We explored the impact of inositol on cold stress in rapeseed, an essential oilseed crop affected by low temperatures. Notably, we found that inositol plays a significant role in enhancing cold tolerance in these plants by boosting calcium ion (Ca) influx.
Our study involved identifying various genes associated with inositol and analyzing their expression under cold conditions. Interestingly, inositol appeared to inhibit the expression of calcineurin B-like genes, which are involved in regulating calcium flow, suggesting a unique pathway through which inositol aids in cold resilience.
Additionally, when we overexpressed certain genes linked to calcium flux, we noted a stronger response to cold stress, further emphasizing the importance of the inositol-Ca pathway in facilitating cold tolerance in rapeseed. These findings not only deepen our understanding of how rapeseed copes with cold conditions but also present a potential strategy for enhancing crop resilience in the face of climate challenges.
Read More
9
MIOX gene enhances cold tolerance
Genome-wide identification of the myo-inositol oxygenase gene family in alfalfa (Medicago sativa L.) and expression analysis under abiotic stress.
We explored how myo-inositol oxygenase (MIOX), an important enzyme, might help alfalfa, a type of forage crop, adapt to challenging cold conditions. The study identified ten MsMIOX genes in the alfalfa genome, which were found distributed across three chromosomes.
Through analysis, we noted that these genes exhibited similarities in structure and conserved features, hinting at a functional role important for the plant's survival under stress.
Our qRT-PCR tests showed that different MsMIOX genes could be triggered by cold and other abiotic stress factors like drought and salinity. Notably, the activity of MIOX in alfalfa significantly increased under these harsh conditions.
By overexpressing the MsMIOX2 gene in yeast, we found that it notably enhanced resistance to cold stresses. Additionally, when MsMIOX2 was overexpressed in alfalfa’s hairy roots, it reduced reactive oxygen species and improved the plant's resilience against cold.
This study provides valuable insights into how inositol plays a part in helping alfalfa thrive even in cold weather, presenting a candidate for future efforts to enhance the plant’s stress tolerance.
Read More
9
Myo-inositol boosts cold tolerance
SlFHY3 and SlHY5 act compliantly to enhance cold tolerance through the integration of myo-inositol and light signaling in tomato.
We explored how low red to far-red light ratios influence cold tolerance in tomato plants. The focus was on two key proteins, SlFHY3 and SlHY5, which play a role in increasing the accumulation of myo-inositol, a compound linked with cold resistance.
Our findings revealed that when tomato plants experienced low light ratios, it encouraged the production of SlFHY3 under cold stress. Knocking out this gene led to lower myo-inositol levels and made the plants more vulnerable to cold, while overexpressing it had the opposite effect.
Moreover, we found that SlFHY3 works closely with SlHY5 to boost writing activity for a particular gene involved in myo-inositol synthesis. This interaction is crucial, as it significantly enhances both myo-inositol levels and the plants' ability to withstand cold conditions. Without these proteins or the inositol synthesis gene, the cold resistance we observed was diminished.
Ultimately, our study shines a light on the important relationship between light signals, inositol accumulation, and cold tolerance in tomatoes, unveiling how plants manage environmental stress.
Read More
Most Useful Reviews
9
Keeps shingles away
11 people found this helpful
I take this daily to keep cold sores and shingles at bay!
Read More
9
No cold sores
9 people found this helpful
Love these for cold sores. I have been taking these for about 9 months and haven't had a single cold sore yet! I usually get cold sores when stressed or with changes in weather and they have troubled me every few months since I was young. These really work.
Read More
10
Ideal remedy
2 people found this helpful
With a cold, there is nothing better than this remedy!!!
We explored the effects of myo-inositol and corn steep liquor (CSL) on cucumber and tomato seedlings, particularly focusing on their ability to withstand cold temperatures. Through our research, we found that applying these substances led to noticeable improvements in seedling growth during low-temperature stress.
Our treatments not only increased the levels of photosynthetic pigments, enhancing photosynthesis, but also reduced harmful compounds like malondialdehyde (MDA) and electrolyte leakage. This suggests that the combination of inositol and CSL helps to protect plant cells under stress.
Additionally, we confirmed these findings by analyzing the expression of important genes that relate to cold tolerance in cucumbers. The most effective mix we identified was 0.6 mL L of CSL together with 72 mg L of myo-inositol. Overall, this study gives us valuable insights into how we can use inositol and maize leachate to foster early growth in crops and improve their resilience against cold weather.
Read More
9
MIOX gene enhances cold tolerance
Genome-wide identification of the myo-inositol oxygenase gene family in alfalfa (Medicago sativa L.) and expression analysis under abiotic stress.
We explored how myo-inositol oxygenase (MIOX), an important enzyme, might help alfalfa, a type of forage crop, adapt to challenging cold conditions. The study identified ten MsMIOX genes in the alfalfa genome, which were found distributed across three chromosomes.
Through analysis, we noted that these genes exhibited similarities in structure and conserved features, hinting at a functional role important for the plant's survival under stress.
Our qRT-PCR tests showed that different MsMIOX genes could be triggered by cold and other abiotic stress factors like drought and salinity. Notably, the activity of MIOX in alfalfa significantly increased under these harsh conditions.
By overexpressing the MsMIOX2 gene in yeast, we found that it notably enhanced resistance to cold stresses. Additionally, when MsMIOX2 was overexpressed in alfalfa’s hairy roots, it reduced reactive oxygen species and improved the plant's resilience against cold.
This study provides valuable insights into how inositol plays a part in helping alfalfa thrive even in cold weather, presenting a candidate for future efforts to enhance the plant’s stress tolerance.
Read More
9
Myo-inositol boosts cold tolerance
SlFHY3 and SlHY5 act compliantly to enhance cold tolerance through the integration of myo-inositol and light signaling in tomato.
We explored how low red to far-red light ratios influence cold tolerance in tomato plants. The focus was on two key proteins, SlFHY3 and SlHY5, which play a role in increasing the accumulation of myo-inositol, a compound linked with cold resistance.
Our findings revealed that when tomato plants experienced low light ratios, it encouraged the production of SlFHY3 under cold stress. Knocking out this gene led to lower myo-inositol levels and made the plants more vulnerable to cold, while overexpressing it had the opposite effect.
Moreover, we found that SlFHY3 works closely with SlHY5 to boost writing activity for a particular gene involved in myo-inositol synthesis. This interaction is crucial, as it significantly enhances both myo-inositol levels and the plants' ability to withstand cold conditions. Without these proteins or the inositol synthesis gene, the cold resistance we observed was diminished.
Ultimately, our study shines a light on the important relationship between light signals, inositol accumulation, and cold tolerance in tomatoes, unveiling how plants manage environmental stress.
Read More
8
Inositol transporter's role in cold
The Vacuolar Inositol Transporter BvINT1;1 Contributes to Raffinose Biosynthesis and Reactive Oxygen Species Scavenging During Cold Stress in Sugar Beet.
We examined how inositol, a key component in the production of raffinose, plays a role in helping sugar beet plants withstand cold stress. In the study, researchers identified the vacuolar inositol transporter BvINT1;1, which seems to be critical for the synthesis of raffinose under chilly conditions.
When plants were exposed to cold, BvINT1;1 was found to be highly active, ensuring adequate inositol was available for raffinose production. Interestingly, sugar beet mutants that lacked functional BvINT1;1 not only had higher levels of inositol but also lower amounts of raffinose when subjected to cold stress.
This reduction in raffinose was significant because raffinose can help neutralize harmful reactive oxygen species (ROS), which accumulate when plants are stressed. As a result, these mutants showed increased expression of genes related to ROS, pointing out a potential risk for them during cold weather.
Overall, our findings suggest that the transporter BvINT1;1 is not just about moving inositol; it plays a vital role in boosting the plant's cold resilience by facilitating raffinose biosynthesis and maintaining balance against oxidative stress.
Read More
8
Myo-inositol aids cold resistance
Multi-omic dissection of the cold resistance traits of white water lily.
We delved into the fascinating world of white water lilies and their remarkable ability to withstand cold temperatures. This study aimed to understand how certain compounds, particularly myo-inositol, contribute to the plant's cold resilience.
Through a comprehensive examination, we learned that the water lily effectively copes with winter by entering a state called ecodormancy. During this time, the plant reallocates resources and enhances its defenses against cold stress.
One of our key findings was the significance of myo-inositol. This compound helps bolster the plant’s cold tolerance, although it works alongside various other factors. It plays a role in regulating metabolic activities, especially in relation to amino acids, which are crucial for overcoming chilly conditions.
Although our study highlighted the importance of myo-inositol, it did not isolate its effects from other treatments, which limits our understanding of its specific impact. Nevertheless, the insights we gained about the water lily’s adaptive strategies provide valuable information for future agricultural practices in cold climates.
I take this daily to keep cold sores and shingles at bay!
Read More
9
No cold sores
9 people found this helpful
Love these for cold sores. I have been taking these for about 9 months and haven't had a single cold sore yet! I usually get cold sores when stressed or with changes in weather and they have troubled me every few months since I was young. These really work.
Read More
10
Ideal remedy
2 people found this helpful
With a cold, there is nothing better than this remedy!!!
Read More
9
Prevents cold sore
2 people found this helpful
Big but effective! I got these for cold sores and canker sores. They are larger but go down easily! I take 2, three times a day during an active cold sore until a day after, and my cold sore NEVER formed, even though I could feel it trying to break through daily! I really like these and plan to always have a bottle on hand!
Read More
6
High-quality product
6 people found this helpful
These capsules are not hard pills and are high quality and effective. They help me with cold sores; I don’t need them all the time.
Cold is a term that refers to a state of low temperature, often associated with a perceptibly chilly environment or the sensation of being cool to the touch. Scientifically, cold is relative to the presence and movement of heat, which is a measure of energy within matter. In everyday terms, we experience cold through weather changes, such as during winter months, and it can also be described in the context of specific temperature ranges – for example, temperatures below 32 degrees Fahrenheit (0 degrees Celsius) generally signify freezing conditions, which can impact outdoor activities, personal comfort, and various ecological systems.
Moreover, the sensation of cold is not solely dependent on temperature; factors like humidity and wind chill can enhance the feeling of coldness. When discussing cold in terms of human health, prolonged exposure to cold conditions can lead to hypothermia or frostbite if body heat is not effectively maintained. Hence, it's crucial to dress appropriately and take necessary precautions during colder months to prevent adverse effects. Understanding the concept of cold can help individuals better prepare for seasonal changes and ensure their comfort and safety.
Inositol is a naturally occurring sugar alcohol that plays a crucial role in cellular signaling and the structural integrity of cell membranes. It is a member of the B-vitamin complex and exists in several forms, with myo-inositol being the most prevalent in the human body. Inositol is found in various foods, including fruits, beans, grains, and nuts, and it can also be synthesized by the body from glucose. It is often marketed as a supplement for various health benefits, including mental health support, particularly for conditions like anxiety and depression, and is studied for its potential role in managing polycystic ovary syndrome (PCOS).
Research suggests that inositol may help in alleviating symptoms associated with these health issues by enhancing insulin sensitivity and regulating hormonal balance. While it is generally considered safe for consumption, individuals should consult with healthcare professionals before starting any new supplement regimen, especially if they have existing health conditions or are taking other medications. As with any supplement, the effectiveness can vary from person to person, and understanding the underlying scientific evidence can guide informed choices.
Based on user reviews, the timeline for experiencing results from this supplement when dealing with a cold can vary, but many users report positive effects relatively quickly. For instance, one user stated that they have been using the supplement for several years and have noticed a significant reduction in the severity and duration of colds they are exposed to Read Review. Another reviewer shared that they felt their immune system became more resilient upon starting the supplement, indicating some immediate benefits during cold season Read Review.
While specific timeframes for noticeable effects are not consistently detailed, it seems that users appreciate the enhanced immune support that may help mitigate cold symptoms shortly after starting the supplement. Therefore, if you're looking for a potential boost in your body's defense against colds, many users advocate for taking it proactively when symptoms or seasonal changes begin to occur Read Review.
Recent studies indicate that myo-inositol plays an integral role in enhancing plants' cold tolerance, making it a potentially valuable supplement for boosting resilience against cold stress. For instance, one research involving cucumber and tomato seedlings demonstrated that the application of myo-inositol improved their ability to withstand low temperatures. The study found that this supplement not only increased seedling growth during cold stress but also reduced harmful compounds within the plants, suggesting protective benefits [2]. Additionally, myo-inositol's role was further emphasized in studies involving white water lilies and alfalfa, where it helped regulate metabolic activities necessary for overcoming chilling conditions [3] and enhanced resilience to cold stress through specific gene expressions [4].
Moreover, the capacity of myo-inositol to facilitate calcium ion influx and modulate related gene expressions has been observed in various plants, reinforcing its importance in managing cold stress responses. For instance, in studies conducted on rapeseed, inositol was noted to uniquely inhibit specific genes involved in calcium regulation, thereby supporting the plant’s cold resilience [5]. Collectively, these findings support the notion that myo-inositol supplementation could be beneficial for improving cold tolerance in various crops, although further research may be needed to verify its efficacy in different contexts and formulations.
Based on user reviews, many individuals have reported noteworthy improvements in their symptoms when using this supplement. A common theme is the reduction in the severity of cold symptoms. For instance, one user shared their experience of taking the supplement during an active cold sore situation and noted that despite feeling an outbreak trying to occur, no cold sore formed, which they attributed to the effectiveness of the product Read Review. Another reviewer emphasized that after consistently using the supplement, they saw a significant enhancement in their immune resilience, especially during the cold season, leading to a better ability to cope with seasonal illnesses Read Review.
Moreover, several users highlight the overall effectiveness of the supplement in boosting their immune system, with one long-term user mentioning that over the years, they have experienced fewer and less severe colds, often feeling "bulletproof" against various viral infections Read Review. Many users appreciate the absence of side effects, which contributes to a positive experience while using the supplement as a preventive measure against colds Read Review. While individual results can vary, the consensus among reviewers suggests a trend toward better immune health and milder cold symptoms when incorporating this remedy into their routine.
Based on user reviews, many individuals report positive experiences when combining this supplement with other remedies to manage their cold symptoms. One user noted that taking the supplement helped prevent a cold sore from forming during an active outbreak, highlighting its effectiveness when taken alongside other treatments for cold sores and canker sores Read Review. Additionally, users have expressed satisfaction with the supplement's role in bolstering their overall immune response during cold season, allowing them to feel more resilient against illnesses that typically arise during this time Read Review.
Moreover, a long-time user shared their experience of consistently taking the supplement, stating that they have maintained a strong immune system and have been able to navigate through cold exposure with minimal effects Read Review. Many users also appreciate the supplement's lack of side effects, making it a favorable addition to their routine when combining with other health measures for cold prevention Read Review. Overall, the consensus indicates that this supplement can enhance the effectiveness of other cold-related remedies while supporting immune health.
7.5
Immunity boost
2 people found this helpful
Bullet proof! I've been taking IP6 for several years now, and during this time, when exposed to colds of all shapes and sizes, they have either skirted around me, or the impact, if any, is short-lived and not as severe. It helps maintain a high level of immunity. Highly recommend!
7.5
Resilient immunity
1 people found this helpful
I started taking Jarrow Formulas Vegan IP6 and my impressions of the supplement are positive. I noticed that my immune system became more resilient. With the start of autumn, I was often sick, but with IP6 I felt better able to cope with seasonal colds. I appreciate its antioxidant properties, which have helped maintain my energy and overall well-being. The capsules are easy to take, and I didn't experience any side effects.
7.5
Effective immune support
1 people found this helpful
Good price! This is GREAT for my immune system. No side effects. Great if you get colds this time of the year.
9
Cold sore prevention
2 people found this helpful
Big but they work! I got these for cold sores and canker sores! They are larger but go down easily. I take 2, three times a day with an active cold sore and my cold sore NEVER formed, although I could feel it trying to break through. I really like these and plan to ALWAYS have a bottle on hand!
9
Myo-inositol boosts cold tolerance
Combined application of myo-inositol and corn steep liquor enhances seedling growth and cold tolerance in cucumber and tomato.
We explored the effects of myo-inositol and corn steep liquor (CSL) on cucumber and tomato seedlings, particularly focusing on their ability to withstand cold temperatures. Through our research, we found that applying these substances led to noticeable improvements in seedling growth during low-temperature stress.
Our treatments not only increased the levels of photosynthetic pigments, enhancing photosynthesis, but also reduced harmful compounds like malondialdehyde (MDA) and electrolyte leakage. This suggests that the combination of inositol and CSL helps to protect plant cells under stress.
Additionally, we confirmed these findings by analyzing the expression of important genes that relate to cold tolerance in cucumbers. The most effective mix we identified was 0.6 mL L of CSL together with 72 mg L of myo-inositol. Overall, this study gives us valuable insights into how we can use inositol and maize leachate to foster early growth in crops and improve their resilience against cold weather.
8
Myo-inositol aids cold resistance
Multi-omic dissection of the cold resistance traits of white water lily.
We delved into the fascinating world of white water lilies and their remarkable ability to withstand cold temperatures. This study aimed to understand how certain compounds, particularly myo-inositol, contribute to the plant's cold resilience.
Through a comprehensive examination, we learned that the water lily effectively copes with winter by entering a state called ecodormancy. During this time, the plant reallocates resources and enhances its defenses against cold stress.
One of our key findings was the significance of myo-inositol. This compound helps bolster the plant’s cold tolerance, although it works alongside various other factors. It plays a role in regulating metabolic activities, especially in relation to amino acids, which are crucial for overcoming chilly conditions.
Although our study highlighted the importance of myo-inositol, it did not isolate its effects from other treatments, which limits our understanding of its specific impact. Nevertheless, the insights we gained about the water lily’s adaptive strategies provide valuable information for future agricultural practices in cold climates.
9
MIOX gene enhances cold tolerance
Genome-wide identification of the myo-inositol oxygenase gene family in alfalfa (Medicago sativa L.) and expression analysis under abiotic stress.
We explored how myo-inositol oxygenase (MIOX), an important enzyme, might help alfalfa, a type of forage crop, adapt to challenging cold conditions. The study identified ten MsMIOX genes in the alfalfa genome, which were found distributed across three chromosomes.
Through analysis, we noted that these genes exhibited similarities in structure and conserved features, hinting at a functional role important for the plant's survival under stress.
Our qRT-PCR tests showed that different MsMIOX genes could be triggered by cold and other abiotic stress factors like drought and salinity. Notably, the activity of MIOX in alfalfa significantly increased under these harsh conditions.
By overexpressing the MsMIOX2 gene in yeast, we found that it notably enhanced resistance to cold stresses. Additionally, when MsMIOX2 was overexpressed in alfalfa’s hairy roots, it reduced reactive oxygen species and improved the plant's resilience against cold.
This study provides valuable insights into how inositol plays a part in helping alfalfa thrive even in cold weather, presenting a candidate for future efforts to enhance the plant’s stress tolerance.
8
Inositol enhances rapeseed cold tolerance
Inositol Improves Cold Tolerance Through Inhibiting and Increasing Ca Influx in Rapeseed ( L.).
We explored the impact of inositol on cold stress in rapeseed, an essential oilseed crop affected by low temperatures. Notably, we found that inositol plays a significant role in enhancing cold tolerance in these plants by boosting calcium ion (Ca) influx.
Our study involved identifying various genes associated with inositol and analyzing their expression under cold conditions. Interestingly, inositol appeared to inhibit the expression of calcineurin B-like genes, which are involved in regulating calcium flow, suggesting a unique pathway through which inositol aids in cold resilience.
Additionally, when we overexpressed certain genes linked to calcium flux, we noted a stronger response to cold stress, further emphasizing the importance of the inositol-Ca pathway in facilitating cold tolerance in rapeseed. These findings not only deepen our understanding of how rapeseed copes with cold conditions but also present a potential strategy for enhancing crop resilience in the face of climate challenges.
References
Berg J, Rodrigues CM, Scheid C, Pirrotte Y, Picco C, et al. The Vacuolar Inositol Transporter BvINT1;1 Contributes to Raffinose Biosynthesis and Reactive Oxygen Species Scavenging During Cold Stress in Sugar Beet. Plant Cell Environ. 2025. 10.1111/pce.15367
Sun S, Zhang X, Wang C, Yu Q, Yang H, et al. Combined application of myo-inositol and corn steep liquor enhances seedling growth and cold tolerance in cucumber and tomato. Physiol Plant. 2024;176:e14422. 10.1111/ppl.14422
Qiu P, Liu T, Xu Y, Ye C, Zhang R, et al. Multi-omic dissection of the cold resistance traits of white water lily. Hortic Res. 2024;11:uhae093. 10.1093/hr/uhae093
Guo W, Yu D, Zhang R, Zhao W, Zhang L, et al. Genome-wide identification of the myo-inositol oxygenase gene family in alfalfa (Medicago sativa L.) and expression analysis under abiotic stress. Plant Physiol Biochem. 2023;200:107787. 10.1016/j.plaphy.2023.107787
Yan L, Zeng L, Raza A, Lv Y, Ding X, et al. Inositol Improves Cold Tolerance Through Inhibiting and Increasing Ca Influx in Rapeseed ( L.). Front Plant Sci. 2022;13:775692. 10.3389/fpls.2022.775692
Wang F, Wang X, Zhang Y, Yan J, Ahammed GJ, et al. SlFHY3 and SlHY5 act compliantly to enhance cold tolerance through the integration of myo-inositol and light signaling in tomato. New Phytol. 2022;233:2127. 10.1111/nph.17934