Periderm

Periderm is a protective secondary tissue in plants that replaces the epidermis as stems and roots undergo secondary growth, helping limit water loss and defend internal tissues. It forms when the cork cambium, or phellogen, divides and produces cork cells called phellem toward the surface and phelloderm toward the inside; the cork cells become impregnated with suberin, making them relatively impermeable. Lenticels interrupt this barrier to permit gas exchange. Studying periderm clarifies bark formation, plant protection, wound responses, and adaptation to environmental stress, with relevance to plant development, forestry, and crop biology.

Periderm - Related Videos

Research

JoVE EoE - Breast Cancer

zPDX-Analysis of Invasiveness: Investigating Invasive Behavior of Metastatic Cancer Cells in Zebrafish Embryo Xenografts

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2023

This video describes a microinjection method for breast cancer cell delivery into the perivitelline space of transgenic zebrafish embryos. After incubation, we visualize the embryo under a fluorescent microscope to observe cancer cell invasion, dissemination, and metastasis.

Mechanical Vessel Injury in Zebrafish Embryos

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Cited by 5 •

2015

This article describes a method for creating a mechanical vessel injury in zebrafish embryos. This injury model provides a platform for studying hemostasis, injury-related inflammation, and wound healing in an organism ideally suited for real-time microscopy.

The Use of Induced Somatic Sector Analysis (ISSA) for Studying Genes and Promoters Involved in Wood Formation and Secondary Stem Development

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Cited by 5 •

2016

Here we present a protocol that facilitates the medium to high throughput functional characterization of gene and promoter constructs in tree secondary stem tissue within comparatively short time frames. It is efficient, easy to use and widely applicable to a range of tree species.

Research

JoVE Journal - Immunology and Infection
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Infection of Zebrafish Embryos with Intracellular Bacterial Pathogens

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Cited by 234 •

2012

Transparent zebrafish embryos have proved useful model hosts to visualize and functionally study interactions between innate immune cells and intracellular bacterial pathogens, such as Salmonella typhimurium and Mycobacterium marinum. Micro-injection of bacteria and multi-color fluorescence imaging are essential techniques involved in the application of zebrafish embryo infection models.

Research

JoVE Journal - Biology
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Intravenous Microinjections of Zebrafish Larvae to Study Acute Kidney Injury

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Cited by 83 •

2010

We describe a technique of microinjecting the aminoglycoside, gentamicin, into 2 days post-fetilization (dpf) zebrafish larvae to induce acute kidney injury (AKI). We also describe a method for whole mount immunohistochemistry, plastic embedding and sectioning of zebrafish larvae to visualize the AKI mediated damage.

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