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Moreover, N deficient plants have poor development of root system, which reduces their anchorage capacity.
First, BR deficient plants were complemented by exogenous BR.
In nutrient deficient plants, changes in leaf elongation rate developed more slowly.
Examination of plastid ultrastructure revealed intact chloroplasts in BR deficient plants.
AtMMS21 deficient plants are semisterile with shorter mature siliques and abortive seeds.
Brassinosteroid deficient plants are severely dwarfed and display dark green, epinastic leaves and shortened hypocotyls.
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Higher expression of AXR1 under cytokinin-deficiency suggests an enhanced auxin signalling in cytokinin-deficient plants.
K deficiency also affected the ratio of 13-/9-HOD (1.8 in K-deficient plants vs. 2.7 in control plants).
The most highly induced gene in Mn-deficient plants, BGLU23 (PYK10), was the most down-regulated gene in Fe-deficient plants.
For example, the H2A histone protein HTA10 showed increased abundance in Mn-deficient plants.
Several genes with putative or validated roles in root hair development showed increased expression under Mn-deficient conditions but decreased expression in Fe-deficient plants (DER1, AGP14, FLA9).
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CEO of Professional Science Editing for Scientists @ prosciediting.com