Hydroponics

Hydroponics is a method of growing plants without soil by supplying roots with water, mineral nutrients, and adequate oxygen under controlled conditions. Plants receive an aqueous nutrient solution directly or through an inert medium, while growers regulate factors such as pH, nutrient concentration, light, temperature, and water flow to support absorption and photosynthesis. In biology, hydroponic systems provide a controlled setting for studying plant nutrition, root development, stress responses, and growth. They also support efficient crop production where arable land or freshwater is limited, making hydroponics relevant to controlled-environment agriculture and research on sustainable food systems.

Hydroponics - Related Videos

Research

JoVE Journal - Biology
Free Sample

Hydroponics: A Versatile System to Study Nutrient Allocation and Plant Responses to Nutrient Availability and Exposure to Toxic Elements

0 Views •

Cited by 102 •

2016

Here, we present an easy-to-follow protocol to establish a successful hydroponic system for plant nutrition studies. This protocol has been extensively tested in Arabidopsis and can easily be adapted to other plant species to study specific nutritional requirements or the effect of non-essential elements on plant growth and development.

Research

JoVE Journal - Biology

A Hydroponic Co-cultivation System for Simultaneous and Systematic Analysis of Plant/Microbe Molecular Interactions and Signaling

0 Views •

Cited by 6 •

2017

The described hydroponic cocultivation system supports intact plants with metal mesh screens and cocultivates them with bacteria. Plant tissue, bacteria, and secreted molecules can then be separately harvested for downstream analyses, simultaneously allowing for the molecular responses of both plant hosts and interacting microbes or microbiomes to be investigated.

Measuring Bacterial Colonization on Arabidopsis thaliana Roots in Hydroponic Condition

0 Views •

Cited by 1 •

2024

Colonization of plant growth-promoting rhizobacteria (PGPR) in the rhizosphere is essential for its growth-promoting effect. It is necessary to standardize the method of detection of bacterial rhizosphere colonization. Here, we describe a reproducible method for quantifying bacterial colonization on the root surface.

A Flexible Low Cost Hydroponic System for Assessing Plant Responses to Small Molecules in Sterile Conditions

0 Views •

Cited by 10 •

2018

A simple, versatile, and low-cost in vitro hydroponic system was successfully optimized, enabling large-scale experiments under sterile conditions. This system facilitates the application of chemicals in a solution and their efficient absorption by roots for molecular, biochemical, and physiological studies.

Monitoring Bacterial Colonization and Maintenance on Arabidopsis thaliana Roots in a Floating Hydroponic System

0 Views •

Cited by 6 •

2019

Here we describe a hydroponic plant growth assay to quantify species presence and visualize the spatial distribution of bacteria during initial colonization of plant roots and after their transfer into different growth environments.

View All Results

FAQs

Related Topics