All terms in GO
| Label | Id | Description |
|---|---|---|
| neural plate anterior/posterior regionalization | GO_0021999 |
The process that regulates the coordinated growth and differentiation that establishes the non-random anterior-posterior spatial arrangement of the neural plate.
|
| negative regulation of growth rate | GO_0045967 |
Any process that reduces the rate of growth of all or part of an organism.
|
| regulation of growth rate | GO_0040009 |
Any process that modulates the rate of growth of all or part of an organism.
|
| lamina terminalis formation | GO_0021996 |
The process in which the anterior-most portion of the neural axis is formed by closure of the anterior neuropore.
|
| neural plate axis specification | GO_0021997 |
The pattern specification process in which the axes of the nervous system are established.
|
| negative regulation of juvenile hormone biosynthetic process | GO_0045968 |
Any process that stops, prevents, or reduces the frequency, rate or extent of the chemical reactions and pathways resulting in the formation of juvenile hormone.
|
| regulation of juvenile hormone biosynthetic process | GO_0007557 |
Any process that modulates the frequency, rate or extent of the chemical reactions and pathways resulting in the formation of juvenile hormone.
|
| positive regulation of juvenile hormone biosynthetic process | GO_0045969 |
Any process that activates or increases the frequency, rate or extent of the chemical reactions and pathways resulting in the formation of juvenile hormone.
|
| neural plate formation | GO_0021990 |
The formation of the flat, thickened layer of ectodermal cells known as the neural plate. The underlying dorsal mesoderm signals the ectodermal cells above it to elongate into columnar neural plate cells. The neural plate subsequently develops into the neural tube, which gives rise to the central nervous system.
|
| neural plate thickening | GO_0021991 |
The process of apical-basal elongation of individual ectodermal cells during the formation of the neural placode.
|
| positive regulation of humoral immune response mediated by circulating immunoglobulin | GO_0002925 |
Any process that activates or increases the frequency, rate, or extent of a humoral immune response mediated by circulating immunoglobulin.
|
| progression of neural tube closure | GO_0021994 |
The process in which the neural folds are fused extending from the initial closure points.
|
| negative regulation of development, heterochronic | GO_0045961 |
Any process that modulates the consistent predetermined time point at which an integrated living unit or organism progresses from an initial condition to a later condition and decreases the rate at which this time point is reached.
|
| neuropore closure | GO_0021995 |
The process of joining together the neural folds at either end of the neural tube.
|
| positive regulation of development, heterochronic | GO_0045962 |
Any process that modulates the consistent predetermined time point at which an integrated living unit or organism progresses from an initial condition to a later condition and increases the rate at which this time point is reached.
|
| cell proliferation involved in neural plate elongation | GO_0021992 |
The process of expansion of cell numbers in the neural plate due to cell division of progenitor cells preferentially in the rostrocaudal direction, resulting in the elongation of the tissue.
|
| negative regulation of dopamine metabolic process | GO_0045963 |
Any process that stops, prevents, or reduces the frequency, rate or extent of the chemical reactions and pathways involving dopamine.
|
| regulation of dopamine metabolic process | GO_0042053 |
Any process that modulates the frequency, rate or extent of the chemical reactions and pathways involving dopamine.
|
| trans-translation-dependent protein tagging | GO_0070930 |
A protein modification process in which a polypeptide is added to a nascent polypeptide cotranslationally by trans-translation.
|
| initiation of neural tube closure | GO_0021993 |
The process in which closure points are established at multiple points and along the neural rostrocaudal axis.
|