Return of Castor in North America

Castor, an oil seed crop is currently confined to oriental countries to a vast extent in terms of cultivation and oil production but the demand is constantly mounting from the western countries so as to produce precious chemical derivatives from it.It is a crop relatively suitable for cultivation in West as well but  has been strongly ignored on account of its toxic properties including allergens and toxins.Research efforts have been continuously made to overcome the defined, negatives of castor and yielded appreciable results in recent years particularly in USA.

Such committed actions in castor biology are not restricted to research levels but tend to proceed further when a collaborative agreement has been made between a Canadian bio-products company Lubbock-Castagra and Texas AgriLife Research to produce castor seed with less toxin and high, sustainable yield. Reports from concerned authourities said that  encouraging the crop improvement in castor would restore the abandoned castor cultivation with desired modifications in cropping patterns of the Texas state and directly reduce the burdens of import of this plant oil commodity from countries including India.CEO of Canadian Castagra-Lubbock, Mr:Peter Roosen further added that the oil extracted from this quantitatively toxin compromised, castor would be exploited for the production of renewable bioplastics and hence carrying a tremendous potential for the generation of employment in green technology sector.Presently,the castor crop with reduced levels of toxin is at the trial stage in Texas and evaluation studies are being undertaken for a bulk cultivation, expected in 2012.

It is inspiring to watch such an activity adopted by the legal bodies in developed nations to complement the defects what they are experiencing in their environment with respect to castor. Similar sort of co-ordinated plans are mandatory to maximize the revenues from castor in India.This is well punched with reference to the promotion of end derivatives of castor oil in which India is placed way behind the Westerners in the production tally.It not alone ensures economic exchanges of profits but depicts India an industrially competitive nation at the global level.

For reference: http://media-newswire.com/release_1152924.html

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New organelle discovery in castor

Castor plant is a complex biological system which can be characterized by the affluent magnitude of functional traits noticed in its life cycle.It becomes a routine process in the current day botanical sciences to scrutinize a biological phenomenon witnessed at morphological level of a plant species to its deep root cellular degree for absolute understanding.This scientific trend has been now applied in castor plant in the context of senescence physiology that is so prominently noticed in its life span.

Cytological analysis of castor plant cells has revealed a new sub-cellular compartment called ricinosomes whose biochemical evaluation specifically proteins as biomarkers led scientists to identify that it takes up its origin from endoplasimc reticulum.It seems to be an organelle comprehensively packed with proteins having proteolytic activity which is turn derived from paretal endoplasmic reticulum.Further,the scientists’ experimental designs over dominant protein members and their functional activation detected that ricinosomes are associated to apoptosis or programmed cell death in castor plant.

It is remarkable to notice a strange cell organelle and implicating it with a definite function.However it is equally significant to point the turn over of the organelle for a functional regulation in the system and revealing the associated bio-molecular members driving the ricinosomes of castor.

For Reference: http://www.pnas.org/content/98/9/5353.short

Castor oil derived eyewears

Castor oil is known well for its industrial applications and a new crown has been added up to  its credit when Italian fashion icon Gucci announced an eco-eyewear made from castor oil as a prime constituent.It has claimed that the rationale behind  the promotion of eco wears is to integrate environmental consciousness with fashion and further added that this latest eco-friendly product will perform on par to its synthetic counterparts.However no clear release of information has been made over the price of this elite product in the market.Reports say that Safilo Australia will overlook the commercial aspects of the eco-eyewear.It is optimistic to note a vital product in fashion, being made available on techno-economical and sustainable grounds.Functional efficacy of Castor oil yet again is proved and serves to be a true elixir in addressing the accessory demands of humans in a clean way.

For reference: http://www.ragtrader.com.au/news/gucci-invests-in-eco-eyewear

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Glyoxysomes driven castor seed germination

Castor seed development is a complex process in which the mother plant nutrients are stored in specialized tissues called endosperm of the seed as lipids which continue to nurture the embryo during the process of germination. The chemical principle that is followed by the seed system is the oxidation of reserve lipids to liberate energy rich sugars to achieve metabolic functional diversity until the seedling attains self-generation potential by photosynthesis and is proved scientifically to occur in specialized sub-cellular organelles called glyoxysomes in plant cells.

Researchers have made an experimental study to evaluate the catalytic factors accounting for the oxidation of lipids from the castor seed endosperm isolated glyoxysomes. The experimental design involves incubation of natural substrates with catalytic preparations under in vitro conditions and monitored time based synthesis of corresponding products and the scientists observation in this respect coincided with their hypothesis. Hence it led them to identify and implicate that catalytic enzymes of glyoxysomal origin are acting as key factors driving the synthesis of sugars for seed germination from stored lipids and also with regulation of oxidative stress in plants.

This is an unique experimental study attributing the significance of glyoxysomes to a fundamental physiological process of castor seed germination.

For reference: http://www.jbc.org/content/244/13/3514.short

Dynamics in genetic expression of castor allergen

Gene expression is a phenomenon by which bio-function to be exhibited is emerging from the genetic material of an organism.In this process, bio-systems have developed a property to express them in a regulated way for effective survival,development and energy conservation and regulated gene expression seems to be punched well in higher organisms.People nowadays regularly concentrate on molecular events in diverse biological subjects that are occurring at the cellular level for the differentially expressed biological functions which they witness at the gross morphological level. Progression in plant molecular sciences led to castor seed protein 2s albumin expression as a subject of study today for biologists.2s albumin is an abundant castor seed protein characterized to be potent allergen.

The researchers to address the expression pattern of concerned plant protein made use of different stages of castor seed, developed right after fertilization and exploited a real time expression profiling tool called quantitative polymerase chain reaction.The fingerprint of cDNA transcripts revealed a dynamic pattern in the mode of expression with highest degree of 2s albumin during the middle stages while the presence of it at the initial and maturation phases shows converse levels.The scientists however did not restrict there but proceeded further to generate a profile of active allergen and noticed some degree of relation with transcript.However the allergen contrastingly continued to thrive even after elimination of transcripts which posted an elusive operation of molecular mechanism in castor plant cells for a sustained existence of the allergen,2s albumin as multiple variants.

One thing certain from this study is a correlation between complex intermediary molecular events and phenotypes and hence assists us to better understand and manipulate the traits to our convenience.

For info: http://pubs.acs.org/doi/abs/10.1021/jf071272p

Functional significance for castor allergens

Castor seed has abundant level of proteins which are evolved spontaneously to serve the survival demands of the organism in response to the selection pressures. Among multiplicity in proteins, scientists have started focussing on three candidate proteins 2S namely albumins,Ric c1 and Ric c3 which have been earlier characterized as allergens for their biological significance.In general, bio-molecular functional definition can be arrived from analysis of its constituents and its spatial configuration that stood as bases for the functional implications in chosen castor proteins.The allergen proteins under study are found to contain a domain for digestive enzyme inhibition which made researchers to design an insect feeding bio-assay in insects Callosobruchus maculatus, Zabrotes subfasciatus, and Tenebrio molitor over their most optimal diet with parameters of insect larvae mortality and body mass gain from diet containing castor protein allergens .The results confirmed that a loss of body weight by one-fifth fraction compared to control lines which enabled researchers to arrive at the enzyme inhibitory activity from concerned plant proteins due to test domain in them.Further scientists claimed that the castor proteins are potential targets in the design of inhibitors with importance in crop protection and biomedical field.

The results seem to be promising for the feeding deterrent activity from castor proteins  but it would be convincing if an in vitro enzyme assay with gut enzymes against castor allergens and histopathological analysis of insect tissues for molecular complexes would have been performed for confirmed functional implication.

For further info: http://pubs.acs.org/doi/abs/10.1021/jf104638b

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Enzyme regulations in castor seed development

Enzyme’ characterization is important for understanding metabolism as their catalytic role and regulation determines the flow of mass and homeostatic control in biological systems. It is particularly pronounced well in case with enzymes associated with basic metabolic pathways which made a Canadian researcher to apply this fact in castor metabolism to study an enzyme called pyruvate kinase and its materialistic regulation by proteolytic enzymes in sub-cellular compartments called leucoplasts.

Proteins are in general regulated from their activities by proteolytic degradation,chemical modification,cell sequestration etc and pyruvate kinase chosen as model system in this scientific study was evaluated for its degradation by protease called cysteine endopeptidase.A crude preparation of protein fraction from castor endosperm over different developmental stages of castor seed was made. Protein profiling data revealed an accelerated degradation of the enzyme in wild preparations but when samples were treated with probe inhibitors specific for endopeptidases,a converse result was noticed, by which the researcher was able to conclude that it is the cysteine endopeptidase, acts as a negative regulator of pyruvate kinase in castor seed development, with temporal regulation in its activity inspite of a consistent synchronous existence with pyruvate kinase at the extra-plastid region.He further reported that a regularity in pyruvate kinase driven functional castor physiology was attributed to enzyme’s presence.

This is an interesting study in this oilseed crop where an entire picture of molecular events pertaining to vital enzymes has been presented and enables us to produce a resolved map in seed maturation and development.However attention is required to profile the associated molecular factors driving this complex phenomenon without generating an exaggerated  interwoven metabolic network to pose difficulties in selection and isolation of members in the cellular tie ups.

For reference: Plant Physiol. (1991) 97, 1334-1338

Profiling of castor toxin by genetic amplification

Ricin toxin is a threatening agent with significance in global warfare. Scientists have been working in the development of several distinct analytical methods for the detection of toxin with improved sensitivity and specificity  but they still tend to suffer from critical limitations especially under circumstances when direct immuno probe based protein toxin profiling was made in complex biochemical samples including food stuffs that resulted in ambiguities.It stood as one of the fundamental reasons which has diverted researchers to concentrate on genetic profiling of toxin in samples for precise interpretation.

US scientists have now developed a technique called real time PCR which targets the genetic material in samples.They applied a genetic probe specific for the toxin in DNA samples isolated from milk and egg for generating a fingerprint.Experimental results showed that their probe functioned relatively well and was able to detect toxin at concentrations of 5ng per ml of milk or liquid egg.It was also reported that negative interferences from the samples were obvious but researchers were quite content with the level of detection of sub-lethal doses of toxin in biological fluids.

It is interesting to watch technique such as this since the analysts were targetting the core biomolecule,DNA which permitted them to reduce the chemical complexity of samples by fractionation for convenient profiling. Nevertheless it is vital to note that advanced PCR systems are expensive and prone for producing artifacts, also demanding for skills in the preparation of quality samples and optimization of probes in the detection of multiple variants of ricin DNA from the genomic pools of biological sources standing at different loci.

For reference: http://pubs.acs.org/doi/abs/10.1021/jf0707738

Biosensor development for ricin toxin

Ricin detection in  biological samples is of great significance as the toxin is reported to be a candidate substance for intoxication in bio-terrorism, suicide etc.By classical methods people have exploited antibody based immuno probes for detection of test toxin in materials under observation.However it suffers from certain drawbacks including sensitivity,cross-reactivity,time and technical preparation.It prompted researchers around the world to surf for alternate probes in bio-sensor developments which can effectively circumvent these problems.

Scientists from Japan have made use of natural molecular interaction behaviour of toxin and designed a novel probe to profile the toxin.By applying knowledge in ligand-receptor chemistry of ricin in biological systems,they have designed a synthetic analogue that acts as a ligand to toxin.It was immobilized onto a solid matrix to serve in stationary phase and ricin incubation was performed.The toxin bound to the test probe was assessed by a special spectroscopic technique Surface Plasmon Resonance(SPR) which indicated ricin at concentrations of 5 pg/ml in 5 minutes which the authours claimed as a benchmark in biosensor designing.The results obtained from this new probe were further validated by alternate methods for specificity.

The experimental research work was exciting as a analysts have completed a broad study and generated promising results with cutting edge technologies in the qualitative and quantitative fingerprinting of castor toxin.A technique that is pointed in nature proportionately requires professional perfection for absolute analysis.

For reference:http://www.sciencedirect.com/science/article/pii/S0956566308004016

Candidate catalyst for ricin toxin activation

Ricin toxin from castor is a dimeric toxin and initially synthesized as a toxoid but found to be processed in castor beans during the course of seed development.As the protein is localized in the cellular sub components, protein bodies of seed endosperm, researchers from UK have made their experimental investigation on concerned cell organelles of storage function for the detection of molecular factor with catalytic potential to transform the inactive toxin to its lethally active phase.Protein profiling was adopted after isolation and fractionation of crude mixtures from protein bodies to identify the specific target and the results confirmed the materialistic presence of an acid endopeptidase enzyme.The functional relevance for this enzyme over toxin transformation was evaluated by in vitro assays where active toxin release was noticed  from its precursors.

Scientists from this study were able to detect a key candidate acting as an accelerator of ricin toxicity and offered us a solution to target the molecular components in castor with flexibility for producing non toxic seeds instead of a restricted direct focus over the toxin.However it is vital to understand the specificity in this toxin-catalyst association for precise targeting to improve the application potential of castor crop.

For reference: http://www.sciencedirect.com/science/article/pii/0168945285901116

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