Matthias Meier, Elena M Lucchetta, Rustem F Ismagilov
Index: Lab Chip 10(16) , 2147-53, (2010)
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In this article, we developed a "plant on a chip" microfluidic platform that can control the local chemical environment around live roots of Arabidopsis thaliana with high spatial resolution using multi-laminar flow. We characterized the flow profile around the Arabidopsis root, and verified that the shear forces within the device ( approximately 10 dyne cm(-2)) did not impede growth of the roots. Our platform was able to deliver stimuli to the root at a spatial resolution of 10-800 microm. Further, the platform was validated by exposing desired regions of the root with a synthetic auxin derivative, 2,4-dichlorophenoxyacetic acid (2,4-D), and its inhibitor N-1-naphthylphthalamic acid (NPA). The response to the stimuli was observed using a DR5::GFP Arabidopsis line, where GFP expression is coupled to the auxin response regulator DR5. GFP expression in the root matched the position of the flow-focused stream containing 2,4-D. When the regions around the 2,4-D stimulus were exposed to the auxin transport inhibitor NPA, the active and passive transport mechanisms of auxin could be differentiated, as NPA blocks active cell-to-cell transport of auxin. Finally, we demonstrated that local 2,4-D stimulation in a approximately 10 microm root segment enhanced morphological changes such as epidermal hair growth. These experiments were proof-of-concept and agreed with the results expected based on known root biology, demonstrating that this "root on a chip" platform can be used to test how root development is affected by any chemical component of interest, including nitrogen, phosphate, salts, and other plant hormones.
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NSC 204421
CAS:132-66-1 |
C18H13NO3 |
Non-invasive quantification of endogenous root auxin transpo...
2010-09-01 [Plant J. 63(6) , 1004-16, (2010)] |
Auxin modulates the enhanced development of root hairs in Ar...
2011-08-01 [Plant Cell Environ. 34(8) , 1304-17, (2011)] |
Expression profile of PIN, AUX/LAX and PGP auxin transporter...
2010-07-01 [FEBS J. 277 , 2954-2969, (2010)] |
Identification of IAA transport inhibitors including compoun...
2012-10-01 [Plant Cell Physiol. 53(10) , 1671-82, (2012)] |
Pseudonodule formation by wild-type and symbiotic mutant Med...
2011-11-01 [Mol. Plant Microbe Interact. 24(11) , 1372-84, (2011)] |
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