scispace - formally typeset
Search or ask a question

Are there any reports of endophytic fungi isolated from kageneckia oblonga? 


Best insight from top research papers

Endophytic fungi isolated from Kageneckia oblonga have been reported in the literature. Tapia-Merino et al. identified three triterpenes from leaf extracts of Kageneckia oblonga, including a compound called Kc-III, which was determined to be fern-7-en-3β-ol (motiol) . Additionally, Elfita explored endophytic fungi from the root bark of sungkai, a medicinal plant, and found six isolates of endophytic fungi, with the best antibacterial and antioxidant activity exhibited by the RNA4 isolate, identified as Penicillium janczewskii . Therefore, there are reports of endophytic fungi isolated from Kageneckia oblonga in the literature.

Answers from top 4 papers

More filters
Papers (4)Insight
The provided paper does not mention any reports of endophytic fungi isolated from Kageneckia oblonga.
The provided paper does not mention any reports of endophytic fungi isolated from Kageneckia oblonga.
Open accessJournal ArticleDOI
01 Aug 2022
The provided paper does not mention any reports of endophytic fungi isolated from Kageneckia oblonga.
The provided paper does not mention anything about endophytic fungi isolated from Kageneckia oblonga.

Related Questions

What method should use to screen potassium solubilizing activity on endophytic fungi?4 answersTo screen potassium solubilizing activity in endophytic fungi, the method of choice involves isolating fungi from plant samples and testing their ability to solubilize potassium. This can be achieved by using selective agar media like Pikovskaya and Aleksandrov medium to isolate potential potassium solubilizing bacteria (KSB). Additionally, the method includes conducting tests to observe the formation of clear zones in Aleksandrov's medium, indicating potassium solubilization by the fungi. Furthermore, the screening process involves measuring the production of potassium by the isolates, such as phosphate and potassium levels obtained from the fungal cultures at specific time points. By following these steps, researchers can effectively identify and select endophytic fungi with potent potassium solubilizing capabilities for potential use as biofertilizers in agriculture.
Trichoderma koningiopsis endophytic fungi from?5 answersTrichoderma koningiopsis endophytic fungi have been isolated from various sources, including wild Hevea spp. in the Brazilian Amazon. The genomic features of T. koningiopsis suggest its potential as an endophytic fungus, with a complete mitochondrial genome containing conserved protein-coding genes and transfer RNA genes. Research on Trichoderma species, like T. koningiopsis, has shown that endophytic isolates possess a diverse range of metabolic gene clusters, indicating their ability to modify various metabolites. Additionally, novel polyketides with biological activities have been identified in T. koningiopsis, further highlighting its endophytic nature and potential biocontrol capabilities. Overall, Trichoderma koningiopsis endophytic fungi have been found in the Brazilian Amazon, demonstrating their diversity and potential for applications in plant disease management.
Isolation of endophytic bacteria from fruits5 answersEndophytic bacteria have been successfully isolated from various fruits in different studies. For instance, endophytic bacterial isolates were obtained from the seeds of atung fruit, showing potential as antibacterial agents against skin pathogens like Cutibacterium acnes. Similarly, endophytic bacteria were isolated from kiwifruit roots and leaves, displaying antagonistic abilities against root-knot nematodes in greenhouse conditions. Moreover, endophytic bacterial isolates were obtained from healthy banana trees, with certain isolates showing significant antagonistic activity against Fusarium verticillioides, a fungal pathogen causing crown rot in bananas. Additionally, endophytic bacteria were isolated from apple leaves in apple-producing areas, with various strains exhibiting abilities such as nitrogen fixation, phosphorus solubilization, and potassium dissolution, showcasing their potential as biocontrol agents and biofertilizers for crops.
Isolation and identification of endophytic bacteria5 answersEndophytic bacteria have been isolated and identified from various plant species in different regions. Studies have focused on plants like legumes in Duhok province, Okra in Salah El-Din-governorate fields, Lempuyang Wangi in Bengkulu Province, and Taxus in West Sumatra. Isolation methods included techniques like 16S rDNA sequencing, molecular diagnosis, and biochemical tests. The identified endophytic bacteria belonged to genera such as Bacillus, Pseudomonas, and Enterobacter, showing diverse species richness. These bacteria exhibited beneficial traits like antimicrobial activity, plant growth promotion, and insecticidal properties. The findings emphasize the potential of endophytic bacteria in agriculture, offering sustainable alternatives to traditional fertilizers and pesticides while promoting plant health and productivity.
Studies about endophytic fungi in Fabaceae family?5 answersEndophytic fungi in the Fabaceae family have been studied in several papers. Silva et al. identified 11 species of endophytic fungi in the leaves of Copaifera oblongifolia and evaluated their role in seed germination and seedling development. Dash et al. evaluated the ability of five fungal isolates from the genera Beauveria, Isaria, and Lecanicillium to colonize common bean plants and found positive effects on plant growth promotion. Fernandes et al. studied the fungal community associated with C. oblongifolia seeds and found that endophytic fungi were not isolated, suggesting that this species does not transmit endophytes vertically. Santos et al. isolated endophytic fungi from Indigofera suffruticosa leaves and found that Nigrospora sphaerica demonstrated antimicrobial activity, indicating its potential as a source of bioactive agents. Carvalho et al. studied the endophytic fungi associated with Stryphnodendron adstringens and found high richness and diversity, with several phylotypes displaying biological activities against bacteria, fungi, cancer cell lines, and Leishmania amazonensis.
Most common fungal endophytes in tropical trees ?5 answersThe most common fungal endophytes in tropical trees include species such as Aspergillus, Cladosporium, Corynespora, Drechslera, Eurotium, Gliocladium, Lasiodiplodia, Nigrospora, Nodulisporium, Paecilomyces, Penicillium, and Phoma. Lasiodiplodia spp. were found to be the most common among the minor endophytes and were isolated from 32 tree species in different forest types. Additionally, Capnodiales and Eurotiales were identified as the most OTU-rich clades, suggesting a high potential pathogen load in tropical trees. The class Leotiomycetes also presented a substantial proportion of bioactive molecules in endophytic fungi. These findings highlight the diversity and potential roles of fungal endophytes in tropical forests, including their ability to produce enzymes, antifungal metabolites, and other bioactive compounds.

See what other people are reading

WHAT is the current development of forest therapy around the world?
5 answers
Cannabinoids combination synergy and cancer
5 answers
Cannabinoids combination synergy and cancer
5 answers
What are herb holarrhena antidysentrica uses in diarrhea?
5 answers
Isolation of endophytes from hydroponics grown plant applications
5 answers
Chemicals in myrtaceae?
4 answers
Chemicals in myrtaceae?
4 answers
What are natural lipophilic molecules exhibiting antiallergic activity towards the human skin?
5 answers
What is herbal drugs?
5 answers
Herbal drugs are medications derived from plants and utilized for their therapeutic properties. These drugs have been historically significant, with evidence of their use dating back thousands of years. Herbal medicines are known for their safety, efficacy, and cultural acceptance, offering a wide range of benefits with fewer side effects compared to synthetic drugs. They contain bioactive compounds like phytochemicals, minerals, and biochemicals that contribute to their medicinal properties. However, it is crucial to be aware of potential interactions between herbal drugs and conventional medications to ensure safe and effective treatment. The interdisciplinary nature of herbal medicine encompasses various fields like botany, pharmacognosy, and Ayurveda, highlighting its broad scope and relevance in healthcare.
What are the potential benefits of using endophytes in sustainable agriculture?
5 answers
Endophytes, such as fungi and bacteria, offer various benefits in sustainable agriculture. They can enhance nutrient uptake, stress tolerance, and disease resistance in plants, leading to improved crop yields. Endophytic microbes play a crucial role in promoting plant growth, breaking dormancy, and producing growth-promoting metabolites. Additionally, they contribute to the breakdown of dormancy, increased mineralization, and availability of nutrients in plants. Endophytes also have the potential to mitigate environmental stresses like salinity, moisture, and drought, making them valuable for farming in marginal lands. Furthermore, these microorganisms can reduce the reliance on synthetic fertilizers and pesticides, offering a sustainable alternative in agriculture. Overall, utilizing endophytes in agriculture can lead to enhanced plant health, improved productivity, and reduced environmental impact.
What are the specific challenges and limitations associated with the practical application of endophytes in modern agriculture?
5 answers
The practical application of endophytes in modern agriculture faces several challenges and limitations. These include the difficulty in isolating underrepresented endophytes, the lack of genetic tools for in-depth research on plant-microbe interactions, and the gap between research and field applications of endophytic bacteria. Additionally, the registration and regulatory mechanisms for endophytic biocontrol agents pose hurdles in their commercial use. Despite their potential benefits in promoting plant growth, enhancing stress tolerance, and reducing the need for synthetic chemicals, the low awareness among plant growers about the role of endophytes and poor access to endobacterial bioproducts hinder their widespread adoption in agriculture. Addressing these challenges through collaborative efforts and advancements in biotechnological tools could unlock the full potential of endophytes in sustainable agriculture.