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The chapter surveys recent work on the dynamics of leaf hydraulic conductance across plant growth conditions, as well as diurnally, and across leaf ages.
The most responsive leaves to dehydration were within the intermediate leaf ages and fully developed.
Flavonoids, on the other hand, were upregulated in both the leaf ages in infested plants.
There was a significant correlation (P < 0.01) among all GLS severity of the different leaf ages and inoculation moments (Table 2).
Most eucalypts can have two or three different leaf ages present in the crown at any one season, with leaves lasting up to 18 months.
We then visually screened this set of graphs to identify candidates with an expression profile suggesting a role during leaf development (so high expression at young leaf ages, dropping rapidly as leaves mature).
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Both analyses indicated that leaf mortality risk increased monotonically with leaf age.
Similar results were found both in egy1 mutants and in WT plants with increasing leaf age.
As a leaf aged, activity of a gene called EIN2 increased and suppressed miR164.
In this study, the leaf yellowing phenotype of egy1 mutant and WT plants is also related to the increasing leaf age and leaf normal development.
The convexity parameter and Amax decreased with leaf age, with no correlation to the anatomical features described here.
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CEO of Professional Science Editing for Scientists @ prosciediting.com