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Figure 2 Leaf SEM microphotographs of Begonia.
Minimum temperature (rs = −0.68, P < 0.0001) is negatively significant during current months (Figure 4). Figure 2 Leaf initiation and rainfall in canopy trees of Bhadra wildlife sanctuary.
Figure 2 Leaf respiration ( R D ) trend of P. lentiscus ( close squares ), P. latifolia ( open circles ), M. communis ( close triangles ) and Q. ilex ( open squares ) during the study period.
Seven decision rules (in Figure 2, leaf nodes 1, 5, 7, 8, 10, 11, and 12) were statistically significant, excluding leaf node LUQ (node 9).
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Despite these trends, the role of phylogeny did outweigh climate in three families (Phylogeny/Climate ratios >1, Figure 2): Leaf-out timing in the only two Conifer families present in this study (Pinaceae and Cupressaceae), as well as in the Oleaceae was better explained by species relatedness, phylogeny explained 4.4%, 7.4% and 12% of the variation in leaf-out timing respectively.
Figure 5.8: Leaf cushions in arborescent lycopsids.
2. Begonia circularis Figure 16 Leaf SEM microphotographs of Begonia.
Figure 4 Leaf SEM microphotographs of B. wuzhishanensis.
Figure 4 Leaf SEM microphotographs of Begonia wui-senioris.
Figure 3 Leaf expansion and maximum temperature in canopy trees of Bhadra wildlife sanctuary.
Figure 4 Leaf senescence and minimum temperature in canopy trees of Bhadra wildlife sanctuary.
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