Automated DNA Extraction from Rice Leaves

Rice is one of the most important staple crops, belonging to the aquatic herbaceous plants of the Poaceae family. China is one of the original habitats of rice, widely cultivated in southern China and the Northeast region. With the advancement of science and technology, modern molecular biology techniques are extensively applied in rice research. Obtaining high-quality, high-purity rice genomic DNA lays a solid foundation for downstream genetic studies. The BigFish Sequence Magnetic Bead-Based Rice Genomic DNA Purification Kit enables rice researchers to extract rice DNA simply, quickly, and efficiently.

Rice Genome DNA Purification Kit

Product Overview:

This product utilizes a specially developed and optimized unique buffer system and magnetic beads with specific DNA binding properties. It rapidly binds, adsorbs, and separates nucleic acids while effectively removing impurities such as polysaccharides and polyphenolic compounds from plants. It is highly suitable for extracting genomic DNA from plant leaf tissues. Paired with the BigFish Magnetic Bead Nucleic Acid Extraction Instrument, it is ideal for automated extraction of large sample volumes. The extracted nucleic acid products exhibit high purity and excellent quality, making them widely applicable for downstream experimental research such as PCR/qPCR and NGS.

Product Features:
Safe and non-toxic: No need for toxic organic reagents such as phenol/chloroform

Automated high-throughput: Paired with a Beagle sequencing nucleic acid extractor, it can perform high-throughput extraction and is suitable for extracting large sample sizes

High purity and good quality: The extracted product has high purity and can be used for downstream NGS, chip hybridization and other experiments.

Compatible instruments: BigFish BFEX-32/BFEX-32E/BFEX-96E


Post time: Sep-11-2025
 Privacy settings
Manage Cookie Consent
To provide the best experiences, we use technologies like cookies to store and/or access device information. Consenting to these technologies will allow us to process data such as browsing behavior or unique IDs on this site. Not consenting or withdrawing consent, may adversely affect certain features and functions.
✔ Accepted
✔ Accept
Reject and close
X