首页> 外文期刊>Tree Physiology >Arbuscular mycorrhizal fungi and foliar phosphorus inorganic supply alleviate salt stress effects in physiological attributes, but only arbuscular mycorrhizal fungi increase biomass in woody species of a semiarid environment
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Arbuscular mycorrhizal fungi and foliar phosphorus inorganic supply alleviate salt stress effects in physiological attributes, but only arbuscular mycorrhizal fungi increase biomass in woody species of a semiarid environment

机译:丛枝菌根真菌和叶面磷无机供应缓解生理属性的盐胁迫影响,但只有丛枝菌根真菌增加了半干旱环境的木质物种生物量

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Salinity may limit plant growth especially in arid and semiarid regions. Arbuscular mycorrhizal fungi (AMF) and the supply of inorganic phosphorus (Pi) could alleviate the negative effects of such stress by improvement in stomatal conductance, photosynthesis and biomass. The aim of this study is to evaluate the ecophysiological performance of Cenostigma pyramidale (Tul.) E. Gagnon & G. P. Lewis (Fabaceae) in a greenhouse under salinity conditions in combination with the supply of AMF and leaf Pi. The experiment was conducted in a factorial design considering two levels of salinity (+ NaCl and -NaCl), two levels of AMF (+ AMF and -AMF) and two levels of leaf Pi supply (+ Pi and -Pi). The variables gas exchange, leaf primary metabolism, dry biomass and nutrients were measured. Plants with AMF under non-saline conditions presented a high photosynthesis and biomass. In saline conditions, AMF promoted lower decrease in photosynthesis, high shoot dry matter and low content of leaf and root Na+ and Cl-. Plants treated with leaf Pi increased biomass and photosynthetic pigments under both conditions and accumulated more Cl-in shoots under salinity conditions. When combined, AMF * Pi increased photosynthesis only in non-saline conditions. Plants under salinity conditions without AMF and Pi had higher decreases in gas exchange and high content of Cl-in roots. Therefore, C. pyramidale plants improved their metabolism under both growth conditions in the presence of AMF, Pi or a combination of both. However, the greatest increases in growth and tolerance to salinity occurred in the isolated presence of AMF.
机译:盐度可能限制植物生长,特别是在干旱和半干旱地区。丛枝菌根真菌(AMF)和无机磷(PI)的供应可以通过改善气孔导度,光合作用和生物质的改善来缓解这种压力的负面影响。本研究的目的是评估Cenostigma Pyramidale(TUL)E. Gagnon&amp的生态学表现; G.P.Lewis(Fabaceae)在盐度条件下的温室中与AMF和叶PI的供应相结合。考虑到两种水平的盐度(+ NaCl和-NACL),两种水平(+ amf和-amf)和两种水平的叶PI供应(+ pi和-pi)进行实验。测量变量煤气交换,叶初级代谢,干生物量和营养素。在非盐水条件下具有amf的植物呈现出高光合作用和生物质。在盐水条件下,AMF促进光合作用,高芽干物质和叶片和根Na +和Cl-的低含量下降。用叶PI处理的植物在两个条件下增加生物质和光合色素,并在盐度条件下累积更多的Cl-in芽。当合并时,AMF * PI仅在非盐水条件下增加光合作用。没有AMF和PI的盐度条件下的植物在气体交换和高含量的Cl-In Roots中具有更高的降低。因此,C.金字塔植物在AMF,PI或两者组合的情况下,在生长条件下改善了它们的新陈代谢。然而,在AMF的分离出存在下,增长和盐度的增长和耐受性最大。

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