Search results for "Seed"

showing 10 items of 668 documents

L’usage de variétés de féveroles (Vicia faba L.) à faibles teneurs en vicine et convicine, réduit le risque du favisme chez l’homme hemizygote porteu…

2013

Low vicine and convicine content in faba bean seeds is under oligogenic control and can be easily monitored by breeding. Aim of the study was to show that new faba beans (FB) genotypes with low content of vicine and convicine (low V/C FB) produced by selection, are non-toxic and non-hemolytic even when ingested in large amounts by highly susceptible glucose-6-phosphate dehydrogenase (G6PD)-deficient individuals. Evidence indicates that V/C, amino-pyrimidine derivatives present in high amounts in normal FB, are the causative agents of favism, ie severe oxidative damage and hemolysis occurring in G6PD-deficient subjects after FB ingestion. In vitro, micromolar V/C elicits oxidative damage in …

[SDV] Life Sciences [q-bio][SDE] Environmental Sciencesvicineconvicine[SDV]Life Sciences [q-bio][SDE]Environmental Sciences[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal Biologyfaba bean seeds
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Importance of seeds in the process of common ragweed invasion

2012

International audience; Ambrosia artemisiifolia L. (common ragweed) was introduced into Europe at the end of the 1900s and is now present in several European countries. This annual invasive plant produces seeds that are highly polymorphic. Common ragweed can produce only a few thousand highly viable seeds. Many studies have focused on the seed stage. Greater seedling emergence for the seeds placed near the soil surface could explain the success of this species in open habitats, where the probability of deeper burial is low. Emergence percentage was found to decrease as burial depth increased from 2 to 8 cm, and no germination nor seedling emergence was observed for the seeds buried from 10-…

[SDV] Life Sciences [q-bio][SDV.SA.AGRO] Life Sciences [q-bio]/Agricultural sciences/AgronomySeedling emergence[SDV]Life Sciences [q-bio][SDV.SA.AGRO]Life Sciences [q-bio]/Agricultural sciences/AgronomyBurial depthGerminationInvasion success[SDV.SA.SDS]Life Sciences [q-bio]/Agricultural sciences/Soil study[SDV.SA.SDS] Life Sciences [q-bio]/Agricultural sciences/Soil studySeed weightAmbrosia artemisiifolia
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ENGAGED: System design of direct seedings under permanent cover crop without glyphosate

2022

Direct seeding under permanent cover crop (SDCV) corresponds to sow a crop in a multiyear vegetal cover crop(often clover) without soil perturbation. It is an emblematic technique of Conservation Agriculture whose agronomicand environmental interests are multiple because of the special attention paid to soils. However, the issue of weedcontrol and permanent cover crop control is central to SDCV culture systems. The use of non-selective herbicide suchas glyphosate is the most common technical lever for weed and cover crop management. Glyphosate is in the hotseat since the President of France announced its banning from 2023. It becomes necessary to find alternatives for thesustainability of t…

[SDV] Life Sciences [q-bio]glyphosatedirect Seedingweeds controlco-designpermanent covercroplow herbicidefarmers innovation tracking
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Dormancy and longevity of soil-buried weed seeds : from examples to generalization

2012

EA SPE EcolDur GEAPSI CT3 CT1EA SPE EcolDur GEAPSI CT3 CT1; The main part of the life-cycle of weeds, especially in cultivated fields, is spent as seeds buried in the soil. Longevity and dormancy are two major traits driving weed survival and infestation in the framework of crop rotation and management. Modelling allows inference of these key processes from morpho-anatomical description of the seeds, thus avoiding long-term germination studies of buried seeds over the years. Two new sets of experimental data on two different weeds offer the opportunity to compare actual results to predicted values. This study deals with cornflower (Centaurea cyanus), a winter weed of cereals and oilseed rap…

[SDV] Life Sciences [q-bio]modellingdormancy[ SDV ] Life Sciences [q-bio]longevity[SDV]Life Sciences [q-bio]Seedsfood and beveragesseed
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A holistic overview of the impact of sulfur deficiency in pea facing water deficit

2022

We report on the interplay between water deficit and sulfur deficiency, two constraints that are increasingly faced by crops due to climate change and low-input agricultural practices. In particular, we aim at better understanding the role of sulfur nutrition in the trade-off between seed quality establishment and plant stress tolerance in pea (Pisum sativum L.), a grain legume crop which has a pivotal role to play in both agroecological and food transitions. Like other legumes, pea is able to accumulate large amounts of seed proteins even in the absence of nitrogen fertilizers thanks to its symbiosis with N2-fixing soil bacteria. In this study, we deprived pea plants (cv. Caméor) of sulfur…

[SDV] Life Sciences [q-bio]networkseed proteinsleaf metabolismPisum sativumseed developmentsulfur deficiencywater deficitomics
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Approches de la nuisibilité du bleuet en colza d'hiver

2016

Infestation of oilseed rape fields by cornflower is more and more frequent, which could become harmful. In contrast, cornflower produces nectar that is a resource for pollinators and probably crop pest predators and parasitoides. In order to get benefit of this resource, it is necessary to determine a balanced equilibrium between the services and the weediness of cornflower in spite of destroying it. We describe here bispecific competition trials against oilseed rape in small experimental plots. Experimental conditions led to too high or too small plant densities to estimate a threshold of competition. Results provide relevant information on self-concurrence among cornflower plants and on i…

[SDV] Life Sciences [q-bio]nuisibilitébleuet[ SDV ] Life Sciences [q-bio]oilseed rape[SDV]Life Sciences [q-bio]cornflowercolzacompetition
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Parameterizing the "grassland" module in the multispecific model FlorSys

2013

EAEcolDurCT1; The multispecies model FlorSys can predict the effects of cropping systems on the dynamics of weed communities in annual crops ; however, it is not configured to predict the fate of weeds in permanent cover such as grasslands. We realized the simulation of a weed seed rain in controlled conditions to estimate the percentage of weed seeds intercepted by a grass cover. Parameters of this linear model will be used to develop a new sub model in FlorSys to be able to simulate weed dynamics in temporary grasslands. We used twelve weed species selected on the basis of specific morphological characteristics and observations made in the experimental set up of SOERE ACBB (Observatory En…

[SDV] Life Sciences [q-bio]seed rainmodel[ SDV ] Life Sciences [q-bio][SDV]Life Sciences [q-bio]seed traitgrasslandseed interceptionweed
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Role of vacuolar sulfate in nutritional quality of pea seeds

2022

Grain legumes have a key role to play in both agroecological and food transitions. Indeed, these plants are able to accumulate large amounts of proteins in their seeds even in the absence of nitrogen fertilization thanks to symbiotic N2 fixation in the root nodules. However, legumes are exposed to abiotic stresses, including nutrient deficiencies, making it important to optimize nutrient use efficiency for maintaining seed protein content and quality. Seed protein quality refers to the ability of the seed proteins to meet the body’s requirements for essential amino acids. It strongly depends on the amino acid balance, which determines protein digestibility. In pea (Pisum sativum) seeds, met…

[SDV] Life Sciences [q-bio]storage proteinsseed qualitysulfur amino acidsvacuolar sulfatePisum sativum
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Role of vacuolar sulfate in the nutritional quality of pea seeds

2022

Legumes have a key role to play in both agroecological and food transitions due to their ability to accumulate large amountsof seed proteins without nitrogen fertilization thanks to symbiotic N2 fixation in the root nodules. However, in agroecologicalsystems, legumes are more exposed to nutrient deficiencies, including sulfur deficiency, than in conventional systems, makingit important to optimize nutrient use efficiency for maintain seed protein quality, in particular the level of (semi) essentialamino acids like methionine and cysteine. These sulfur-containing amino acids are synthetized through the sulfur metabolicpathway starting from sulfate reduction. Sulfate is taken up from the soil…

[SDV] Life Sciences [q-bio]storage proteinsseed qualitysulfur amino acidsvacuolar sulfatePisum sativum
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Quantification of the contribution of weed seed predators to crop yield

2023

30 book of abstracts; International audience

[SDV] Life Sciences [q-bio]weed controlcarabidsfield experimentseed predation[SDV]Life Sciences [q-bio]crop productivity
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