Search Results Heading

MBRLSearchResults

mbrl.module.common.modules.added.book.to.shelf
Title added to your shelf!
View what I already have on My Shelf.
Oops! Something went wrong.
Oops! Something went wrong.
While trying to add the title to your shelf something went wrong :( Kindly try again later!
Are you sure you want to remove the book from the shelf?
Oops! Something went wrong.
Oops! Something went wrong.
While trying to remove the title from your shelf something went wrong :( Kindly try again later!
    Done
    Filters
    Reset
  • Discipline
      Discipline
      Clear All
      Discipline
  • Is Peer Reviewed
      Is Peer Reviewed
      Clear All
      Is Peer Reviewed
  • Item Type
      Item Type
      Clear All
      Item Type
  • Subject
      Subject
      Clear All
      Subject
  • Year
      Year
      Clear All
      From:
      -
      To:
  • More Filters
      More Filters
      Clear All
      More Filters
      Source
    • Language
301 result(s) for "Raphanus raphanistrum"
Sort by:
Evaluation of a laser diode array as an efficient approach to laser weeding
In-crop site-specific weed recognition systems have enabled precise and selective use of alternative nonchemical weed control technologies to provide much-needed support for weed management programs in large-scale cropping systems. Laser weeding has long been proposed, but only recently has it been commercialized as a highly precise, nonchemical weed control option for cropping systems. The weed control efficacy of several laser types (e.g., CO2, diode, fiber, and Nd:YAG) has been identified; however, no studies have investigated the use of readily available, high-power, low-cost consumer-grade laser diode arrays. The weed control efficacy of a 97-W, 445-nm laser diode array was investigated with the aims of evaluating 1) the irradiation energy requirement (as determined by treatment duration) of spot laser treatments required to control key grass (rigid ryegrass) and broadleaf (wild radish) weeds and 2) the influence of growth stage on energy requirement for annual ryegrass and wild radish control. Seedlings of rigid ryegrass and wild radish at growth stage 1 (GS1) were controlled by low laser energy densities of 0.2 to 0.5 J mm–2. As plant size increased, the energy densities required to control the seedlings increased substantially. For example, 2.0 J mm–2 was required to control GS4 rigid ryegrass, representing a 10-fold increase over that required for GS1 seedlings. Similarly aged but substantially larger wild radish seedlings remained mostly uncontrolled by 2.0 J mm–2 treatments. Wild radish was consistently more tolerant of laser treatments than annual ryegrass, but this difference was likely due to the more rapid growth rate that resulted in larger plants at the time of treatment, especially during warmer growing conditions. These results clearly define the potential for laser weeding using laser diode arrays and also identify the need for additional testing across a wider range of weed species with higher-powered, affordable diode arrays. Nomenclature: Rigid ryegrass; Lolium rigidum Gaud.; wild radish; Raphanus raphanistrum L.
A Systematic Review and Meta-analysis to Investigate the Correlation Vegetable Irrigation with Wastewater and Concentration of Potentially Toxic Elements (PTES): a Case Study of Spinach (Spinacia oleracea) and Radish (Raphanus raphanistrum subsp. sativus)
Water shortage and stress around the world lead to the reuse of wastewater in many sectors while the recycling of water in agriculture as one of the most consumed sectors can boost the contamination of crops by potentially toxic elements (PTEs). Therefore, this study was aimed to investigate the correlation between the accumulation of PTEs (Fe, Zn, Cr, Ni, Cu, Pb, As, Cd, and Se) in edible parts of spinach and radish plants and sewage irrigation by the aid of a meta-analysis. Moreover, the non-carcinogenic risk (N-CR) and carcinogenic risk (CR) for health risk assessment of consumers were assessed through actual total target hazard quotient (TTHQact) and carcinogenic risk (CRact). After the screening process, 51 articles with 75 studies were included. According to findings, the rank order of PTEs in spinach and radish were Fe > Zn > Cr > Cu > Ni > Pb > Cd > As > Se and Fe > Zn > Cr > Ni > Cu > Pb > As > Cd > Se, respectively. PTE adsorption by edible parts of spinach (leafy vegetable) was higher than radish. The health risk assessment shows that residents in Iran, India, and China are at N-CR while the population of Iran, India, and Pakistan are facing CR.
Simultaneous enhancement of carbon sequestration and crop productivity through excessive biochar application in root vegetable (Raphanus raphanistrum L.) cultivation
Biochar, a soil amendment, is gaining attention for its potential in enhancing carbon sequestration and improving soil fertility. The conventional application rate for biochar is 2 t ha − 1 ; however, achieving maximum carbon sequestration requires higher inputs, necessitating investigation into optimal application methods to sustain crop productivity. This study evaluated the impact of a 10-times higher biochar application (20 t ha − 1 ) on root vegetable ( Raphanus raphanistrum L.) cultivation and soil carbon sequestration, focusing on two methods broadcasting (O-BC) and band application (B-BC). The O-BC treatment improved root growth in Raphanus raphanistrum L. by increasing biomass and enhancing the uptake of P and K, thereby boosting productivity and nutrient assimilation. This demonstrates the key functions of P in energy transfer and root development, and K in osmoregulation and carbohydrate transport, which are crucial for root growth and development. The O-BC treatment offers the most balanced and robust enhancement of Raphanus raphanistrum L. growth and nutrient acquisition across plant parts. In contrast, the B-BC treatment provided only modest benefits, likely due to localized, high concentrations of biochar creating temporary imbalances in soil physicochemical properties (e.g., pH, EC) that limited optimal root development. The O-BC treatment resulted in greater biomass accumulation and enhanced P, K uptake in root tissue, leading to the highest yield (4.67 t ha⁻¹), followed by B-BC (4.51 t ha⁻¹) and the control treatment (4.28 t ha⁻¹). Biochar application at 20 t ha⁻¹ enhanced soil carbon sequestration, reaching 43.75 t ha⁻¹, which is 10 times the conventional amount. These findings demonstrate that a high amount of biochar applications with the optimal application method, can effectively overcome the potential risks of high-rate application and improve root vegetable productivity while simultaneously contributing to long-term climate mitigation through increased carbon sequestration.
Deterministic risk assessment of firefighting water additives to terrestrial organisms
Firefighting water additives are used to increase the rate at which fires can be extinguished. The majority of ecotoxicological research has focused on firefighting formulations containing perfluorinated compounds as additives, due to the persistence and bioaccumulative nature of the perfluorinated constituents. A number of relatively new additives have come on the market to replace the products containing perfluorinated compounds. The potential effect of these new additives on the environment has been largely unstudied. This study investigated the toxicity of six firefighting water additives: Eco-Gel™, ThermoGel 200L™, FireAde™, Fire-Brake™, Novacool Foam™, and F-500™ to terrestrial biota. Terrestrial organisms could be exposed to firefighting water additives through leaching into soil and/or runoff following a firefighting event or through direct aerial application during a forest fire. Toxicity to three plant species was assessed through seedling germination and emergence tests: Fagopyrum esculentum (buckwheat), Raphanus raphanistrum subsp. sativus (radish), and Rudbeckia hirta (black-eyed Susan). The effects of firefighting water additives on three soil invertebrates, the collembolan Folsomia candida , the earthworms Eisenia andrei , and Dendrodrilus rubidus , were also investigated using static acute tests to estimate EC 50 /LC 50 s. The concentration that resulted in a 50% reduction in survival (LC 50 ) for the acute toxicity tests conducted with F. candida ranged from 3 (Eco-Gel) to 0.175% (Novacool) by volume. Comparatively, the acute toxicity of two firefighting water additives to D. rubidus could not be determined, as a 50% reduction in survival was not observed. A number of firefighting water additives were found to pose a hazard to terrestrial organisms based on a worst-case exposure scenario of direct application at the greatest recommended application rate for a class A fire (e.g., wood, paper). The firefighting water additive F-500 was found to pose a hazard (HQ ≥ 1) for all species tested, except for the acute test conducted with D. rubidus . Comparatively, Eco-Gel posed a hazard for only the acute and chronic tests with F. candida . This study represents the first comparative deterministic risk assessment of firefighting water additives to terrestrial ecosystems.
Long-term persistence of crop alleles in weedy populations of wild radish (Raphanus raphanistrum)
Hybridization allows transgenes and other crop alleles to spread to wild/weedy populations of related taxa. Researchers have debated whether such alleles will persist because low hybrid fitness and linkage to domestication traits could severely impede introgression. To examine variation in the fates of three unlinked crop alleles, we monitored four experimental, self-seeding, hybrid populations of Raphanus raphanistrum x Raphanus sativus (radish) in Michigan, USA, over a decade. We also compared the fecundity of advanced-generation hybrid plants with wild plants in a common garden experiment. Initially, F₁ hybrids had reduced fitness, but the populations quickly evolved wild-type pollen fertility. In Year 10, the fecundity of plants from the experimental populations was similar to that of wild genotypes. Crop-specific alleles at the three loci persisted for 10 yr in all populations, and their frequencies varied among loci, populations and years. This research provides a unique case study of substantial variation in the rates and patterns of crop allele introgression after a single hybridization event. Our findings demonstrate that certain crop alleles can introgress easily while others remain rare, supporting the assumption that neutral or beneficial transgenes that are not linked to maladaptive traits can persist in the wild.
2,4-D and dicamba removal from the surface of plastic mulch using overhead irrigation: analytical analysis and cucurbit bioassay crop response
Glyphosate and paraquat are effective preplant burndown herbicide options for multicrop vegetable production that uses plastic mulch, but problematic weeds such as wild radish, cutleaf evening primrose, annual morningglory, or horseweed may not be adequately controlled with these herbicides alone. The herbicides 2,4-D and dicamba could help control these troublesome weeds prior to planting if they can be removed from plastic mulch and thus avoid crop damage. Treatments included 2,4-D (1,065 and 2,130 g ae ha–1) and dicamba (560 and 1,120 g ae ha–1) applied broadcast over plastic mulch a day before transplanting. Just before transplanting, treatments received either 0.76 cm of water via overhead irrigation or no irrigation. Plastic mulch samples were collected at application and planting to determine herbicide presence using analytical techniques, and cantaloupe and zucchini squash were subsequently transplanted on the plastic beds. Analytical ultra-high performance liquid chromatography revealed that 88% to 99% of the initial herbicide concentration was present at crop planting when irrigation was not implemented. At most, a 1/50 rate of dicamba and a 1/500 rate of 2,4-D was present at planting when overhead irrigation was applied prior to transplanting. Maximum cantaloupe and squash injury from 2,4-D with irrigation was 10% and did not influence plant growth, biomass, or yield. For dicamba with overhead irrigation, cantaloupe injury was 35%, vine lengths were reduced by 24%, and maturity was delayed, whereas squash injury ranged from 9% to 12%, with no influence on growth or yield. Without irrigation to wash herbicides from the mulch prior to planting, 60% to 100% injury of both crops occurred with both herbicides. Zucchini squash was more tolerant to dicamba than cantaloupe. Results demonstrated that 2,4-D can be adequately removed from the surface of plastic mulch with irrigation, whereas a single irrigation event was not sufficient to remove dicamba. Nomenclature: 2,4-D; dicamba; annual morningglory; Ipomea spp.; cutleaf evening primrose; Oenothera laciniata Hill; horseweed; Conyza canadensis (L.) Cronq.; wild radish; Raphanus raphanistrum L.; cantaloupe; Cucumis melo var. cantalupo (Ser.); zucchini squash; Cucurbita pepo (L.)
Herbivory and Maternal Effects: Mechanisms and Consequences of Transgenerational Induced Plant Resistance
Many plants induce defenses against herbivores following initial attack. Maternal effects associated with herbivory could mediate induced defenses across generations of plants if damaged plants produce more resistant progeny than undamaged plants. I report that wild radish plants (Raphanus raphanistrum) damaged by herbivores (Pieris rapae) or treated with a chemical elicitor of induced resistance (jasmonic acid) during the vegetative growth stage, induced resistance of the plants' progeny compared to controls. Conversely, clipping of leaves with scissors, which results in loss of photosynthetic area but not induced resistance, tended to increase susceptibility of progeny plants to P. rapae compared to controls. Progeny plants exhibited further induced resistance when damaged as seedlings, although maternally induced plants were less inducible than maternal-control plants. Herbivory in the maternal generation also affected the growth of progeny plants in two ways: (1) seed mass, which was influenced by maternal herbivory, strongly positively correlated with early plant growth; and (2) when seed mass was accounted for, maternal herbivory still had an effect on plant growth, but these effects varied by plant family. Taken together, these results demonstrate that the defensive phenotype of plants is determined, in part, by the maternal environment, and that this allocation can affect the growth trajectories of progeny.
Phenotypic plasticity in plant defense across life stages
As they develop, many plants deploy shifts in antiherbivore defense allocation due to changing costs and benefits of their defensive traits. Plant defenses are known to be primed or directly induced by herbivore damage within generations and across generations by long-lasting epigenetic mechanisms. However, little is known about the differences between life stages of epigenetically inducible defensive traits across generations. To help fill this knowledge gap, we conducted a multigenerational experiment to determine whether defense induction in wild radish plants was reflected in chromatin modifications (DNA methylation); we then examined differences between seedlings and reproductive plants in current and transgenerational plasticity in chemical (glucosinolates) and physical (trichomes) defenses in this species. Herbivory triggered genome methylation both in targeted plants and their offspring. Within one generation, both defenses were highly inducible at the seedling stage, but only chemical defenses were inducible in reproductive plants. Across generations, herbivory experienced by mother plants caused strong direct induction of physical defenses in their progeny, with effects lasting from seedling to reproductive stages. For chemical defenses, however, this transgenerational induction was evident only in adults. Transgenerational priming was observed in physical and chemical defenses, particularly in adult plants. Our results show that transgenerational plasticity in plant defenses in response to herbivore offense differs for physical and chemical defense and changes across plant life stages.
Effect of Raphanus raphanistrum on chronic kidney disease induced by ethanol in animal model rats
Abstract The aim of this study is to investigate the effect of Raphanus raphanistrum (radish) on chronic kidney disease damage by reactive oxygen species or free radicals in animal model rats. Total of 18 rats were used in this study, divided into 3 groups and each group consist of 6 rats. Group 1 control (C), group 2 model (M) and group 3 test (T). Model and test group were treated with alcohol to produce chronic kidney disease by reactive oxygen spices for 9 weeks a dose of 1 ml. After that test group was treated with Raphanus raphanistrum juice for 4 weeks 80mg/kg body weight to determine it effect. Raphanus raphanistrum juice effect on behavior of rats through increases the locomotor activity and anxiety. The serum creatinine and uric acid level were significantly improved in T group. The reactive oxygen enzyme test shows that Super Oxide Dismutase (SOD) and Glutathione Peroxidase (GPx) was increase in T group. The Glutathione S-Transferases (GST) and Catalase (CAT) enzyme level was nearly same in C and T groups. This study concludes that compound 1,1-diphenyl-2-picrylhydrazyl found in Raphanus raphanistrum juice and possess strong antioxidant activity on Chronic kidney disease induce by ethanol through reactive oxygen species. There is need of more researches to determine the use of natural compound to treat different disease. Resumo O objetivo deste estudo é investigar o efeito de Raphanus raphanistrum (rabanete) nos danos da doença renal crônica por espécies reativas de oxigênio ou radicais livres em ratos modelo animal. Um total de 18 taxas foi utilizado neste estudo, divididas em 3 grupos e cada grupo consistia em 6 ratos. Grupo 1 controle (C), grupo 2 modelo (M) e grupo 3 teste (T). O modelo e o grupo de teste foram tratados com álcool para produzir doença renal crônica por meio de especiarias reativas de oxigênio por 9 semanas, uma dose de 1 ml. Após esse teste, o grupo foi tratado com suco de Raphanus raphanistrum por 4 semanas 80 mg / kg de peso corporal para determinar seu efeito. Efeito do suco de Raphanus raphanistrum no comportamento de ratos por meio do aumento da atividade locomotora e ansiedade. A creatinina sérica e o nível de ácido úrico melhoraram significativamente no grupo T. O teste da enzima oxigênio reativa mostra que a Super Óxido Dismutase (SOD) e a Glutationa Peroxidase (GPx) aumentaram no grupo T. O nível das enzimas Glutationa S-Transferases (GST) e Catalase (CAT) foi quase o mesmo nos grupos C e T. Este estudo conclui que o composto 1,1-difenil-2-picrilhidrazil encontrado no suco de Raphanus raphanistrum possui forte atividade antioxidante na doença renal crônica induzida pelo etanol por meio de espécies reativas de oxigênio. Há necessidade de mais pesquisas para determinar o uso de compostos naturais no tratamento de diferentes doenças.
Seed Shattering: A Trait of Evolutionary Importance in Plants
Seed shattering refers to the natural shedding of seeds when they ripe, a phenomenon typically observed in wild and weedy plant species. The timing and extent of this phenomenon varies considerably among plant species. Seed shattering is primarily a genetically controlled trait; however, it is significantly influenced by environmental conditions, management practices and their interactions, especially in agro-ecosystems. This trait is undesirable in domesticated crops where consistent efforts have been made to minimize it through conventional and molecular breeding approaches. However, this evolutionary trait serves as an important fitness and survival mechanism for most weeds that utilize it to ensure efficient dispersal of their seeds, paving the way for persistent soil seedbank development and sustained future populations. Weeds have continuously evolved variations in seed shattering as an adaptation under changing management regimes. High seed retention is common in many cropping weeds where weed maturity coincides with crop harvest, facilitating seed dispersal through harvesting operations, though some weeds have notoriously high seed shattering before crop harvest. However, high seed retention in some of the most problematic agricultural weed species such as annual ryegrass ( Lolium rigidum ), wild radish ( Raphanus raphanistrum ), and weedy amaranths ( Amaranthu s spp.) provides an opportunity to implement innovative weed management approaches such as harvest weed seed control, which aims at capturing and destroying weed seeds retained at crop harvest. The integration of such management options with other practices is important to avoid the rapid evolution of high seed shattering in target weed species. Advances in genetics and molecular biology have shown promise for reducing seed shattering in important crops, which could be exploited for manipulating seed shattering in weed species. Future research should focus on developing a better understanding of various seed shattering mechanisms in plants in relation to changing climatic and management regimes.