Watermelon Bottle Gourd Grafting

Watermelon bottle gourd grafting is a horticultural technique that joins a watermelon scion to a bottle gourd rootstock to produce one functioning plant. The method relies on aligning and securing compatible vascular tissues so that callus forms, xylem and phloem reconnect, and water and nutrients move between the root system and developing shoot. This combination can strengthen watermelon production by improving root vigor, tolerance to soilborne pathogens, and performance under environmental stresses such as salinity or unfavorable soil conditions. In environmental and agricultural research, the technique helps evaluate resource-efficient crop production, reduce dependence on chemical soil treatments, and support more resilient vegetable-growing systems.

Watermelon Bottle Gourd Grafting - Related Videos

Research

JoVE Journal - Environment

Generating Homo- and Heterografts Between Watermelon and Bottle Gourd for the Study of Cold-responsive MicroRNAs

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Cited by 6 •

2018

Here we present a detailed protocol for efficiently making homo- and heterografts between watermelon and bottle gourd, in addition to methods of tissue sampling, data generation, and data analysis, for the investigation of cold-responsive microRNAs.

Education

JoVE Core - Chemistry

Molecular Shape and Polarity

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2020

Dipole Moment of a Molecule Polar covalent bonds connect two atoms with differing electronegativities, leaving one atom with a partial positive charge (δ+) and the other atom with a partial negative charge (δ–), as the electrons are pulled toward the more electronegative atom. This separation of charge gives rise to a bond dipole moment. The magnitude of a bond dipole moment is represented by the Greek letter mu (µ) and is given by the formula shown here, where Q is the magnitude of the...

A Technique for Human Skin Grafting in a Mouse Model

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2025

This video demonstrates a method for grafting human skin onto an immunodeficient mouse with a suppressed neutrophil response. The method involves applying human split-thickness skin to the mouse's graft bed, sealing it, and covering it for recovery. Eventually, the human skin adheres to the mouse's skin, establishing vascularization and circulation, resulting in a successful skin xenograft.

Morphometric Analyses of Shape: The Analysis Software Toolbox for Craniofacial Shape Quantification in Zebrafish

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2026

This work describes a protocol for quantifying craniofacial cartilage shape using free software (tpsDigs2, MorphoJ, and PAST) to measure changes in facial structure in zebrafish larvae.

Mouse Models for Graft Arteriosclerosis

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Cited by 17 •

2013

We describe protocols for our mouse graft arteriosclerois (GA) models which involve interposition of a mouse vessel segment into a recipient of the same inbred strain. By backcrossing additional genetic changes into the vessel donor, the model can assess the effect of specific genes on GA.

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