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Elemental analysis of mycorrhizal and actinorhizal inoculated Casuarina equisetifolia under glasshouse condition

机译:温室条件下木麻黄和木薯菌根接种的元素分析

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Casuarina equisetifolia is a diverse range of environments fromtropical to arid woodlands and coastal sand dunes, salinity affected soils. C. equisetifolia is the only tree which is having tripartite symbionts in their roots systemlike endo, ectomycorrhizal and N2 ??? fixing Frankia. Therefore the C. equisetifolia root system needs more amount of macro and micro elements for theirmetabolism. The present study aims to analyse the important 18 elements (N, P,K,Mg,Na, B,Al, Si, Cd,Ca, Fe, Co,Mo,Mn,Ni, Zn, Cr and Cu) which is essential for the C. equisetifolia phosphate solubilization and N2 ??? Fixation. The results we have recorded that the cladodes (180 d) of triple (V+ E + F) inoculated plants showed the higher amount ofN, P, K,Mg andNa.Higher levels ofN,K,Mg andNawere recorded in roots (180 d) of triple inoculated plants. Maximum P content was recorded in V + E inoculated plants. The stimulation ofN2 ??? fixation in the mycorrhizal plants can be attributed to increase in phosphate uptake by these roots, a situation analogous to that in nodulated legumes colonized bymycorrhizal fungi. Higher levels Ca, Fe, Co,Mn, Cu, Zn were recorded in cladodes (180 d) of triple (V + E + F) inoculated plants. Higher amount of Ni was recorded in cladodes of Psilothus tinctorius inoculated plants. Concentrations of Fe were higher in both foliage and twigs of Casuarina equisetifolia. These results prove that the triple inoculated (V + E + F) plants showed the enhanced elements in their cladodes and root system. Consequently this will boost the products of photosynthesis, and bio-mass of Casuarina equisetifolia.
机译:木麻黄(Casuarina equisetifolia)的环境范围很广,从热带到干旱的林地和沿海沙丘,盐分影响土壤。 C. equisetifolia是唯一一棵在其根系内有三方共生体的树,如内膜,外生菌根和N2。修复法兰克。因此,马齿C的根系代谢需要更多的宏观和微观元素。本研究旨在分析必不可少的重要18种元素(N,P,K,Mg,Na,B,Al,Si,Cd,Ca,Fe,Co,Mo,Mn,Ni,Zn,Cr和Cu)的C. equisetifolia磷酸盐溶解和N2固定。结果表明,接种(V + E + F)的植物的枝叶(180 d)的N,P,K,Mg和Na含量较高,而根系(180 d)的N,K,Mg和Nawe含量较高。三重接种的植物。在接种V + E的植物中记录了最大的P含量。 N2的刺激固定在菌根植物上可以归因于这些根对磷酸盐的吸收增加,这种情况类似于菌根真菌定殖的结节豆科植物的情况。在三重(V + E + F)接种植物的枝条(180 d)中记录到较高水平的Ca,Fe,Co,Mn,Cu,Zn。在Psilothus tinctorius接种植物的簇状植物中记录到较高的Ni含量。木麻黄(Casuarina equisetifolia)的叶子和嫩枝中的铁含量都较高。这些结果证明,三重接种(V + E + F)植物在其枝和根系中显示出增强的元素。因此,这将促进木麻黄光合作用的光合作用和生物量。

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