摘要:
The present invention relates to innovative means of generating sequence-linked DNA fragments and subsequent uses of such linked DNA fragments for de novo haplotype-resolved whole genome mapping and massively parallel sequencing. In various embodiments described herein, the methods of the invention relate to methods of generating paired-end nucleic acid fragment sharing common linker nucleic acid sequences using a nicking endonuclease, a T7 endonuclease, a restriction enzyme, or a transposase, methods of analyzing the nucleotides sequences from the linked-paired-end sequenced fragments, and methods of de novo whole genome mapping. Thus, the methods of this invention allow establishing sequence contiguity across the whole genome, and achieving high-quality, low-cost de novo assembly of complex genomes.
摘要:
The present invention relates to innovative means of generating sequence-linked DNA fragments and subsequent uses of such linked DNA fragments for de novo haplotype-resolved whole genome mapping and massively parallel sequencing. In various embodiments described herein, the methods of the invention relate to methods of generating paired-end nucleic acid fragment sharing common linker nucleic acid sequences using a nicking endonuclease, a T7 endonuclease, a restriction enzyme, or a transposase, methods of analyzing the nucleotides sequences from the linked-paired-end sequenced fragments, and methods of de novo whole genome mapping. Thus, the methods of this invention allow establishing sequence contiguity across the whole genome, and achieving high-quality, low-cost de novo assembly of complex genomes.
摘要:
An electronic device includes an enclosure, and an airflow guiding duct. The enclosure includes a bottom panel. The airflow guiding duct is pivotably mounted to the enclosure. The airflow guiding duct includes a positioning portion. The bottom panel defines a sliding slot. A positioning opening is defined in the bottom panel communicating with the sliding slot. The positioning portion is used for being driven to slide along the sliding slot to move into the positioning opening when the airflow guiding duct is rotated.
摘要:
A mounting apparatus for mounting a data storage device includes a sliding member, a drive bracket, and a rotating member. The drive bracket includes a first side plate. A sliding groove is defined in the first side plate. The sliding member is received in the sliding groove. The rotating member is pivotally mounted to the first side plate. A curled piece and an arm are located on opposite ends of the rotating member. The arm defines a restricting room. The rotating member is adapted to rotate on the first side plate between a first position and a second position. In the first position, the curled piece abuts the first side plate and is elastically deformed by the first side plate, and the sliding member is disengaged from the restricting room. In the second position, the curled piece is released, and the restricting room receives and restricts the sliding member therein.
摘要:
A mounting apparatus for mounting a data storage device on a bracket includes a locating member fixed on the bracket. The bracket includes a sidewall defining a first through hole and a second through hole at a sidewall back. The sidewall defines a first fixing slot and a second fixing slot at a sidewall front. The data storage device defines a fixing hole. A fixing portion is located on a first end of the locating member corresponds to the first through hole, the second through hole and the fixing hole. A locking portion is located on a second end of the locating member corresponds to the first fixing slot and the second fixing slot. The data storage device is fixed on a first position and a second position of the bracket.
摘要:
A mounting apparatus assembly includes a data storage bracket, a computer enclosure, a mounting member fixed on the data storage bracket and a guiding rail fixed on the computer enclosure. A mounting portion is installed on the mounting member. A plurality of mounting slots is located on the guiding rail. When the bracket rotates relative to the computer enclosure, the mounting portion moves along the guiding rail and engages with the plurality of mounting slots, and the data storage bracket is installed at a required position on the computer enclosure.
摘要:
A mounting apparatus for mounting a data storage device on a bracket includes a locating member fixed on the bracket. The bracket includes a sidewall defining a first through hole and a second through hole at a sidewall back. The sidewall defines a first fixing slot and a second fixing slot at a sidewall front. The data storage device defines a fixing hole. A fixing portion is located on a first end of the locating member corresponds to the first through hole, the second through hole and the fixing hole. A locking portion is located on a second end of the locating member corresponds to the first fixing slot and the second fixing slot. The data storage device is fixed on a first position and a second position of the bracket.
摘要:
An electronic device with a storage device enclosure is disclosed. The electronic device enclosure comprises a chassis comprising a bottom plate and a side plate substantially perpendicular to the bottom plate; a securing member attached to the side plate and comprising a plurality of positioning slots; a bracket rotatably attached to the side plate about a pivoting axis substantially parallel to the bottom plate relative to the chassis; the bracket comprising a side panel substantially perpendicular to the side plate; a blocking portion located on the side panel, and the blocking portion being elastic and engaged in one of the plurality of positioning slots.
摘要:
Provided are methods and devices for single-molecule genomic analysis. In one embodiment, the methods entail processing a double-stranded nucleic acid and characterizing said nucleic acid. These methods are useful in, e.g., determining structural variations and copy number variations between individuals.
摘要:
Improved methods of genetic haplotyping and DNA sequencing and mapping, including methods for making amplified ssDNA, methods for allele determination, and a DNA barcoding strategy based on direct imaging of individual DNA molecules and localization of multiple sequence motifs or polymorphic sites on a single DNA molecule.