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1.
Plant Physiol ; 194(1): 168-189, 2023 Dec 30.
Artículo en Inglés | MEDLINE | ID: mdl-37862163

RESUMEN

Oat (Avena sativa) is a cereal crop whose grains are rich in (1,3;1,4)-ß-D-glucan (mixed-linkage glucan or MLG), a soluble dietary fiber. In our study, we analyzed oat endosperm development in 2 Canadian varieties with differing MLG content and nutritional value. We confirmed that oat undergoes a nuclear type of endosperm development but with a shorter cellularization phase than barley (Hordeum vulgare). Callose and cellulose were the first polysaccharides to be detected in the early anticlinal cell walls at 11 days postemergence (DPE) of the panicle. Other polysaccharides such as heteromannan and homogalacturonan were deposited early in cellularization around 12 DPE after the first periclinal walls are laid down. In contrast to barley, heteroxylan deposition coincided with completion of cellularization and was detected from 14 DPE but was only detectable after demasking. Notably, MLG was the last polysaccharide to be laid down at 18 DPE within the differentiation phase, rather than during cellularization. In addition, differences in the spatiotemporal patterning of MLG were also observed between the 2 varieties. The lower MLG-containing cultivar AC Morgan (3.5% w/w groats) was marked by the presence of a discontinuous pattern of MLG labeling, while labeling in the same walls in CDC Morrison (5.6% w/w groats) was mostly even and continuous. RNA-sequencing analysis revealed higher transcript levels of multiple MLG biosynthetic cellulose synthase-like F (CSLF) and CSLH genes during grain development in CDC Morrison compared with AC Morgan that likely contributes to the increased abundance of MLG at maturity in CDC Morrison. CDC Morrison was also observed to have smaller endosperm cells with thicker walls than AC Morgan from cellularization onwards, suggesting the processes controlling cell size and shape are established early in development. This study has highlighted that the molecular processes influencing MLG content and deposition are more complex than previously imagined.


Asunto(s)
Endospermo , Hordeum , Endospermo/metabolismo , Avena , Grano Comestible/genética , Grano Comestible/metabolismo , Canadá , Polisacáridos/metabolismo , Glucanos/metabolismo , Hordeum/genética , Hordeum/metabolismo , Pared Celular/metabolismo
2.
J Nanobiotechnology ; 16(1): 94, 2018 Nov 21.
Artículo en Inglés | MEDLINE | ID: mdl-30463582

RESUMEN

BACKGROUND: Modern agricultural practises rely on surfactant-based spray applications to eliminate weeds in crops. The wide spread and indiscriminate use of surfactants may result in a number of deleterious effects that are not limited to impacts on the crop and surrounding farm eco-system but include effects on human health. To provide a safer alternative to the use of surfactant-based formulations, we have synthesised a novel, self-assembling herbicide conjugate for the delivery of a broad leaf herbicide, picloram. RESULTS: The synthesized self-assembling amphiphile-picloram (SAP) conjugate has three extending arms: a lipophilic lauryl chain, a hydrophilic polyethylene glycol chain and the amphiphobic agrochemical active picloram. We propose that the SAP conjugate maintains its colloidal stability by quickly transitioning between micellar and inverse micellar phases in hydrophilic and lipophilic environments respectively. The SAP conjugate provides the advantage of a phase structure that enables enhanced interaction with the hydrophobic epicuticular wax surface of the leaf. We have investigated the herbicidal efficiency of the SAP conjugate compared against that of commercial picloram formulations using the model plant Arabidopsis thaliana and found that when tested at agriculturally relevant doses between 0.58 and 11.70 mM a dose-dependent herbicidal effect with comparable kill rates was evident. CONCLUSION: Though self-assembling drug carriers are not new to the pharmaceutical industry their use for the delivery of agrochemicals shows great promise but is largely unexplored. We have shown that SAP may be used as an alternative to current surfactant-based agrochemical formulations and has the potential to shift present practises towards a more sustainable approach.


Asunto(s)
Agroquímicos/química , Portadores de Fármacos/química , Herbicidas/química , Picloram/química , Humanos , Interacciones Hidrofóbicas e Hidrofílicas , Micelas , Tamaño de la Partícula , Hojas de la Planta/metabolismo , Malezas/metabolismo , Polietilenglicoles/química , Tensoactivos/química
3.
Protoplasma ; 252(6): 1475-86, 2015 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-25712592

RESUMEN

Electron microscopy techniques such as transmission electron microscopy (TEM) and scanning electron microscopy (SEM) have been invaluable tools for the study of the micromorphology of plant cuticles. However, for electron microscopy, the preparation techniques required may invariably introduce artefacts in cuticle preservation. Further, there are a limited number of methods available for quantifying the image data obtained through electron microscopy. Therefore, in this study, optical microscopy techniques were coupled with staining procedures and, along with SEM were used to qualitatively and quantitatively assess the ultrastructure of plant leaf cuticles. Leaf cryosections of Triticum aestivum (wheat), Zea mays (maize), and Lupinus angustifolius (lupin) were stained with either fat-soluble azo stain Sudan IV or fluorescent, diarylmethane Auramine O and were observed under confocal laser scanning microscope (CLSM). For all the plant species tested, the cuticle on the leaf surfaces could be clearly resolved in many cases into cuticular proper (CP), external cuticular layer (ECL), and internal cuticular layer (ICL). Novel image data analysis procedures for quantifying the epicuticular wax micromorphology were developed, and epicuticular waxes of L. angustifolius were described here for the first time. Together, application of a multifaceted approach involving the use of a range of techniques to study the plant cuticle has led to a better understanding of cuticular structure and provides new insights into leaf surface architecture.


Asunto(s)
Lupinus , Microscopía Confocal , Epidermis de la Planta , Hojas de la Planta , Triticum , Ceras/análisis , Zea mays , Cromatografía de Gases , Procesamiento de Imagen Asistido por Computador , Lupinus/química , Lupinus/ultraestructura , Microscopía Electrónica de Rastreo , Microscopía Fluorescente , Epidermis de la Planta/química , Epidermis de la Planta/ultraestructura , Hojas de la Planta/química , Hojas de la Planta/ultraestructura , Coloración y Etiquetado , Triticum/química , Triticum/ultraestructura , Zea mays/química , Zea mays/ultraestructura
4.
ACS Appl Mater Interfaces ; 5(5): 1818-26, 2013 Mar 13.
Artículo en Inglés | MEDLINE | ID: mdl-23421455

RESUMEN

Agrochemical spray formulations applied to plants are often mixed with surfactants that facilitate delivery of the active ingredient. However, surfactants cause phytotoxicity and off-target effects in the environment. We propose the use of nanostructured liquid crystalline particles (NLCP) as an alternative to surfactant-based agrochemical delivery. For this, we have compared the application of commercial surfactants, di (2-ethylhexyl) sulfosuccinate and alkyl dimethyl betaine, with NLCP made from phytantriol, at concentrations of 0.1%, 1% and 5% on the adaxial surface of leaves of four plant species Ttriticum aestivum (wheat), Zea mays (maize), Lupinus angustifolius (lupin), and Arabidopsis thaliana. In comparison with the application of surfactants there was less phytotoxicity on leaves of each species following treatment with NLCP. Following treatment of leaves with NLCP analysis of cuticular wax micromorphology revealed less wax solubilization in the monocot species. The results clearly show that there are advantages in the use of NLCP rather than surfactants for agrochemical delivery.


Asunto(s)
Sistemas de Liberación de Medicamentos/métodos , Cristales Líquidos/química , Agroquímicos/química , Agroquímicos/farmacología , Arabidopsis/efectos de los fármacos , Química Farmacéutica , Sistemas de Liberación de Medicamentos/instrumentación , Lupinus/efectos de los fármacos , Nanoestructuras/química , Hojas de la Planta/efectos de los fármacos , Triticum/efectos de los fármacos , Zea mays/efectos de los fármacos
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