Results 231 to 240 of about 2,202,089 (336)

Time‐series multi‐omics analysis of micronutrient stress in Sorghum bicolor reveals iron and zinc crosstalk and regulatory network conservation

open access: yesPlant Biology, EarlyView.
Overlap between Fe and Zn responsive gene regulatory networks (GRNs) were found, indicative of micronutrient crosstalk, and conservation of root and leaf GRNs and genes suggests strong constraint on homeostasis networks in plants. Abstract Micronutrient stress impacts growth, biomass production, and grain yield in crops.
A. Mishra   +11 more
wiley   +1 more source

Exogenous IAA application alleviated altered physiological and biochemical processes through promoting H‐ATPase and Fe chelate reductase activities in common bean (Phaseolus vulgaris L.) subjected to iron deficiency

open access: yesPlant Biology, EarlyView.
Exogenous IAA supply enhances the strategy I response in common bean under iron deficiency. Abstract Iron deficiency is a common nutritional disorder observed in calcareous soils, where its resolution by classical methods has shown its failure. However, the exploitation of certain potentialities possessed by crops (rhizosphere acidification, H‐ATPase ...
K. Nsiri   +5 more
wiley   +1 more source

Restoring soil and tree nutrition through non‐industrial wood ash additions to sugarbushes

open access: yesRestoration Ecology, EarlyView.
Nutrient losses from forest soils caused by decades of acid deposition have affected tree growth and depleted soils of essential nutrients in eastern North America. Non‐industrial wood ash (NIWA) is rich in macronutrients and may be a potential remediation strategy to restore lost nutrients as a forest soil amendment.
Shelby M. Conquer   +3 more
wiley   +1 more source

Plant traits, diversity, and environmental factors shape soil carbon dynamics in a restored grassland

open access: yesRestoration Ecology, EarlyView.
Abstract Introduction Plant diversity and functional traits can improve ecosystem function in degraded plant communities, but there are gaps in our understanding of how to utilize plants to increase soil carbon (C) in the context of ecological restoration.
Laurel T. Sebastian   +3 more
wiley   +1 more source

Lime amendment to chronically acidified forest soils results in shifts in prokaryotic communities. [PDF]

open access: yesAppl Environ Microbiol
Hosmer M   +6 more
europepmc   +1 more source

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