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Combined Inoculation with Multiple Arbuscular Mycorrhizal Fungi Improves Growth Nutrient Uptake and Photosynthesis in Cucumber Seedlings

机译:与多种丛枝菌根真菌联合接种可改善黄瓜幼苗的生长养分吸收和光合作用

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摘要

Mycorrhizal inoculation stimulates growth, photosynthesis and nutrient uptake in a wide range of host plants. However, the ultimate effects of arbuscular mycorrhyzal (AM) symbiosis vary with the plants and fungal species involved in the association. Therefore, identification of the appropriate combinations of AM fungi (AMF) that interact synergistically to improve their benefits is of high significance. Here, three AM fungal compositions namely VT (Claroideoglomus sp., Funneliformis sp., Diversispora sp., Glomus sp., and Rhizophagus sp.) and BF (Glomus intraradices, G. microageregatum BEG and G. Claroideum BEG 210), and Funneliformis mosseae (Fm) were investigated with respect to the growth, gas exchange parameters, enzymes activities in Calvin cycles and related gene expression in cucumber seedlings. The results showed that VT, BF and Fm could successfully colonize cucumber root to a different degree with the colonization rates 82.38, 74.65, and 70.32% at 46 days post inoculation, respectively. The plant height, stem diameter, dry weight, root to shoot ratio of cucumber seedlings inoculated with AMF increased significantly compared with the non-inoculated control. Moreover, AMF colonization greatly increased the root activity, chlorophyll content, net photosynthetic rate, light saturated rate of the CO2 assimilation (Asat), maximum carboxylation rate (Vcmax) and maximum ribulose-1,5-bis-phosphate (RuBP) regeneration rate (Jmax), which were increased by 52.81, 30.75, 58.76, 47.00, 69.15, and 65.53% when inoculated with VT, respectively. The activities of some key enzymes such RuBP carboxylase/oxygenase (RuBisCO), D-fructose-1,6-bisphosphatase (FBPase), D-fructose-6-phosphatase (F6P) and ribulose-5-phosphate kinase (Ru5PK), and related gene expression involved in the Calvin cycle including RCA, FBPase, FBPA, SBPase, rbcS and rbcL were upregulated by AMF colonization. AMF inoculation also improved macro- and micro nutrient contents such as N, P, K, S, Ca, Cu, Fe, Mn, Mg, and Zn in roots. Further analysis revealed that inoculation with VT had relatively better effect on growth of cucumber seedling followed by BF and Fm, indicating that AMF composition consisting of distant AMF species may have a better effect than a single or closely related AMF spp. This study advances the understanding of plant responses to different AM fungi toward development of strategies on AMF-promoted vegetable production.
机译:菌根接种可刺激多种宿主植物的生长,光合作用和养分吸收。但是,丛枝菌根共生(AM)共生的最终效果因参与该关联的植物和真菌种类而异。因此,鉴定协同相互作用以改善其益处的AM真菌(AMF)的适当组合具有高度意义。在此,三种AM真菌组合物分别是VT(Claroideoglomus sp。,Funneliformis sp。,Diversispora sp。,Glomus sp。和Rhizophagus sp。)和BF(Glomus intraradices,G。microageregatum BEG和G. Claroideum BEG 210)和漏斗形菌。研究了mosseae(Fm)的生长,气体交换参数,加尔文循环中的酶活性以及黄瓜幼苗中的相关基因表达。结果表明,VT,BF和Fm可以成功地不同程度地定植黄瓜根,接种后46天的定植率分别为82.38%,74.65%和70.32%。与未接种对照相比,接种AMF的黄瓜幼苗的株高,茎粗,干重,根冠比均显着增加。此外,AMF定殖极大地提高了根系活性,叶绿素含量,净光合速率,CO2同化(Asat)的光饱和率,最大羧化速率(Vcmax)和最大核糖-1,5-双磷酸(RuBP)再生速率。 (Jmax),接种VT后分别增加52.81%,30.75%,58.76、47.00、69.15和65.53%。一些关键酶的活性,例如RuBP羧化酶/加氧酶(RuBisCO),D-果糖-1,6-双磷酸酶(FBPase),D-果糖-6-磷酸酶(F6P)和核糖5-磷酸激酶(Ru5PK),以及AMF定殖上调了卡尔文循环中涉及的RCA,FBPase,FBPA,SBPase, rbcS rbcL 的相关基因表达。接种AMF还可以改善根中的常量和微量营养素含量,例如N,P,K,S,Ca,Cu,Fe,Mn,Mg和Zn。进一步的分析表明,VT接种对黄瓜幼苗的生长具有相对较好的影响,其次是BF和Fm,表明由远距离AMF种类组成的AMF组成可能比单个或紧密相关的AMF菌种具有更好的效果。这项研究提高了植物对不同AM真菌反应的理解,从而发展了AMF促进蔬菜生产的策略。

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