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Zorluk: OrtaSummarizing Key Thesis and Central Arguments

Read the passage below:

For decades after the discovery of the double helix structure of DNA, molecular biology focused almost exclusively on protein-coding genes. The vast stretches of the genome that did not code for proteins were frequently dismissed as evolutionary remnants, popularized in the 1970s as 'junk DNA.' This gene-centric view suggested that these non-coding regions had no active function, representing merely cellular clutter accumulated over millennia of reproduction.

However, this dismissal proved premature. As genomic sequencing technologies advanced in the late twentieth and early twenty-first centuries, researchers began uncovering complex regulatory systems embedded within these supposedly inert sequences. Projects like ENCODE (Encyclopedia of DNA Elements) revealed that a significant portion of non-coding DNA is actively transcribed into various forms of non-coding RNA, which play critical roles in gene expression, cellular differentiation, and disease development. Rather than being useless debris, these regions act as a sophisticated control panel, determining when, where, and how protein-coding genes are activated.

This shift in understanding has transformed molecular biology. The genome is no longer viewed as a collection of isolated coding sequences floating in a sea of genetic trash; instead, it is recognized as an integrated, dynamic system where non-coding elements are essential to organismal complexity. Consequently, studying these regulatory elements has become central to genetic research, offering new pathways for targeted medical therapies.

Which of the following statements best summarizes the central thesis of the passage?

  1. A
    Modern genomic sequencing technologies have proved that every element of the human genome is equally vital to evolutionary adaptation.
  2. B
    The ENCODE project demonstrated that non-coding DNA is actively transcribed into non-coding RNA to regulate cellular differentiation.
  3. The scientific consensus has shifted from viewing non-coding DNA as functionless debris to recognizing it as a crucial regulatory system that controls gene activation.Cevap
  4. D
    Protein-coding genes have been shown to be evolutionary remnants of cellular clutter, whereas non-coding DNA is the primary driver of genetic diseases.

Cevap

The correct answer states that the scientific consensus has shifted from viewing non-coding DNA as functionless debris to recognizing it as a crucial regulatory system that controls gene activation.
The correct answer accurately summarizes the passage's description of how biology transitioned from viewing non-coding DNA as useless 'junk' to realizing its important role in controlling when and how other genes are activated.

Adım Adım Çözüm

1
Analyze the passage structure to identify the shift in the scientific understanding of non-coding DNA.
The first paragraph introduces the historic view of 'junk DNA' as functionless clutter, while the second and third paragraphs outline the modern discoveries of its regulatory roles.
To synthesize the main argument, we must track the progression from the historical thesis to the modern counter-evidence.
2
Distinguish the core claim from supporting details and evidence.
The reference to the ENCODE project and non-coding RNA functions as evidence supporting the main claim that 'junk DNA' is actually functional.
This prevents confusing a localized, supporting piece of evidence with the global thesis.
3
Evaluate the options to find the one that accurately summarizes this global shift without being overly broad or distorting details.
The statement summarizing the shift from viewing non-coding DNA as functionless debris to recognizing its crucial regulatory role matches the main idea of the entire text.
Selecting this option provides the most complete and accurate summary of the passage's argument.

Anahtar Kavram

Summarizing key thesis statements and tracking how central arguments develop over a passage by distinguishing global claims from local evidence.
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