土壤压实逆转了丛枝菌根真菌对土壤水力特性的影响。

IF 3.3 2区 生物学 Q2 MYCOLOGY
Mycorrhiza Pub Date : 2024-07-01 Epub Date: 2024-05-29 DOI:10.1007/s00572-024-01153-9
Püschel David, Rydlová Jana, Sudová Radka, Jansa Jan, Bitterlich Michael
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引用次数: 0

摘要

丛枝菌根真菌(AMF)通常能为寄主植物提供多种营养,它们在植物吸水方面的作用虽然仍有争议,但经常被认为是这种共生关系的标志之一。人们较少关注土壤中存在的 AMF 可能对水动力学产生的其他影响。AMF 可以影响土壤水力特性的证据才刚刚开始出现。在我们最近的一次矮化番茄植株实验中,我们偶然发现丛枝菌根真菌(Rhizophagus irregularis 'PH5')可以轻微但显著地降低基质(沙土-沸石-土壤混合物)的持水能力(WHC)。我们在随后的实验中对此进行了进一步研究,但发现效果恰恰相反,菌根基质比非菌根基质保水能力更强。由于两次实验使用了相同的基质,而且其他条件也基本相同,因此我们认为基质压实程度不同会导致结果截然不同,这很可能是由于花盆形状不同造成的。看来,在压实的基质中,AMF 可能对基质的 WHC 没有影响,甚至会降低。另一方面,在压实度较低的基质中,AMF菌丝交织在孔隙中,可能会增加水分在基质中的毛细运动,导致游离水排出后,孔隙中的水分略有增加。我们认为这一现象值得菌根学家关注,并值得进一步研究 AMF 在土壤水力特性中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Soil compaction reversed the effect of arbuscular mycorrhizal fungi on soil hydraulic properties.

Soil compaction reversed the effect of arbuscular mycorrhizal fungi on soil hydraulic properties.

Arbuscular mycorrhizal fungi (AMF) typically provide a wide range of nutritional benefits to their host plants, and their role in plant water uptake, although still controversial, is often cited as one of the hallmarks of this symbiosis. Less attention has been dedicated to other effects relating to water dynamics that the presence of AMF in soils may have. Evidence that AMF can affect soil hydraulic properties is only beginning to emerge. In one of our recent experiments with dwarf tomato plants, we serendipitously found that the arbuscular mycorrhizal fungus (Rhizophagus irregularis 'PH5') can slightly but significantly reduce water holding capacity (WHC) of the substrate (a sand-zeolite-soil mixture). This was further investigated in a subsequent experiment, but there we found exactly the opposite effect as mycorrhizal substrate retained more water than did the non-mycorrhizal substrate. Because the same substrate was used and other conditions were mostly comparable in the two experiments, we explain the contrasting results by different substrate compaction, most likely caused by different pot shapes. It seems that in compacted substrates, AMF may have no effect upon or even decrease the substrates' WHC. On the other hand, the AMF hyphae interweaving the pores of less compacted substrates may increase the capillary movement of water throughout such substrates and cause slightly more water to remain in the pores after the free water has drained. We believe that this phenomenon is worthy of mycorrhizologists' attention and merits further investigation as to the role of AMF in soil hydraulic properties.

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来源期刊
Mycorrhiza
Mycorrhiza 生物-真菌学
CiteScore
8.20
自引率
2.60%
发文量
40
审稿时长
6-12 weeks
期刊介绍: Mycorrhiza is an international journal devoted to research into mycorrhizas - the widest symbioses in nature, involving plants and a range of soil fungi world-wide. The scope of Mycorrhiza covers all aspects of research into mycorrhizas, including molecular biology of the plants and fungi, fungal systematics, development and structure of mycorrhizas, and effects on plant physiology, productivity, reproduction and disease resistance. The scope also includes interactions between mycorrhizal fungi and other soil organisms and effects of mycorrhizas on plant biodiversity and ecosystem structure. Mycorrhiza contains original papers, short notes and review articles, along with commentaries and news items. It forms a platform for new concepts and discussions, and is a basis for a truly international forum of mycorrhizologists from all over the world.
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