Non-Mendelian inheritance is any pattern of inheritance in which traits do not segregate in accordance with Mendel's laws. These laws describe the inheritance of traits linked to single genes on chromosomes in the nucleus. In Mendelian inheritance, each parent contributes one of two possible alleles for a trait.
When scientists discovered Gregor Mendel’s work on the basics of genetics, it was hailed as a major breakthrough. For the first time, scientists could reliably predict and describe what was happening when two organisms with known traits were bred to produce offspring.
Things were going great until scientists noticed something funny happening—not all the traits that they predicted in test crosses panned out as expected. What could possibly be the explanation? Was Mendel wrong? Did they need to go back to the drawing board?
We know now that Mendel was correct in his ideas—but the big picture of genetics is a lot more complicated. Mendel described the first simple part of a huge, shifting puzzle. He gave us the tools to understand the basics of how genetics work, but scientists had to figure out what else was happening.
Explanation:
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Answer:
Non-Mendelian inheritance is any pattern of inheritance in which traits do not segregate in accordance with Mendel's laws. These laws describe the inheritance of traits linked to single genes on chromosomes in the nucleus. In Mendelian inheritance, each parent contributes one of two possible alleles for a trait.
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Answer:
When scientists discovered Gregor Mendel’s work on the basics of genetics, it was hailed as a major breakthrough. For the first time, scientists could reliably predict and describe what was happening when two organisms with known traits were bred to produce offspring.
Things were going great until scientists noticed something funny happening—not all the traits that they predicted in test crosses panned out as expected. What could possibly be the explanation? Was Mendel wrong? Did they need to go back to the drawing board?
We know now that Mendel was correct in his ideas—but the big picture of genetics is a lot more complicated. Mendel described the first simple part of a huge, shifting puzzle. He gave us the tools to understand the basics of how genetics work, but scientists had to figure out what else was happening.
Explanation:
Pa brainliest po. Thank you have nice and wonderful day!