Land Plant Evolution

Land plant evolution is the biological history of how plants adapted from aquatic green algal ancestors to survive, reproduce, and diversify on land. Natural selection favored innovations such as protected embryos, waxy cuticles that reduce water loss, stomata that regulate gas exchange, vascular tissues for transport, and later roots, seeds, and pollen that improved resource uptake and reproduction away from water. Studying these transitions clarifies how major plant groups, including bryophytes, ferns, gymnosperms, and flowering plants, arose and reshaped terrestrial ecosystems. This framework supports research on plant development, biodiversity, carbon cycling, agriculture, and responses to environmental change.

Land Plant Evolution - Related Videos

Education

JoVE Lab Manual - Biology

Plant Diversity - Concepts

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2019

From Water to Land Kingdom Plantae first appeared about 410 million years ago as green algae transitioned from water to land. Though challenging, this transition benefited early colonizers in several ways. Initially, most living organisms (including plants and animals) were ocean dwelling, making aquatic environments crowded and highly competitive. In contrast, land was a relatively uncolonized environment with ample resources and little to no predators or competitors. Terrestrial environments...

Plant Diversity - Student Protocol

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2019

Viewing Prepared Slides ExpandTo start the exercise, first split up into groups and find a station with a compound microscope, dissecting microscope and one prepared slide. HYPOTHESES: The alternative hypothesis for this experiment might be that plants have specific adaptations that allow them to survive and reproduce in their own individual terrestrial environments. The null hypothesis for this experiment is that all plants have the same adaptations to live in terrestrial habitats. Find the...

The Colonization of Land

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2026

Changes in the environment of the early Earth drove the evolution of organisms. As prokaryotic organisms in the oceans began to photosynthesize, they produced oxygen. Eventually, oxygen saturated the oceans and entered the air, resulting in an increase in atmospheric oxygen concentration, known as the oxygen revolution approximately 2.3 billion years ago. Therefore, organisms that could use oxygen for cellular respiration had an advantage. More than 1.5 years ago, eukaryotic cells and...

Research

JoVE Journal - Developmental Biology
Free Sample

Geomagnetic Field (Gmf) and Plant Evolution: Investigating the Effects of Gmf Reversal on Arabidopsis thaliana Development and Gene Expression

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Cited by 31 •

2015

This protocol describes a method to test the hypothesis that the reversal of the effective geomagnetic field (GMF) induces differential gene expression and alters the morphology of Arabidopsis thaliana. A triaxial octagonal system of Helmholtz coil-pairs was used to artificially generate reversed GMF conditions in the plant growth chamber.

Molecular Evolution of the Tre Recombinase

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Cited by 4 •

2008

Here we report the generation of Tre recombinase through directed, molecular evolution. Tre recombinase recognizes a pre-defined target sequence within the LTR sequences of the HIV-1 provirus, resulting in the excision and eradication of the provirus from infected human cells. While still in its infancy, directed molecular evolution will allow the creation of custom enzymes that will serve as tools of molecular surgery and molecular medicine.

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