Published April 27, 2016 | Version v1
Journal article Open

Carbon Nanofiber Arrays: A Novel Tool for Microdelivery of Biomolecules to Plants

Description

Effective methods for delivering bioprobes into the cells of intact plants are essential for investigating diverse biological processes. Increasing research on trees, such as Populus spp., for bioenergy applications is driving the need for techniques that work well with tree species. This report introduces vertically aligned carbon nanofiber (VACNF) arrays as a new tool for microdelivery of labeled molecules to Populus leaf tissue and whole plants. We demonstrated that VACNFs penetrate the leaf surface to deliver sub-microliter quantities of solution containing fluorescent or radiolabeled molecules into Populus leaf cells. Importantly, VACNFs proved to be gentler than abrasion with carborundum, a common way to introduce material into leaves. Unlike carborundum, VACNFs did not disrupt cell or tissue integrity, nor did they induce production of hydrogen peroxide, a typical wound response. We show that femtomole to picomole quantities of labeled molecules (fluorescent dyes, small proteins and dextran), ranging from 0.5–500 kDa, can be introduced by VACNFs, and we demonstrate the use of the approach to track delivered probes from their site of introduction on the leaf to distal plant regions. VACNF arrays thus offer an attractive microdelivery method for the introduction of biomolecules and other probes into trees and potentially other types of plants.

Data availability

All relevant data are within the paper and its Supporting Information files.

Files

journal.pone.0153621.pdf

Files (19.2 MB)

Name Size Download all
Article
md5:4d56f1507ea2233ec8fe3184156d74ee
10.7 MB Preview Download
md5:6e627643f5661aee642f1efadbfbf2bd
8.5 MB Preview Download

Additional details

Identifiers

DOI
10.1371/journal.pone.0153621
Other
oai:uchicago.tind.io:7205

Funding

U. S. Department of Energy
ERKP-417

UChicago Information

Division(s)
Biological Sciences Division
Department(s)
Molecular Genetics and Cell Biology