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Effects of two Glomus species on the growth and physiological performance of Sophora davidii seedlings under water stress

机译:水分胁迫下两种Glomus物种对槐幼苗生长和生理的影响。

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摘要

Sophora davidii is an important leguminous scrub that is widely used for revegetation in the semiarid Loess Plateau and other arid valley areas of China, where it usually suffers drought stress. This study investigated the effects of arbuscular mycorrhizal (AM) fungi (Glomus mosseae and Glomus constrictum) and water stress on the growth and physiological performance of S. davidii seedlings under greenhouse pot conditions. Two soil water availability treatments (well-watered (WW) -0.10 MPa; water-stressed (WS) -0.86 MPa) were applied for 61 days. At the end of this experiment, G. mosseae and G. constrictum had colonized the roots of S. davidii seedlings. Water stress inhibited AM colonization, plant growth, chlorophyll concentration, gas exchange and chlorophyll fluorescence of S. davidii seedlings. Mycorrhizal seedlings had greater shoot dry weight, root dry weight, plant height, root length, instantaneous water use efficiency (iWUE), net photosynthetic rate (Pn), stomatal conductance (g(s)), maximal photochemical efficiency of PSII photochemistry (Fv/Fm), lower intercellular CO2 concentration and photochemical quenching values (qP), when compared with non-mycorrhizal seedlings under both WW and WS conditions. Furthermore, G. constrictum was found to be more efficient at improving the shoot and root mass, plant height, iWUE, Pn, g(s), qP, and I broken vertical bar PSII of S. davidii seedlings, when compared with G. mosseae under both WW and WS conditions. Our results demonstrate that AM Glomus symbiosis enhanced S. davidii seedling resistance by improving its growth and physiological performance under water stress conditions. This suggests that Glomus inoculation is a potential tool for enhancing outplanting performance of S. davidii in semiarid areas of China.
机译:槐槐是一种重要的豆科灌木,广泛用于半干旱黄土高原和中国其他干旱谷地的植被恢复,那里通常遭受干旱胁迫。这项研究调查了温室盆栽条件下丛枝菌根真菌(Glomus mosseae和Glomus constrictum)和水分胁迫对David S. davidii幼苗生长和生理性能的影响。进行了61天的两次土壤水可利用性处理(浇水量(WW)-0.10 MPa;水分胁迫(WS)-0.86 MPa)。在该实验结束时,mosseae和G. constrictum已经定殖了大卫氏链球菌幼苗的根。水分胁迫抑制了金黄色葡萄球菌的AM定植,植物生长,叶绿素浓度,气体交换和叶绿素荧光。菌根幼苗的茎干重,根干重,株高,根长,瞬时水分利用效率(iWUE),净光合速率(Pn),气孔导度(g(s)),PSII光化学的最大光化学效率(Fv)更高。 / Fm),与WW和WS条件下的非菌根苗相比,细胞间CO2浓度和光化学猝灭值(qP)更低。此外,与G相比,发现G.constrictum在改善茎和根质量,株高,iWUE,Pn,g(s),qP和I断裂垂直杆PSII方面更有效。 WW和WS条件下的mosseae。我们的结果表明,AM Glomus共生通过改善水分胁迫条件下的生长和生理性能而增强了大卫氏链球菌的幼苗抗性。这表明,在中国半干旱地区,接种Glomus疫苗是增强大卫氏链球菌移栽性能的潜在工具。

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