ID the Future Intelligent Design, Evolution, and Science Podcast
Topic

mitosis

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Cell Division Stages of Mitosis

McLatchie: Why Cell Division Challenges Darwinism

One of the most incredible features of cellular life is the capability of self-replication. But can a Darwinian mechanism take the credit for the origin and design of the cell division process? On this episode of ID The Future, host Andrew McDiarmid concludes a four-part series with Dr. Jonathan McLatchie on the intelligent design and irreducible complexity of eukaryotic cell division. In his recent paper on eukaryotic cell division, Dr. McLatchie quotes a Latin expression Darwin uses in his famous book On The Origin of Species to describe natural selection: natura non facit saltus: nature does not make jumps. That’s the built-in limitation of Darwinian processes: by default they are stepwise and gradual. And of course, Darwin himself acknowledged this Read More ›

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Professional Heavy Industry Engineer/Worker Wearing Safety Uniform and Hard Hat Uses Tablet Computer. Serious Successful Female Industrial Specialist Walking in a Metal Manufacture Warehouse.

Engineered Elegance: The Checkpoint Pathways of the Cell Cycle

One of the most incredible features of cellular life is the capability of self-replication. And built into the remarkable process of cell division are several checkpoints that ensure the success of this life or death cellular practice. But can a Darwinian mechanism take the credit for this elegant cellular system? On this ID The Future, host Andrew McDiarmid continues his four-part conversation with Dr. Jonathan McLatchie on the intelligent design and irreducible complexity of eukaryotic cell division. In this segment, Dr. McLatchie describes each checkpoint and the role it plays in successful self-replication. This is Part 3 of a four-part series. Read More ›
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3d rendered illustration of a motor protein

McLatchie: How Motor Proteins Power Eukaryotic Cell Division

Could the components of the eukaryotic cell division process have arisen through a gradual, unguided process? On this ID The Future, Dr. Jonathan McLatchie casts light on the unlikelihood of this proposition as he continues a four-episode series with host Andrew McDiarmid on the intelligent design and irreducible complexity of eukaryotic cell division. In this segment, McLatchie dives into some of the key molecular machinery responsible for the success of mitosis: the mitotic spindle and the motor proteins that aid in its assembly and function, explaining why their origin is beyond the reach of a Darwinian process. Read More ›
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3d illustration of colorful cell division, cell membrane and splitting nucleus

McLatchie: Intelligent Design in the Eukaryotic Cell Cycle

On this ID The Future, host Andrew McDiarmid begins a short series with Dr. Jonathan McLatchie delving into the remarkable design and irreducible complexity of the eukaryotic cell cycle. The pair review the differences between prokaryotic and eukaryotic cells, the phases involved in eukaryotic cell division, and the concept of irreducible complexity. They explore how various components of the cell division process, such as kinetochores and microtubules, are essential for successful mitosis and why these systems are more likely the product of intelligent design rather than an unguided evolutionary process. Read More ›
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Sex: A Spicy Problem for Evolutionary Theory

Sexual reproduction ought to be a recipe for evolutionary disaster. It's a waste of resources producing no short-term advantages. It demands an entirely different form of cell division and requires highly designed interconnected components to succeed. And yet, sex reigns supreme in the biological world. On this ID The Future, Dr. Jonathan McLatchie begins a series on why sex is the queen of problems for evolutionary theory and why instead it bears the hallmarks of a system governed by forethought and engineering. This is Part 1 of 3. Read More ›