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重新审视种子内生菌在构建植物微生物环境中的生态效应:来自中药三七的启示。

Reconsidering the ecological effect of seed endophytes in building plant microbial environments: lessons from a Chinese medicinal plant Panax notoginseng.

作者信息

Wen Yun, Yang Wei-Xi, Li Yi-Qian, Lu Chun-Xi, Hu Hong-Yan, Guo Li-Rong, Huang Shuang-Ye, Pan Xiao-Xia, Zhu Shu-Sheng, Yang Ming-Zhi

机构信息

School of Ecology and Environmental Sciences, Yunnan University, Kunming, 650504, China.

Yunnan Key alLaboratory for Plateau Mountain Ecology and Restoration of Degraded Environments, Yunnan University, Kunming, 650504, China.

出版信息

Environ Microbiome. 2025 Jul 14;20(1):87. doi: 10.1186/s40793-025-00753-y.

Abstract

BACKGROUND

Seed endophytes (SEs) are of particular interest in the fields of plant science, microbiology and agronomy due to their unique spatial and functional relationship with the host plant. SEs formed originally in mother plants, represent the majority of vertically transmitted endophytes (VTEs) in plants, and the inheritance of SEs by plants is a strategy to cope with environmental challenges. However, despite the growing interest in seed endophytes (SEs), our understanding of the host effects of SEs and their transmission remains limited. Here, seeds of a Chinese medicinal plant, pseudoginseng (Pg), were germinated and cultivated separately in autoclaved and natural guest soils under aseptic conditions, and the vertically transferred SEs (sVTEs) in the progeny plant endophytic and rhizospheric soil microbiomes were examined using an amplicon-based approach.

RESULTS

We first categorized the detected Pg SE amplicon sequence variants (ASVs) into sVTEs and other SEs (nVTEs) based on the ASV overlap analyses, and an apparent taxa bias in sVTE was observed for both bacteria and fungi. Bacterial sVTEs are characteristically motile, biofilm forming and stress tolerant. The presence of soil-dwelling microbes did not prevent progeny plants from inheriting levels of sVTEs from seeds, but involved in shaping the composition of the acquired sVTEs. Most importantly, an aseptic cultivation experiment showed that the SEs alone were able to establish a high diversity of plant-associated microbiota (PAM) in progeny plants via vertical transmission; and sVTEs were acted as a core microbiota that dominated the assembly of the progeny PAM (with the relative abundances ranged from 21 to 79%) in both the natural and sterilized soil cultivation experiments. However, the impact of sVTEs on PAM assembly may be more significant than is currently recognized, given that proportions of SEs and sVTEs in plant seeds remain undetected due to technological limitations and small sample sizes.

CONCLUSIONS

The work has advanced our knowledge of the nature of sVTEs and the ecological effects of SEs on host plants.

摘要

背景

种子内生菌(SEs)由于其与宿主植物独特的空间和功能关系,在植物科学、微生物学和农学领域备受关注。SEs最初在母本植物中形成,是植物中垂直传播内生菌(VTEs)的主要组成部分,植物对SEs的遗传是应对环境挑战的一种策略。然而,尽管对种子内生菌(SEs)的兴趣日益浓厚,但我们对SEs的宿主效应及其传播的理解仍然有限。在此,将一种中药材三七(Pg)的种子在无菌条件下分别于高压灭菌土和自然土壤中萌发和培养,并采用基于扩增子的方法检测子代植物内生菌和根际土壤微生物群中垂直传递的SEs(sVTEs)。

结果

基于ASV重叠分析,我们首先将检测到的Pg SE扩增子序列变体(ASVs)分为sVTEs和其他SEs(nVTEs),并且在细菌和真菌的sVTE中均观察到明显的分类群偏差。细菌sVTEs的特征是具有运动性、形成生物膜和耐受压力。土壤微生物的存在并未阻止子代植物从种子中继承sVTEs的水平,但参与了所获得的sVTEs组成的塑造。最重要的是,无菌培养实验表明,单独的SEs能够通过垂直传播在子代植物中建立高度多样的植物相关微生物群(PAM);并且在自然和灭菌土壤培养实验中,sVTEs均作为核心微生物群主导子代PAM的组装(相对丰度范围为21%至79%)。然而,鉴于由于技术限制和样本量小,植物种子中SEs和sVTEs的比例仍未被检测到,sVTEs对PAM组装的影响可能比目前所认识到的更为显著。

结论

这项工作增进了我们对sVTEs的本质以及SEs对宿主植物生态效应的认识。

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