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151.
Claudiu Constantin Manole Olivier Marsan Cedric Charvillat Ioana Demetrescu Francis Maury 《Progress in Organic Coatings》2013
This paper deals with the characterization of ultra-thin films of PMMA grown by an original photo-assisted Chemical Vapor Deposition process equipped with a pulsed liquid injection system to deliver the monomer. The nanometric thick films showed a good ability to encapsulate a liquid phase as microdroplets protected by a thin polymeric tight membrane in the form of blisters. Techniques that are capable to analyze these heterogeneous structures at micro- and nanoscopic scale such as Raman Confocal Spectroscopy and Atomic Force Microscopy were used to characterize these polymer films. The liquid droplets were found to be monomer encapsulated by a PMMA film. The specific properties of these ultra-thin films exhibit self-healing capabilities at microscopic scale making them attractive for functionalization of surfaces and interfaces. 相似文献
152.
Velimir Mladenov Vasileios Fotopoulos Eirini Kaiserli Erna Karalija Stephane Maury Miroslav Baranek Naama Segal Pilar S. Testillano Valya Vassileva Glria Pinto Manuela Nagel Hans Hoenicka Dragana Miladinovi Philippe Gallusci Chiara Vergata Aliki Kapazoglou Eleni Abraham Eleni Tani Maria Gerakari Efi Sarri Evaggelia Avramidou Mateo Gaparovi Federico Martinelli 《International journal of molecular sciences》2021,22(13)
Although epigenetic modifications have been intensely investigated over the last decade due to their role in crop adaptation to rapid climate change, it is unclear which epigenetic changes are heritable and therefore transmitted to their progeny. The identification of epigenetic marks that are transmitted to the next generations is of primary importance for their use in breeding and for the development of new cultivars with a broad-spectrum of tolerance/resistance to abiotic and biotic stresses. In this review, we discuss general aspects of plant responses to environmental stresses and provide an overview of recent findings on the role of transgenerational epigenetic modifications in crops. In addition, we take the opportunity to describe the aims of EPI-CATCH, an international COST action consortium composed by researchers from 28 countries. The aim of this COST action launched in 2020 is: (1) to define standardized pipelines and methods used in the study of epigenetic mechanisms in plants, (2) update, share, and exchange findings in epigenetic responses to environmental stresses in plants, (3) develop new concepts and frontiers in plant epigenetics and epigenomics, (4) enhance dissemination, communication, and transfer of knowledge in plant epigenetics and epigenomics. 相似文献