Functional relationships of nodulation response and biomass production at nursery stages of two fast

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This study was carried out to assess the relationship of the status of nodulation(i.e., the number of nodules, their shape and size) in root and biomass production of plant growth parameters(i.e., number of leaves, root and shoot lengths, root biomass and shoot biomass) in Albizia saman and Leucaena leucocephala. The assessment started 60 days after seeding. The study revealed that nodulation response and biomass production in both species showed significant differences over time(p < 0.05) in all variables except in the root-shoot ratio(oven-dry) of L. leucocephala. The study also showed significant differences(p < 0.05) in nodule formation and biomass production at the end of the study period between the two species except in the number of nodules and leaves and the green root-shoot ratio. There were strong positive correlations between nodule formation and biomass production, i.e., the number of nodules and the age of plants, the number of nodules and leaves, as well as the number of nodules and biomass(root biomass and shoot biomass) in both species. The results obtained using principal component analysis(PCA) and correlation coefficients of the different characteristics of nodulation and biomass production were similar in both species. The PCA showed that shoot biomass(shoot green weight and shoot oven-dry weight) is positively correlated with PC1(with an eigenvalue of 7.50) and root length is positively correlated with PC2(with an eigenvalue of 0.19) in the case of A. saman. In the case of L. leucocephala, the PCA revealed that root biomass(root green weight and root oven-dry weight), shoot biomass and shoot length are also positively correlated with PC1, while nodule formation and the number of leaves are positively correlated with PC2(with an eigenvalue PC1 of 6.92 and PC2 of 0.49). This study was carried out to assess the relationship of the status of nodulation (ie, the number of nodules, their shape and size) in root and biomass production of plant growth parameters (ie, number of leaves, root and shoot lengths, root biomass The study revealed that nodulation response and biomass production in both species showed significant differences over time (p <0.05) in all variables except in the root-shoot ratio (oven-dry) of L. leucocephala. The study also showed significant differences (p <0.05) in nodule formation and biomass production at the end of the study period between the two species except in the number of nodules and leaves and the green There were strong positive correlations between nodule formation and biomass production, ie, the number of nodules and the age of plants, the number of nodules and leaves, as well as the number of The results obtained using principal component analysis (PCA) and correlation coefficients of the different characteristics of nodulation and biomass production were similar in both species. The PCA showed that shoot biomass (shoot green weight and shoot oven-dry weight) is positively correlated with PC1 (with an eigenvalue of 7.50) and root length is positively correlated with PC2 (with an eigenvalue of 0.19) in the case of A. saman. leucocephala, the PCA revealed that root biomass (root green weight and root oven-dry weight), shoot biomass and shoot length are also positively correlated with PC1, while nodule formation and the number of leaves are positively correlated with PC2 (with an eigenvalue PC1 of 6.92 and PC2 of 0.49).
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