Drought stress effects of nutrients of the Bombax ceiba at the root zone soil and plant's body after inoculation of AMF
The symbiont composed by Bombax ceiba L and arbuscular mycorrhizal fungi (AMF) is very popular in the Dry-hot Valley.Our objective is to clarify whether the formation of symbiosis plays a role in the adaption mechanism ofB.ceiba which survive in such harsh condition at Dry-hot Valley.Using pot experiment and inoculated arbuscular mycorrhizal fungi Bombax ceiba L seedling drought stress treatment,determination of Bombax ceiba L under different processing root zone soil nutrient and plant nutrient content.Under moderate drought stress,the inoculation increased the plant root zone soil AK,NO3-N content and reduce the content of TN and TP in drought stress 30,60,90 d,AK,NO3--N content than not meet strains respectively 37.35%,20.48%,17.77% and 173.61%,285.94%,84.62%,TN and TP were less than 19.18,2.53,6.32,did not answer the strains,29.00,31.40 mg/kg and 20.13 mg/kg.The inoculation increased the TP content in roots,than not meet strains respectively 183.09,292.42 mg/kg,improves the rhizome TK content in leaf,don't answer beyond strains respectively 189.43,164.79,77.99 mg/kg.Under severe drought stress,the inoculation increased the root zone soil TK,AK,NH4+-N content,30,60,90 d,drought stress than not meet strains respectively 0.40,0.90,0.58 mg/kg,49.53%,68.58%,58.43% and 55.72%,68.58% and 16.13%.Drought stress (60,90 d) late inoculation reduces the root zone soil AP content,less than not meet strains were respectively 15.7% and 38.49 %.Joint strain rhizome TP content than not to swain,beyond 9.75,52.78 mg/kg,respectively,the inoculation TK content in roots was increased,the than not meet strains respectively 26.86,45.76,173.3 mg/kg.In addition the inoculation significantly reduces the plant root zone NH4+-N content,moderate and severe drought stress,strain and did not answer the strain drop were 3.48,0.10 and 2.44 and 0.70 mg/kg.Inoculation,therefore,is to improve the kapok plant root zone soil and plant nutrient element content,which will provide theoretical basis for further study kapok drought resistance mechanism.
absorption of nutrientsarbuscular mycorrhizal fungiBombax ceiba L.drought stress