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    菌根真菌复合接种对核桃幼苗生长和光合特性的影响

    Effects of combined inoculation of two mycorrhizal fungi on the growth and photosynthetic characteristics of walnut seedlings

    • 摘要:
      目的 探究非胁迫环境下不同菌根真菌对核桃幼苗生长和光合特性的影响,阐明复合接种的作用是否优于单一接种,以期为核桃的菌根化培育技术提供理论依据。
      方法 通过温室盆栽实验,以‘盐源早’核桃实生苗为材料,设置不接种(CK)、摩西斗管囊霉(F)、印度梨形孢(P)和两菌复合(FP)4个处理,测定不同处理下核桃叶绿素含量、气体交换参数、荧光参数、气孔参数、生物量等指标,采用单因素与双因素方差分析、相关性热图、主成分分析,从生长和光合特性两个维度来综合评估菌根真菌复合接种对核桃幼苗的影响。
      结果 (1)摩西斗管囊霉和印度梨形孢的单一及复合接种均可与核桃幼苗形成共生关系,显著提高核桃幼苗的光和性能和促进其生长。(2)复合接种处理的叶绿素a含量、总叶绿素含量、净光合速率、OJIP-test参数、叶片比活性参数和气孔长宽比均显著高于单一接菌。(3)单一接种摩西斗管囊霉处理下的核桃幼苗气孔密度最大,气孔导度和蒸腾速率最高;印度梨形孢显著提升了核桃幼苗叶绿素b含量、PSII有效光化学量子产量、气孔长度和气孔宽度。(4)主成分分析和双因素方差分析表明接种菌根真菌对核桃幼苗的光合能力的促进作用,复合接种在核桃幼苗光合生理指标中产生了协同作用。
      结论 在形成菌根真菌共生体后,核桃幼苗的叶绿素合成、净光合速率、PSII光能转化效率等各项光合生理参数指标显著提高,气孔特征发生显著改变,最终使接菌处理核桃幼苗生物量显著提升。综合生长、光合生理和气孔特征指标可知,复合接种处理在本实验条件下促成效果优于单一接种处理,复合接种对核桃幼苗生长产生了协同效应。因此,复合接种是促进核桃幼苗生长的更优接种策略,可为核桃菌根化育苗提供理论依据。

       

      Abstract:
      Objective This study investigated the effects of different mycorrhizal fungi on the growth and photosynthetic characteristics of walnut (Juglans regia) seedlings under non-stress conditions, and clarified whether combined inoculation outperforms single inoculation, with the aim of providing a theoretical basis for mycorrhizal cultivation techniques in walnut production.
      Method Through a greenhouse pot experiment, using ‘Yanyuanzao’ walnut seedlings as the test material, four treatments were established: non-inoculated control (CK), Funneliformis mosseae (F), Piriformospora indica (P), and combined inoculation of both fungi (FP). Chlorophyll content, gas exchange parameters, chlorophyll fluorescence parameters, stomatal parameters, and biomass of walnut were measured.Then comprehensively evaluated the effects of composite mycorrhizal fungal inoculation on walnut seedlings from the dimensions of growth and photosynthetic characteristics using one-way and two-way analysis of variance, correlation heatmaps, and principal component analysis.
      Result (1) Single and combined inoculations with Funneliformis mosseae and Piriformospora indica both established symbiotic associations with walnut seedlings, significantly enhancing their photosynthetic performance and promoting their growth. (2) The combined inoculation treatment exhibited significantly higher values than the single-inoculation treatments in chlorophyll a content, total chlorophyll content, net photosynthetic rate, OJIP-test parameters, leaf specific activity parameters, and stomatal length-to-width ratio parameters. (3) Walnut seedlings inoculated with Funneliformis mosseae alone showed the highest stomatal density, stomatal conductance, and transpiration rate; Piriformospora indica alone significantly increased chlorophyll b content, the effective photochemical quantum yield of PSII (Fv/Fm), stomatal length, and stomatal width. (4) Principal component analysis and two-way analysis of variance indicated that mycorrhizal fungal inoculation promoted the photosynthetic capacity of walnut seedlings, and the combined inoculation produced synergistic effects on the photosynthetic physiological indices of walnut seedlings.
      Conclusion After the formation of mycorrhizal symbiosis, various photosynthetic physiological parameters of walnut seedlings, including chlorophyll synthesis, net photosynthetic rate, and PSII light energy conversion efficiency, were significantly improved, and stomatal characteristics were markedly altered, ultimately leading to a significant increase in biomass in the inoculated treatments. A comprehensive evaluation of growth, photosynthetic physiology, and stomatal traits indicated that the combined inoculation treatment outperformed single inoculation under the present experimental conditions and exerted a synergistic effect on walnut seedling growth. Therefore, combined inoculation represents a superior inoculation strategy for promoting walnut seedling growth and can provide a theoretical basis for mycorrhizal seedling cultivation of walnut.

       

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