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Temporal and Spatial Dynamics of Dark Septate Endophytes in the Roots of Lycium ruthenicum in the Desert Region of Northwest China

机译:西北沙漠地区枸杞罗芬皮根系的临时和空间动力学

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摘要

With the intensification of desertification in northwest China, drought has become a serious environmental problem restricting plant growth and ecological restoration. Recently, dark septate endophytes (DSEs) have attracted more attention because of their ability to improve plants’ resistance to drought. Here, we investigated DSE colonization and species diversity in roots of Lycium ruthenicum collected from Anxi and Minqin, in northwest China, during July, September, and December 2019. This study aimed to evaluate the influence of seasonality and sampling sites on DSEs. In different seasons, DSE colonization varied with the phenology of L. ruthenicum. At different sites, DSE colonization significantly differed. Four isolates were reported in desert ecosystems for the first time. The results showed microsclerotial colonization was directly affected by changing seasons, while hyphal colonization and species diversity were directly affected by sampling sites. The soil organic carbon, pH, alkaline phosphatase, and alkali-hydrolyzable nitrogen were the main predictors of DSE colonization and species diversity. We conclude that DSE colonization and diversity showed significant spatial–temporal heterogeneity and were closely related to soil factors. This research provides a basis for the further understanding of the ecological functions of DSEs and their application potential for vegetative restoration and agricultural cultivation in drylands.
机译:随着中国西北荒漠化的加剧,干旱已成为制约植物生长和生态修复一个严重的环境问题。近日,暗隔内生真菌(的DSE)已经吸引了,因为它们能够提高植物的抗旱性的能力更多的关注。在这里,我们调查了DSE殖民化和物种多样性安溪和收集民勤黑果枸杞的根,在中国西北,七月,九月和十二月2019年本研究旨在评估的季节性上的DSE的影响,采样点中。在不同的季节,DSE定植L. ruthenicum的物候变化。在不同的地点,DSE定植显著不同。四株共报告了荒漠生态系统的第一次。显示microsclerotial定植的结果是直接受季节变化,而菌丝定植和物种多样性受到直接影响的采样点。土壤有机碳,pH值,碱性磷酸酶,和碱解氮分别为DSE定植和物种多样性的主要预测因子。我们的结论是DSE殖民化和多样性呈显著时空异质性密切相关土壤因子。这项研究提供的的DSE的生态功能和植被恢复和农业种植旱地他们的应用潜力的进一步理解的基础。

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