基质酸碱度介导椴树幼苗接种外生菌根后的生长促进和抗水胁迫能力。

IF 5.4 3区 材料科学 Q2 CHEMISTRY, PHYSICAL ACS Applied Energy Materials Pub Date : 2024-10-25 DOI:10.1186/s12870-024-05614-3
Cindy Serafim, Miguel A Ramos, Tugce Yilmaz, Nadine R Sousa, Kang Yu, Maarten Van Geel, Tobias Ceulemans, Marc Saudreau, Ben Somers, Thierry Améglio, Olivier Honnay, Paula M L Castro
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引用次数: 0

摘要

外生菌根(EcM)真菌的定殖对于植物在不同压力下的健康和表现至关重要,例如城市环境中的树木所面临的压力。由于城市环境中可能缺乏生态真菌,我们在此评估了在椴树移栽前的苗圃环境中接种生态真菌 Lactarius deliciosus 和 Paxillus involutus 的益处。P. involutus 对 T. tomentosa幼苗有更明显的积极影响,在酸性和碱性基质中都有良好的表现。在酸性基质中,与未接种的对照组相比,该真菌可使植株高度增加 0.91 倍,菌根率增加 3.23 倍,膨大率增加 5.03 倍,次生根的形成增加 0.46 倍。该菌种还提高了叶片的含磷量,显示出对养分吸收的促进作用。在碱性基质中,P. involutus 的根干重增加了 3.92 倍,菌根参数也增加了 3.92 倍。与此相反,L. deliciosus 只对改善菌根和根的扩展率和磷含量有积极作用,这种作用只在碱性基质中可见。当受到水胁迫时,在酸性基质中,两种真菌(美味草真菌和内卷真菌)的脯氨酸含量都会增加,而在碱性基质中,内卷真菌的脯氨酸含量会增加。我们的结论是,真菌接种可提高椴树幼苗的活力和抗逆性,选择合适的生态管理真菌并考虑移植地点的土壤酸碱度至关重要。接种方法是一种宝贵的工具,可培育出健壮的椴树幼苗,这些幼苗在移植到充满挑战的城市环境中时可能会有更好的表现。
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Substrate pH mediates growth promotion and resilience to water stress of Tilia tomentosa seedlings after Ectomycorrhizal inoculation.

Colonization by Ectomycorrhizal (EcM) fungi is key for the health and performance of plants under different stress scenarios, such as those faced by trees in urban environments. Because urban environments can be lacking EcM fungi, we here assessed the benefits of inoculating Tilia tomentosa seedlings in a pre-transplantation nursery context with the EcM fungi Lactarius deliciosus and Paxillus involutus, using substrates of different pH and facing water-stress. P. involutus had a more evident positive effect in T. tomentosa seedlings and had a good performance in both acidic and alkaline substrate. In acidic substrate the fungus increased the plant height by 0.91-fold, increased the mycorrhization rate by 3.23-fold, expansion rate by 5.03-fold and formation of secondary roots by 0.46-fold, compared to the non-inoculated control. This species also improved the phosphorus content of leaves, which revealed a promotion of nutrient uptake. In alkaline substrate P. involutus increased root dry weight by 3.92-fold and the mycorrhization parameters. In contrast, L. deliciosus only had a positive effect in the improvement of mycorrhization and expansion rates and phosphorus content in the root, effects visible only in alkaline substrate. When exposed to water-stress the increase of proline content was visible in acidic substrate for both fungi, L. deliciosus and P. involutus, and in alkaline substrate for the fungus P. involutus, a response indicative of the enhancement of defenses in stressing scenarios such as water scarcity. We conclude that fungal inoculation improves the vigour and resilience of Tilia seedlings and that it is of utmost importance to select a suitable EcM fungus and to consider the soil pH of the transplanting site. The inoculation approach can be a valuable tool to produce robust seedlings which may have a better performance when transplanted to the challenging urban environment.

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来源期刊
ACS Applied Energy Materials
ACS Applied Energy Materials Materials Science-Materials Chemistry
CiteScore
10.30
自引率
6.20%
发文量
1368
期刊介绍: ACS Applied Energy Materials is an interdisciplinary journal publishing original research covering all aspects of materials, engineering, chemistry, physics and biology relevant to energy conversion and storage. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important energy applications.
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