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·The role of bacterial endophytes in the acquisition of iron Fe solubilization and acquisition systems by plant associated microbes with respect to improving plant growth and health used to enhance the supply of iron often limiting nutrients to
·Siderophores are synthesized and secreted by many bacteria yeasts fungi and plants for Fe III chelation A variety of plant growth promoting bacteria PGPB colonize the rhizosphere and contribute to iron assimilation by plants These microorganisms possess mechanisms to produce Fe ions under iron deficient conditions Under appropriate conditions
·Organisms living in terrestrial ecosystems must be able to adapt to dry conditions that result from shifts in water availability due to diurnal and seasonal fluctuations 1 2 as sessile
·P is a component of the plant cytoplasm and nucleus and plays an important role in plant metabolism Xu et al 2022 ; when P is deficient the transportation of sugar in plants is hindered
·Fe is an important micronutrient that plays crucial roles in plant growth and development In nature plants may experience Fe deficiency due to low Fe supply and alkaline pH pH greater
·Copper Cu is an essential mineral nutrient for the proper growth and development of plants; it is involved in myriad morphological physiological and biochemical processes Copper acts as a cofactor in various enzymes and performs essential roles in photosynthesis respiration and the electron transport chain and is a structural component of
·The principle here is to exploit their natural role to help plant growth by facilitating their access to natural iron sources found in soils In a recent study three selected isolates closely related to Pseudomonas spp Enterobacter spp and Bacillus sp were able to solubilize insoluble iron containing compounds improving the growth of
·Iron Fe is an essential micronutrient for plant growth and development Fe availability affects crops productivity and the quality of their derived products and thus human nutrition Fe is poorly available for plant use since it is mostly present in soils in the form of insoluble oxides/hydroxide
·Potassium K is a vital macronutrient and has significant roles in plants like osmoregulation membrane potential regulation cotransport of sugars stress adaption and growth Sanyal et al 2020; Sardans and Peñuelas 2021 Multiple types of transport occur for the transport of potassium ion K but their regulation under low and high content in external
·Due to insoluble iron Fe sources in soil limited Fe availability leads to the disruption of the photosynthetic apparatus; this affects the growth and productivity of plants such as quince Cydonia oblonga that are very sensitive to low Fe growth promoting rhizobacteria PGPR play an important role in the regulation of Fe uptake under its limited
·Iron and nickel play a crucial role in biochemistry and are essential micronutrients for plants and humans alike also controversial elements because of debate on its essentiality or non
·Iron with oxide when applied on plant plays a proficient role in increasing the plant height nutrient status growth parameters and yield Zia ur Rehman et al 2018 Fe in low amount is used for detoxification of cell and crop improvement program
·Introduction Arbuscular mycorrhizal fungi AMF facilitate host plants to grow vigorously under stressful conditions by mediating a series of complex communication events between the plant and the fungus leading to enhanced photosynthetic rate and other gas exchange related traits Birhane et al 2012 as well as increased water
·Iron is one of 16 vital elements necessary for plants to grow and be healthy In the garden Iron is an important micronutrient Without Iron plants can t produce chlorophyll which gives them their healthy green color Iron is also responsible for moving oxygen throughout the plant Read on to learn more
·Iron Fe is an essential micronutrient that affects the growth and development of plants because it participates as a cofactor in numerous physiological and biochemical reactions As a transition metal Fe is redox active The role of iron and reactive oxygen species in cell death Nat Chem Biol 10 2014 pp 9 17 /nchembio
·One of the longest standing theories and therein based regulation model of plant root development posits the inhibitory action of auxin IAA indolylacetic acid on elongation growth of root cells
·Plant growth and development requires essential minerals and nutrients The morphological and physiological features of plants are defined by the specific role of each nutrient because they are associated with various fundamental metabolic processes Saito and Uozumi 2020; de Bang et al 2021 However the availability and solubility of nutrients in the soil
·As such apoplastic pH is a crucial lever in the growth defence trade off and has a critical role in the plasticity of the plant s responses to external cues; an acidic apoplast supports
·Photoperiod and micronutrient iron Fe are critical for plant growth and development However the interactive effects of Fe nutrition and photoperiod on tomato plant growth and fruit quality remain elusive In this study the tomato genotype Micro tom was used to explore the influence of different concentrations of exogenous Fe 0 100 150 200 μM Fe
·The role of iron in plants is as basic as it can get without iron a plant can t produce chlorophyll can t get oxygen and won t be green So what is iron The function of iron is to act much like it does in the human bloodstream helping to carry important elements through a plant s circulatory system
·Iron Fe is an essential micronutrient for plant growth development and plays a key role in regulating numerous cellular processes Iron as an important co factor for enzymes plays an important role in regulating plant photosynthesis mitochondrial respiration the synthesis and repair of nucleotides and metal homeostasis especially in the