Literature DB >> 18586502

Sample preparation for scanning electron microscopy of plant surfaces--horses for courses.

A K Pathan1, J Bond, R E Gaskin.   

Abstract

Plant tissues must be dehydrated for observation in most electron microscopes. Although a number of sample processing techniques have been developed for preserving plant tissues in their original form and structure, none of them are guaranteed artefact-free. The current paper reviews common scanning electron microscopy techniques and the sample preparation methods employed for visualisation of leaves under specific types of electron microscopes. Common artefacts introduced by specific techniques on different leaf types are discussed. Comparative examples are depicted from our lab using similar techniques; the pros and cons for specific techniques are discussed. New promising techniques and microscopes, which can alleviate some of the problems encountered in conventional methods of leaf sample processing and visualisation, are also discussed. It is concluded that the choice of technique for a specific leaf sample is dictated by the surface features that need to be preserved (such as trichomes, epidermal cells or wax microstructure), the resolution to be achieved, availability of the appropriate processing equipment and the technical capabilities of the available electron microscope.

Entities:  

Mesh:

Year:  2008        PMID: 18586502     DOI: 10.1016/j.micron.2008.05.006

Source DB:  PubMed          Journal:  Micron        ISSN: 0968-4328            Impact factor:   2.251


  26 in total

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2.  Environmental scanning electron microscopy (ESEM)--a versatile tool in studying plants.

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Journal:  Protoplasma       Date:  2010-05-06       Impact factor: 3.356

3.  Role of sodium ion transporters and osmotic adjustments in stress alleviation of Cynodon dactylon under NaCl treatment: a parallel investigation with rice.

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Journal:  Protoplasma       Date:  2017-07-15       Impact factor: 3.356

4.  Cadmium and lead interactive effects on oxidative stress and antioxidative responses in rice seedlings.

Authors:  Rajneesh Kumar Srivastava; Poonam Pandey; Ritika Rajpoot; Anjana Rani; R S Dubey
Journal:  Protoplasma       Date:  2014-01-31       Impact factor: 3.356

5.  Confocal laser scanning microscopy elucidation of the micromorphology of the leaf cuticle and analysis of its chemical composition.

Authors:  Pavani P Nadiminti; James E Rookes; Ben J Boyd; David M Cahill
Journal:  Protoplasma       Date:  2015-02-25       Impact factor: 3.356

6.  The response of Trissolcus basalis to footprint contact kairomones from Nezara viridula females is mediated by leaf epicuticular waxes.

Authors:  Stefano Colazza; Mauro Lo Bue; Daniela Lo Giudice; Ezio Peri
Journal:  Naturwissenschaften       Date:  2009-05-20

7.  Taxonomic significance of trichomes micromorphology in cucurbits.

Authors:  Mohammad Ajmal Ali; Fahad M A Al-Hemaid
Journal:  Saudi J Biol Sci       Date:  2010-10-16       Impact factor: 4.219

8.  A novel Trichoderma fusant for enhancing nutritional value and defence activity in chickpea.

Authors:  Aradhana Mishra; Chandra Shekhar Nautiyal
Journal:  Physiol Mol Biol Plants       Date:  2018-02-27

9.  Smart drugs: green shuttle or real drug?

Authors:  L Cornara; B Borghesi; C Canali; M Andrenacci; M Basso; S Federici; M Labra
Journal:  Int J Legal Med       Date:  2013-07-11       Impact factor: 2.686

10.  Microbial Identification, High-Resolution Microscopy and Spectrometry of the Rhizosphere in Its Native Spatial Context.

Authors:  Chaturanga D Bandara; Matthias Schmidt; Yalda Davoudpour; Hryhoriy Stryhanyuk; Hans H Richnow; Niculina Musat
Journal:  Front Plant Sci       Date:  2021-07-07       Impact factor: 5.753

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