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外生菌根真菌(杂色栓菌)对干旱胁迫下油松生长、水力功能和非结构性碳水化合物的影响。

Effects of ectomycorrhizal fungi (Suillus variegatus) on the growth, hydraulic function, and non-structural carbohydrates of Pinus tabulaeformis under drought stress.

机构信息

College of Forestry, Northwest A&F University, Yangling, 712100, People's Republic of China.

State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, Lingnan Guangdong Laboratory of Modern Agriculture, Guangdong Key Laboratory for Innovative Development and Utilization of Forest Plant Germplasm, College of Forestry and Landscape Architecture, South China Agricultural University, Guangzhou, 510642, People's Republic of China.

出版信息

BMC Plant Biol. 2021 Apr 10;21(1):171. doi: 10.1186/s12870-021-02945-3.

Abstract

BACKGROUND

A better understanding of non-structural carbohydrate (NSC) dynamics in trees under drought stress is critical to elucidate the mechanisms underlying forest decline and tree mortality from extended periods of drought. This study aimed to assess the contribution of ectomycorrhizal (ECM) fungus (Suillus variegatus) to hydraulic function and NSC in roots, stems, and leaves of Pinus tabulaeformis subjected to different water deficit intensity. We performed a continuous controlled drought pot experiment from July 10 to September 10, 2019 using P. tabulaeformis seedlings under 80, 40, and 20% of the field moisture capacity that represented the absence of non-drought, moderate drought, and severe drought stress, respectively.

RESULTS

Results indicated that S. variegatus decreased the mortality rate and increased height, root biomass, and leaf biomass of P. tabulaeformis seedlings under moderate and severe drought stress. Meanwhile, the photosynthetic rates, stomatal conductance, and transpiration rates of P. tabulaeformis were significantly increased after S. variegatus inoculation. Moreover, the inoculation of S. variegatus also significantly increased the NSC concentrations of all seedling tissues, enhanced the soluble sugars content, and increased the ratios of soluble sugars to starch on all tissues under severe drought. Overall, the inoculation of S. variegatus has great potential for improving the hydraulic function, increasing the NSC storage, and improving the growth of P. tabulaeformis under severe drought.

CONCLUSIONS

Therefore, the S. variegatus can be used as a potential application strain for ecological restoration on arid regions of the Loess Plateau, especially in the P. tabulaeformis woodlands.

摘要

背景

更好地了解干旱胁迫下树木中非结构性碳水化合物(NSC)的动态变化对于阐明森林衰退和树木因长时间干旱而死亡的机制至关重要。本研究旨在评估外生菌根(ECM)真菌(Suillus variegatus)对受不同水分亏缺强度影响的侧柏(Pinus tabulaeformis)根、茎和叶水力功能和 NSC 的贡献。我们于 2019 年 7 月 10 日至 9 月 10 日进行了一项连续控制干旱盆栽实验,使用的是侧柏幼苗,土壤水分容量分别为 80%、40%和 20%,分别代表无干旱、中度干旱和重度干旱胁迫。

结果

结果表明,在中度和重度干旱胁迫下,S. variegatus 降低了侧柏幼苗的死亡率,增加了其株高、根生物量和叶生物量。同时,接种 S. variegatus 后,侧柏的光合速率、气孔导度和蒸腾速率显著提高。此外,接种 S. variegatus 还显著提高了所有幼苗组织的 NSC 浓度,增加了可溶性糖含量,并提高了重度干旱下所有组织中可溶性糖与淀粉的比例。总体而言,接种 S. variegatus 对提高侧柏在重度干旱下的水力功能、增加 NSC 储存和促进生长具有很大潜力。

结论

因此,S. variegatus 可以作为黄土高原干旱地区生态恢复的潜在应用菌株,特别是在侧柏林地。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5892/8035767/3f36e6d64a77/12870_2021_2945_Fig1_HTML.jpg

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