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matured somatic embryos of Norway spruce

Submitted by Kateřina Eliášová on Tue, 03/27/2018 - 16:28
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AmaranthusanatomyantioxidantsappleapplesArabidopsis thalianaarracachaautophagyautophagy-related genesautophagy.related genesbeechbeechnutcalcium oxalateCannabis sativacarotenoidsCell densityChenopodiumchitinasesCleavage polyembryonyCommercial companiesCommercializationcytokinin derivativesdesiccationdevelopmentDisanthusdormancyDouglas-firDouglas firembryoembryogenesisembryogenic cultureFagus sylvaticaflavonoidsfloral iductionflow cytometryfloweringForest reproductive materialgene expressiongerminationglucanaseshemphistochemistryimage analysisimmunolabellinginductionIn vitro propagationin vitro regenerationlarchLarix eurolepismaritime pinemicropropagationmicroscopynon-embryogenic cellsNorway spruceorganogenesisoxidative stressphenolic acidsphenolicsphenolsphotoperiodphytohormonesPicea abiespolyaminespolyphenolic compoundsproliferationProtein patternproteomePseudotsuga menziesiiputrescineResearchrootsignallingsomaclonal variationsomatic embryogenesisspermidinesperminestarchstarch grainsstereologystorage compoundsstorage proteinsTechnology transferTissue culturetissue culturestobacco cell culturetranscriptometransformationUV-B irradiationUV-B radiationVegetative propagationWoody fruit cropsyaconzygotic embryoβ-1,3-glucanases

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The combination of compochar with soil (30 %) was found to positively affect the (i) soil moisture, (ii) crop yield, and (iii) nutritional properties of peas and beans and (iv) the ability of plants to withstand drought stress.
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