Search results for "Endodermis"

showing 4 items of 4 documents

Electron Microscopic Studies of Spruce Needles in Connection with the Occurrence of Novel Forest Decline.

1988

Needles of four spruce trees showing different degrees of novel kinds of forest decline were investigated by electron microscopy. Green needles appearing at least superficially still intact were selected for the present investigation. Most of the mesophyll appeared to be undamaged. However, groups of atypical mesophyll cells were found close to the endodermis or the hypodermis. The chloroplasts of the apparently damaged cells were particularly affected. Changes in the matrix of the chloroplasts, i.e,. increased affinity to osmium, occurrence of extensive nests of plastoglobuli, as well as damage to the membranes, i.e. lesions in the envelope and abnormal thylakoid membranes, were observed. …

PhysiologyMembrane structurePlant ScienceBiologyMatrix (biology)law.inventionChloroplastMembranelawThylakoidBotanyGeneticsBiophysicsEndodermisElectron microscopeAgronomy and Crop ScienceCellular compartmentJournal of Phytopathology
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Chloramphenicol effects on adventitious root production by radish hypocotyls

1990

Abstract The excision of the root accelerates greatly the formation of adventitious roots in the hypocotyl of etiolated radish seedlings, but if the seedlings develop in CAP 1×10−4M, no adventitious root are induced after cutting. IAA either alone or associated with CAP, significantly increases the number of primordia in normal hypocotyls if given at the moment of cutting, while it has not stimulatory effect on the hypocotyls of seedlings grown in CAP. IAA has significant effect on both elongation and tickening of hypocotyl segments prepared from seedlings grown in CAP, and this could indicate a specific action of the inhibitor either on a particular process or on particular cells. The endo…

chemistry.chemical_classificationChloramphenicolfungifood and beveragesPlant ScienceBiologyHypocotylPericyclechemistryAuxinEtiolationBotanymedicinePrimordiumEndodermisElongationEcology Evolution Behavior and Systematicsmedicine.drugGiornale botanico italiano
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Root vacuolar sequestration and suberization are prominent responses of Pistacia spp. rootstocks during salinity stress

2021

Abstract Understanding the mechanisms of stress tolerance in diverse species is needed to enhance crop performance under conditions such as high salinity. Plant roots, in particular in grafted agricultural crops, can function as a boundary against external stresses in order to maintain plant fitness. However, limited information exists for salinity stress responses of woody species and their rootstocks. Pistachio (Pistacia spp.) is a tree nut crop with relatively high salinity tolerance as well as high genetic heterogeneity. In this study, we used a microscopy‐based approach to investigate the cellular and structural responses to salinity stress in the roots of two pistachio rootstocks, Pis…

Plant ScienceBiologyBiochemistry Genetics and Molecular Biology (miscellaneous)salinity tolerancePistacia integerrimasuberizationSuberinExodermispistachio rootstockEcology Evolution Behavior and Systematicsvacuolar sequestrationEcologyPistaciaexodermisfungiBotanyXylemfood and beveragesbiology.organism_classificationendodermisSettore AGR/03 - Arboricoltura Generale E Coltivazioni ArboreeSalinityHorticultureQK1-989EndodermisRootstockendodermis exodermis pistachio rootstock salinity tolerance suberization vacuolar sequestrationPlant Direct
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Casparian Strips in the Leaf Intrastelar Canals of Isoetes duriei Bory, a Mediterranean Terrestrial Species

2000

Abstract Anatomical observations, using light and fluorescence microscopy, were made on leaves of Isoetes duriei to verify the presence of casparian bands around the intrastelar canals. This peculiar anatomical feature, previously reported for some Isoetes species, is confirmed. The possible role of this endodermis-like structure, in the transport of water due to root pressure or in the accumulation of certain metabolites, is discussed in relation to the ecological and anatomical features of the species.

Mediterranean climatebiologySettore BIO/02 - Botanica SistematicaPlant ScienceIsoetes durieibiology.organism_classificationIsoetes duriei Lycopsida Mediterranean leaf anatomy endodermis casparian strips fluorescence microscopy evolution ecology water transportSettore BIO/01 - Botanica GeneraleRoot pressureIsoetesSettore BIO/03 - Botanica Ambientale E ApplicataBotanyEndodermisCasparian stripAnatomical featureAnnals of Botany
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