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HS Code |
372416 |
| Scientific Name | Rhodopseudomonas Sp. |
| Cell Type | Gram-negative |
| Metabolism | Photoheterotrophic |
| Pigmentation | Purple non-sulfur |
| Morphology | Rod-shaped |
| Motility | Motile with polar flagella |
| Habitat | Aquatic environments |
| Optimal Ph | 6.8-7.5 |
| Optimal Temperature | 25-35°C |
| Oxygen Requirement | Facultative anaerobe |
| Nutrient Utilization | Uses organic compounds |
| Photosynthetic Pigments | Bacteriochlorophyll and carotenoids |
| Nitrogen Fixation | Ability to fix atmospheric nitrogen |
| Salt Tolerance | Moderate |
| Application | Bioremediation and wastewater treatment |
As an accredited Rhodopseudomonas Sp. factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | The packaging for Rhodopseudomonas Sp. features a sealed 1 kg silver foil bag with clear labeling, usage instructions, and safety information. |
| Shipping | Rhodopseudomonas sp. is shipped in sealed, sterile containers, typically as a liquid culture or lyophilized form. The packaging maintains appropriate temperature and light conditions, ensuring cell viability. Documentation, such as safety data sheets and handling instructions, accompanies the shipment. Compliance with biosafety and transport regulations is strictly followed. |
| Storage | Rhodopseudomonas sp. should be stored in a sterile, airtight container at 4°C under dark conditions to prevent contamination and maintain viability. For long-term storage, glycerol stocks can be prepared and kept at -80°C. Avoid repeated freeze-thaw cycles. Label all containers clearly with strain information and storage date for traceability and laboratory safety compliance. |
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Purity 99%: Rhodopseudomonas Sp. with purity 99% is used in aquaculture water treatment, where it significantly reduces ammonia and nitrite concentrations. Viable Cell Count 10^9 CFU/mL: Rhodopseudomonas Sp. with viable cell count 10^9 CFU/mL is used in organic wastewater bioremediation, where it achieves accelerated degradation of chemical oxygen demand (COD). pH Stability 6-9: Rhodopseudomonas Sp. with pH stability 6-9 is used in soil bioaugmentation, where it consistently enhances nutrient cycling across varied pH environments. Photosynthetic Activity ≥90%: Rhodopseudomonas Sp. with photosynthetic activity ≥90% is used in biofertilizer formulations, where it increases plant chlorophyll content and growth rate. Temperature Tolerance 10-40°C: Rhodopseudomonas Sp. with temperature tolerance 10-40°C is used in industrial effluent treatment, where it maintains high pollutant removal efficiency despite temperature fluctuations. Cell Diameter 0.5-1.0 µm: Rhodopseudomonas Sp. with cell diameter 0.5-1.0 µm is used in algal-bacterial consortia, where its size promotes optimal co-culture stability and synergistic effects. Shelf-life 12 months: Rhodopseudomonas Sp. with shelf-life 12 months is used in packaged microbial products, where it guarantees long-term viability for delayed application. Nitrogen Fixation Rate 30 mg/L/day: Rhodopseudomonas Sp. with nitrogen fixation rate 30 mg/L/day is used in sustainable agriculture systems, where it boosts soil fertility and plant nitrogen availability. Salinity Tolerance Up to 2% NaCl: Rhodopseudomonas Sp. with salinity tolerance up to 2% NaCl is used in saline aquaponics, where it sustains robust metabolic functions under salt stress conditions. Antibiotic Resistance Non-detectable: Rhodopseudomonas Sp. with antibiotic resistance non-detectable is used in probiotic feed additives, where it ensures biosafety and eliminates risk of resistance gene transfer. |
Competitive Rhodopseudomonas Sp. prices that fit your budget—flexible terms and customized quotes for every order.
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Working as a direct producer, we find that Rhodopseudomonas Sp. stands apart from many common industrial bacterial strains. In our facility, the journey begins at the isolation stage, where photosynthetic bacteria draw as much interest from our lab technicians as from the clients who rely on the finished product to solve problems no synthetic chemical can touch. Every batch is born through selective culture maintenance, fed with organic matter under controlled lighting, reflecting years of field feedback and problem-solving from wastewater treatment to agriculture.
Unlike generic bacteriological products often lumped together by resellers, Rhodopseudomonas Sp. operates on a very specific metabolic pathway. Our in-house isolates employ anaerobic photosynthesis, a property most evident in their colonies’ robust red-brown colors and subtle sulfurous scent. The organism’s core advantage for wastewater remediation comes from its capacity to metabolize organic acids, reducing chemical oxygen demand without the typical byproducts other microbe blends dump into effluent. This is what makes it desirable: not just as a cleaner but as a living tool for post-treatment in systems where accuracy outpaces brute biological force.
Our line offers high-density, active Rhodopseudomonas Sp. cultures, with cell concentrations calibrated per milliliter through optical density assessments. We maintain the population above industry benchmarks for living biomass counts to avoid the “lag phase” that slows down less disciplined preparations or off-brand imports. Every bottle rolls out the same: an actively respiring culture, ready to outcompete less specific bacteria on arrival at your plant or pond.
Much of what goes wrong for users of other biological agents hinges on the inconsistency of live cell count, especially with less controlled suppliers. Rhodopseudomonas Sp. only flourishes under cyclical illumination with nitrogen and carbon balancing that’s not a simple “set it and forget it” process. We monitor red and infrared light exposure and modulate feedstocks—from organic yeast extracts to trace minerals—based on what the bacteria signal. The result is a repeatable product where every unit performs, whether used for aquaculture pond balancing, garden biostimulation, or factory runoff.
We learned, through trial and error, that rush cultures—those sped up for short-term sales targets—create exopolysaccharide build-up and stunted colonies. Our method lets the bacteria grow at a natural rate, generating not just more cell mass but cells whose enzymatic systems function as intended in the field. Some products on the market arrive “cold” and appear inert until a day or two of reactivation; ours leaves the tank already working, shifting wastewater colors and clearing odors the same day. We ship under cold-chain logistics, monitoring viability through plating methods so that every batch maintains promised properties.
We focus on batch-to-batch stability, not just minimum labels. With Rhodopseudomonas Sp., the real test sits not in a lab spec sheet but at application: pond water going clear, chemical oxygen demand dropping, ammonia and H2S vanishing, and plants in hydroponics thriving with deeper color. The organism’s metabolic rates fluctuate depending on the targeted substrate—be it acetate, propionate, or naturally occurring fatty acids—so we tailor our fermenters to anticipate diverse user environments.
The bacterial solution contains concentrated live cells suspended in a sterile, buffered medium that maintains a neutral pH and osmolarity suitable for transfer to both fresh and saline systems. Having watched customers try substituting broad-spectrum probiotics or ordinary photosynthetic blends, we see where those approaches fail to produce rapid results against organic overload or sulfurous seepage. Our pure cultures flood the environment fast, occupying ecological niches that otherwise get scooped up by less beneficial organisms, which often multiply faster in polluted conditions but bring side effects.
From a practical perspective, our Rhodopseudomonas Sp. resists heat shock and pH fluctuations found after chemical disinfection steps at many facilities. While off-the-shelf powder blends often suffer viability loss after transport, our liquid suspensions stay active, so users do not need to prime tanks for hours before seeing results. This fluid format helps technicians apply it straight from container to process water or soil amendments, bypassing many common pitfalls our partners have flagged after working with alternative solutions.
When our solution is applied to industrial wastewater, there’s a measurable impact on effluent quality within twelve hours—long before other biological starters even register on test strips. In livestock lagoons and aquaculture basins, our clients report falling ammonia, stabilized pH, and, over the course of several weeks, a marked decrease in floating solids. The fact that Rhodopseudomonas Sp. naturally produces bacteriochlorophyll under red light gives it an edge in low-oxygen environments, where conventional aerobic decomposers lose activity.
On the horticultural side, hydroponic farmers using our cultures notice denser root mats and far less root browning than with traditional nitrogen-fixing additives. We don’t market the product simply as a “probiotic,” because doing so undersells its multi-pathway role: nitrogen cycling, phosphorus solubilization, and biofilm disruption. Quite a few early users tried comparing it with general pond clarifiers or generic photosynthetic blends. The biggest surprise for them was the quick end of rotten odor, since hydrogen sulfide and volatile organics get oxidized by these bacteria much faster than common lactic acid bacteria or thrown-together blends.
Fish and shellfish growers who operate systems with heavy feed loads rely on Rhodopseudomonas Sp. to check benthic sludge buildup. In one shrimp farm, a manager called in complaining about constant mortality after using imported dry “bioremediation” powders. After moving to our live suspension, they saw improved clarity, fewer mortality events, and better feed conversion rates within a single growing cycle, which they attributed to lowered toxin loads and a more stable microbiome. These real-world accounts push us to keep our cultures active, pure, and handled the way organisms demand, not what looks good on sales flyers.
Many competitors offer “blends” of vaguely defined purple non-sulfur bacteria or even toss in unrelated species for shelf life or marketing. This muddies results and creates unpredictability, especially if one microbe starts overtaking another in transit or storage. As the direct manufacturer, we focus exclusively on the Rhodopseudomonas Sp. lineage with sequenced backgrounds and single-colony derivation so contaminating strains do not disrupt performance.
Probably the most crucial advantage comes down to ecological competition. In sites with legacy pollution or high organic influx, non-specialist blends often get outcompeted by wild strains. Our customers don’t have to gamble on community drift because we grow bacteria specifically adapted to thrive in variable organics, high loads of acetate, or pond systems with little direct sunlight. By selecting strains that consistently express desired genes under shifting conditions, we give users a living “team” ready for action, not a roulette wheel of uncertain function.
During our own R&D, we compared commercially available blends against our pure-culture suspensions in an array of settings: factory wash-water, swine ponds, canal-side grow beds, and horticultural root baths. Time and again, pure Rhodopseudomonas Sp. survived, colonized, and delivered faster remediation, trimming organic loads and sulfurous off-gassing with fewer re-dos or dosage hikes. Others, especially off-label blends, tended to stall or sometimes stimulated filamentous blooms—a frustrating and costly scenario for users who expect a fix but get a new headache.
Direct feedback circles back into our process design. We’ve found that even long-term users occasionally “overdose” due to the visual intensity of color and aroma associated with a fresh bottle. Clarity, in our case, does not come from a showy appearance, but from tracking how much organic reduction occurs per day and calibrating application to seasonal temperature swings and runoff chemistry. For instance, after a surge of feedback from aquaculture clients facing monsoon dilution, we altered our standard concentration, reducing inert carrier to pack in higher live cell numbers per volume. This lets users maintain effect despite dilution, a problem standard blends cannot solve with packet format alone.
A number of farm and industrial sites lack precision tools for application, which influences how we prepare our cultures for resilience, not just “peak” performance under ideal lab conditions. We keep records on every batch, running side-by-side field samples and reserve portions for late-stage quality appraisals. We learned early that sterility alone is not enough—bacteria need metabolic readiness and field-hardened expression before they touch the end site. So we hold back shipping until cultures cross pre-set thresholds in ammonium reduction and photo-response, tested at the plant and confirmed in smaller pilot waters.
Every industry site presents its own set of challenges. In textile washing, Rhodopseudomonas Sp. becomes a specialist at cutting dyes and residual starch loads. In animal feedlots, it drops odor and stabilizes pond turbidity where traditional chemical flocculants only mask problems for a day. Horticulturists mixing our product into nutrient baths report healthy root systems, even under high nitrate loads, without the biofilm overgrowth that interrupts oxygen transfer or clogs drippers.
Rhodopseudomonas Sp. breaks down organic acids, amino compounds, and certain sulfides using phototrophic metabolism. In practice, this flexibility lets the organism remediate wastewater even in relatively low-light environments—think covered lagoons or shaded holding tanks—where mainstream “pond clarifiers” or non-photosynthetic bacteria stall out. As a result, the product sees use from small market gardens to multi-acre fish farms struggling with chronic buildup and fouling.
One concern we frequently address is the notion of safety regarding both product use and ecosystem impact. Our strains have a proven record of environmental compatibility, being naturally present in unimproved soils and non-toxic to higher organisms like fish and shrimp. We do not genetically modify these strains—they are bred for vigor under standard, controlled laboratory and field conditions, and nothing leaves our tanks unless it passes checks for known contaminants, virulence factors, or antibiotic resistance markers. For technical managers, this means integrating our solution does not mean introducing new hazard risks, only rebalancing a microbial ecosystem that’s already existed in most natural environments.
We often hear comparisons to garden-variety “probiotic” packages or yeast blends. In reality, the distinction shows up in action and user experience, not just on labels. Many such packages dilute effect by spreading bacterial diversity thin, aiming for a jack-of-all-trades approach. Our focus on Rhodopseudomonas Sp. achieves something they do not: persistent, aggressive adaptation to high-organic, low-oxygen situations that sideline regular probiotics. Instead of a weak, generalized improvement, users report noticeable transformations—a reduction in organic matter, elimination of unpleasant odors, and visible clearing of water, all within a matter of days.
Unlike powdered packets that need unpredictable activation periods or dry cakes that sometimes never fully resuscitate, our product arrives fully alive. This saves operational downtime—not only for large-scale factories but also for small growers who cannot afford trial-and-error application. We do not rely on added chemicals or “boosters” to inflate short-term results; working with pure-culture suspensions maintains natural metabolic vigor, decreasing dependence on follow-up treatments or chemical correctives.
For users in agriculture and environmental remediation, our product sidesteps the rate of failure seen with hastily-prepared blends. Issues such as culture die-off before field application, or the propagation of off-target byproducts (like excess slime or excess nitrate), stay in the rearview mirror. Only Rhodopseudomonas Sp. delivers consistent biotransformation due to its evolutionary background, shaped by natural selection to thrive on organic loads and marginal energy sources. Our production team stays with the organism’s demands—temperatures, feeds, and stress checks—because those details deliver recognizable improvements at your site.
Part of our work as a manufacturer goes beyond shipping a product. Many clients reach out asking how to adapt use in tough environments, like low-light months, unusually high ammonia surges, or following chemical accidents. We don’t hand off a bottle and leave users guessing. Through open communication—direct with field staff and managers—we track feedback and keep evolving what the product delivers. Several times, working alongside customers, we found ways to pulse-feed, or combine partial treatments to keep the bacteria thriving even as conditions shift unexpectedly. This continuous dialogue ensures the solution remains practical, rather than a one-size-fits-all promise that falls flat.
Groups looking for cost savings often try cheaper alternatives, but later discover downtime, recurring odor, or cloudy water returns. In our experience, investing in pure, reliable Rhodopseudomonas Sp. pays off through reduced ongoing inputs and less time spent troubleshooting. Our approach to customer support centers on real troubleshooting—comparing field photos, running side-by-side bottle checks, or discussing temperature and water chemistry. Where “big brand” offerings offer no feedback loop, we supply both the high-grade culture and insight drawn from years of real-world use, so users can optimize effect with their available resources.
By keeping all cultivation, formulation, and quality steps under one roof—from seed isolate to finished product—we control not just cell count but also the “fitness” of every batch. We invest in improved light systems and fermenter monitoring so that Rhodopseudomonas Sp. keeps adapting. The challenges on the ground keep changing as regulations tighten, runoff patterns shift with weather, and client needs evolve. Our production process stays flexible, responsive, and science-driven, with every batch an answer to feedback from the industrial, ag, and pondcare communities using it.
This hands-on approach means clients receive more than a bottle or box—they get a direct line to the people who know every detail of the culture, every odd troubleshooting case, and every new way the bacteria can help cut costs or improve outcomes. By sticking close to the organism’s actual needs and the realities of field application, we make Rhodopseudomonas Sp. not just a product, but a partner in the ongoing work of managing water, improving crops, and restoring waste streams to something cleaner.