树/落叶树分类与树木幼苗在水分胁迫下脯氨酸浓度之间的联系。脯氨酸可能有助于识别用于重新造林的树木的优质种子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba55/10500006/350ce67e70b3/41598_2023_40694_Fig1_HTML.jpg

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