Plant Gnotobiotic System

A plant gnotobiotic system is a controlled growth model in which plants develop under sterile conditions with a defined, known community of microorganisms, allowing researchers to study plant–microbe interactions without unknown biological variables. Seeds or plant tissues are surface sterilized, introduced into sterile nutrient media or growth vessels, and then inoculated with selected bacteria, fungi, or other microbes under carefully controlled conditions. These systems help isolate microbial effects on germination, root development, nutrient acquisition, immunity, and stress responses. By linking specific microbes to measurable plant outcomes, plant gnotobiotic systems support research in biology, agriculture, microbiome science, and the development of targeted strategies for improving crop health.

Plant Gnotobiotic System - Related Videos

Research

JoVE Journal - Developmental Biology

Rearing the Fruit Fly Drosophila melanogaster Under Axenic and Gnotobiotic Conditions

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Cited by 128 •

2016

A method for rearing Drosophila melanogaster under axenic and gnotobiotic conditions is presented. Fly embryos are dechorionated in sodium hypochlorite, transferred aseptically to sterile diet, and reared in closed containers. Inoculating diet and embryos with bacteria leads to gnotobiotic associations, and bacterial presence is confirmed by plating whole-body Drosophila homogenates.

Research

JoVE Journal - Biology
Free Sample

Transmitting Plant Viruses Using Whiteflies

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Cited by 41 •

2013

Improving our understanding of and our ability to manage many of the insect-transmitted plant viruses requires the use of the vector. Insect transmission of plant viruses is a tritrophic interaction, and as such requires the manipulation of insects, virus, and plant. Vectors must be reared in large numbers and manipulated in such a way as to insure high rates of transmission to test plants. The basics of rearing and manipulating the whitefly, Bemisa tabaci (Hemiptera: Aleyrodidae), a vector of...

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...

Research

JoVE Journal - Biology
Free Sample

Generation of Composite Plants in Medicago truncatula used for Nodulation Assays

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Cited by 7 •

2011

We demonstrate how hairy root composite plants can be used to study plant-rhizobium interactions and nodulation in the difficult-to-transform species Medicago truncatula.

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