Publications by authors named "L R Band"

Article Synopsis
  • Urbanization negatively impacts the connection between riparian zones and other water bodies, making it harder for these zones to filter pollutants like nitrate (NO₃) and phosphate (PO₄).
  • A study over 20 years examined water table levels and pollutant concentrations at four sites in Baltimore, revealing increased connectivity and changes in pollutant levels, especially in suburban and urban areas.
  • The findings suggest that shallower water tables promote conditions that reduce NO₃ through denitrification but can increase PO₄, highlighting the influence of urban management practices and the need for further research into these dynamics.
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The control of cell-cell communication via plasmodesmata (PD) plays a key role in plant development. In tree buds, low-temperature conditions (LT) induce a switch in plasmodesmata from a closed to an open state, which restores cell-to-cell communication in the shoot apex and releases dormancy. Using genetic and cell-biological approaches, we have identified a previously uncharacterized transcription factor, Low-temperature-Induced MADS-box 1 (LIM1), as an LT-induced, direct upstream activator of the gibberellic acid (GA) pathway.

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Forests play a key role in the mitigation of global warming and provide many other vital ecosystem goods and services. However, as forest continues to vanish at an alarming rate from the surface of the planet, the world desperately needs knowledge on what contributes to forest preservation and restoration. Migration, a hallmark of globalization, is widely recognized as a main driver of forest recovery and poverty alleviation.

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The Elementary Effects method is a global sensitivity analysis approach for identifying (un)important parameters in a model. However, it has almost exclusively been used where inputs are dimensionless and take values on [0, 1]. Here, we consider models with dimensional inputs, inputs taking values on arbitrary intervals or discrete inputs.

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Populations of cells typically maintain a consistent size, despite cell division rarely being precisely symmetrical. Therefore, cells must possess a mechanism of "size control", whereby the cell volume at birth affects cell-cycle progression. While size control mechanisms have been elucidated in a number of other organisms, it is not yet clear how this mechanism functions in plants.

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