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In separate ANOVAs, effect of orientation interacted with effect of stolon length on two measures of size, number of leaves and length of new stolons (Table 1).
On the other hand, the negative correlations found here between the biomass produced by each plant in its last growing season and the CVs of GU length, number of leaves and length · diameter−1 indicate that those individuals producing more biomass develop morphologically more similar GUs.
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To test whether differences appeared in the leaf shape and phenotype between wild-type and CsHMA3 transgenic lines at the vegetative and reproductive stages (Additional file 5: Figure S5), the length, width, angle, number of leaves, and stem length of plants were measured.
From the growth parameter, it can be confirmed that plant growth rate was influenced by sludge loading; however, some of the parameters remained similar for all of the treatments (number of leaves and root length).
The average vegetative GU has shorter internodes (indicated by the ratio between number of leaves and stem length) and a higher allocation to leaves than a flowering GU.
Number of leaves and longest leaf length were measured three times (10th 14th July 2006, 7th 11th August 2006, 27th April 3rd May 2007) before plants started bolting.
Measures of spatial variance in number of juvenile leaves and length of adult leaves at the scale of shoots were significantly larger at the outfall compared to reference locations.
The morphological parameters like shoot length, intermodal length, number of leaves and number of branches was recorded at an interval of 1 week (7 days) for 5 weeks in control and experimental groups.
Morphological parameters such as root and shoot length, number of leaves, and leaf area of each plant were estimated.
This is supported by the differences in length, number of leaves and dry mass between both GU types.
To determine the relationship between biomass and total pod production in naturally occurring plants within field exclosures, we used multiple regression to determine the relationship of size traits (i.e. stem length, number of leaves, and dry biomass) and phenology (days to first flower) to total pod production within each planting soil type (saline or non-saline).
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