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Molecular markers were used to quantify the presence of each genotype in both root and seed-yield samples.
A constitutive expression pattern of the MsTI gene was observed in stems, while the transcript was absent in both root and leaf tissues.
The results showed that high temperature reduced root lodging resistance significantly, as indicated by a dramatic reduction in both root anchorage and safety factor (against anchorage failure).
Selenate supplementation (AsIII 25 μM+SeVI 25 μM) decreased total As accumulation in both root and shoot (179 & 144%) as compared to AsIII alone treatment.
The activity of isocitrate dehydrogenase (E.C. 1.1.1.41) and malate dehydrogenase (E.C. 1.1.1.37) decreased in both root and shoot samples under salt stress.
The activity of pyruvate dehydrogenase (E.C. 1.2.4.1) decreased in 50 mM NaCl but increased in 100 mM and 150 mM concentrations, in both root and shoot samples.
Sodium and chloride ion contents increased in both root and shoot whereas potassium ion content decreased in shoot of test seedlings with increasing concentrations of NaCl.
The greater final biomass present in both root and scion of one-year-old biaxis nursery trees may contribute to accelerated canopy development of the planted orchard, while their greater flowering intensity indicates high potential for early cropping.
Fungal community composition patterns were found to be generally similar in both root and soil associated communities, across the scales included in the sampling design (40 m–500 km).
While numerical models are commonly used to simulate fate and transport of agricultural contaminants, few models have considered a controlled field work to investigate the influence of soil heterogeneity and groundwater flow on nitrate-N distribution in both root zone and deep vadose zone.
In particular, SQD1, SQD2, and MGDG were upregulated in both root and shoot during −P stress.
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