Answer:
Genetic drift
Explanation:
Genetic drift is an evolutionary mechanism that in a population it changes allelic frequencies over generations just by chance. For this reason, small populations are more susceptible to be affected by genetic drift than bigger populations.
In this example, Indiana Jones visited a small village of 50 people and over generations allele A probably was lost just by chance, or by genetic drift.
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<h2>Glucose production by liver</h2>
Explanation:
- Most of this secretory organ comprises of acinar or exocrine cells that discharge the pancreatic juice containing stomach related compounds, for example, amylase, pancreatic lipase, and trypsinogen, into the pipes, that is, the fundamental pancreatic and the extrapancreatic channel
- The endocrine cells are bunched together, along these lines shaping the supposed islets of Langerhans, which are little, island-like structures inside the exocrine pancreatic tissue that represents just 1–2% of the whole organ
- drop in glucose triggers the arrival of glucagon by the pancreas. in the liver, glucagon enacts glycogen phosphorylase by animating its cAMP-subordinate phosphorylation and invigorates gluconeogenesis by bringing down [fructose 2,6 bisphosphate] consequently animating FB Pase-1
A ruler will not be needed due to having a graduated cylinder which can help measure the volume of liquids
Recombinant DNA is DNA that has been created using intelligent design methods to modify a base DNA molecule using DNA component elements from other strands of DNA of other organisms. There are a wide range of possible DNA elements that can be removed, added to or otherwise modified to produce the new recombinant form.
Recombinant DNA technology clearly is genetic engineering using intelligent design as the selection and placement of the added DNA components must be planned and precisely selected and placed to accomplish the intended result. It does not happen naturalistically.
There are numerous aspects of the growing technology of recombinant DNA that modify DNA to serve the purpose of the intelligent designers, including wide ranges of research, medicine, synthetic biology, potential commercial products and even scientific curiosity.