Suppr超能文献

越老越好:老化提高生物炭-堆肥混合物的效率,以减轻植物和土壤的干旱胁迫。

The older, the better: Ageing improves the efficiency of biochar-compost mixture to alleviate drought stress in plant and soil.

机构信息

National Institute for Agricultural Research, Ecosys Soil, UMR INRAE-AgroParisTech, 78820 Thiverval-Grignon, France.

Institute of Ecology and Environmental Sciences, UMR 7618, CNRS-UPMC-UPEC-INRAE-IRD, Sorbonne University, 75005 Paris, France.

出版信息

Sci Total Environ. 2023 Jan 15;856(Pt 1):158920. doi: 10.1016/j.scitotenv.2022.158920. Epub 2022 Sep 29.

Abstract

Due to increased drought frequency following climate change, practices improving water use efficiency and reducing water-stress are needed. The efficiency of organic amendments to improve plant growth conditions under drought is poorly known. Our aim was to investigate if organic amendments can attenuate plant water-stress due to their effect on the plant-soil system and if this effect may increase upon ageing. To this end we determined plant and soil responses to water shortage and organic amendments added to soil. We compared fresh biochar/compost mixtures to similar amendments after ageing in soil. Results indicated that amendment application induced few plant physiological responses under water-stress. The reduction of leaf gas exchange under watershortage was alleviated when plants were grown with biochar and compost amendments: stomatal conductance was least reduced with aged mixture aged mixture (-79 % compared to -87 % in control), similarly to transpiration (-69 % in control and not affected with aged mixture). Belowground biomass production (0.25 times) and nodules formation (6.5 times) were enhanced under water-stress by amendment addition. This effect was improved when grown on soil containing the aged as compared to fresh amendments. Plants grown with aged mixtures also showed reduced leaf proline concentrations (two to five times) compared to fresh mixtures indicating stress reduction. Soil enzyme activities were less affected by water-stress in soil with aged amendments. We conclude that the application of biochar-compost mixtures may be a solution to reduce the effect of water-stress to plants. Our findings revealed that this beneficial effect is expected to increase with aged mixtures, leading to a better water-stress resistance over time. However, while being beneficial for plant growth under water-stress, the use of amendments may not be suited to increase water use efficiency.

摘要

由于气候变化导致干旱频率增加,需要采取提高水利用效率和减少水胁迫的措施。有机改良剂改善干旱条件下植物生长条件的效率知之甚少。我们的目的是研究有机改良剂是否可以通过其对植物-土壤系统的影响来减轻植物的水分胁迫,如果这种影响随着老化而增加。为此,我们确定了植物和土壤对缺水和添加到土壤中的有机改良剂的反应。我们将新鲜生物炭/堆肥混合物与土壤中老化后的类似改良剂进行了比较。结果表明,在水分胁迫下,改良剂的应用很少引起植物的生理反应。当用生物炭和堆肥改良剂种植植物时,叶片气体交换减少的情况得到缓解:在水分胁迫下,气孔导度降低最少(与对照相比,老化混合物减少了 79%,而对照减少了 87%),蒸腾作用也相似(对照减少了 69%,而老化混合物没有受到影响)。与对照相比,添加改良剂可促进水分胁迫下地下生物量的产生(减少 25%)和根瘤的形成(增加 6.5 倍)。与新鲜混合物相比,在含有老化混合物的土壤中种植时,这种效果得到了改善。与新鲜混合物相比,用老化混合物种植的植物叶片脯氨酸浓度也降低(减少 2 至 5 倍),表明应激减轻。与对照相比,老化土壤中添加改良剂对土壤酶活性的影响较小。我们得出的结论是,生物炭-堆肥混合物的应用可能是减轻植物水分胁迫的一种解决方案。我们的研究结果表明,这种有益的效果预计会随着老化混合物的增加而增加,从而随着时间的推移提高水分胁迫的抵抗力。然而,虽然改良剂的使用对植物在水分胁迫下的生长有益,但它可能不适合提高水利用效率。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验