De novo synthesized gene libraries
De novo synthesized large libraries of nucleic acids are provided herein with low error rates. Further, devices for the manufacturing of high-quality building blocks, such as oligonucleotides, are described herein. Longer nucleic acids can be synthesized in parallel using microfluidic assemblies. Further, methods herein allow for the fast construction of large libraries of long, high-quality genes. Devices for the manufacturing of large libraries of long and high-quality nucleic acids are further described herein.
1. A nucleic acid cDNA library comprising nucleic acids synthesized based on instructions provided in a computer readable non-transient medium for synthesis of preselected cDNA sequences each having a full length sequence of at least 100 bases in length and collectively encoding for a plurality of genes, wherein each of the plurality of genes is a different genomic sequence that comprises at least one intron, wherein the plurality of genes are preselected, wherein at least 67% of the nucleic acids encode for the full length sequence of the preselected cDNA sequences compared to the preselected cDNA sequences provided in the instructions in the computer readable non-transient medium, wherein the variation in the amount of each of the nucleic acids is controlled, and wherein the variation is less than 50% between any two nucleic acids.
2. The nucleic acid cDNA library of claim 1 , wherein at least 89% of the nucleic acids are error-free compared to the preselected cDNA sequences provided in the instructions in the computer readable non-transient medium.
3. The nucleic acid cDNA library of claim 1 , wherein at least 70% of the nucleic acids encode for the full length sequence of the preselected cDNA sequences provided in the instructions in the computer readable non-transient medium.
4. The nucleic acid cDNA library of claim 1 , wherein at least 81% of the nucleic acids encode for the full length sequence of the preselected cDNA sequences provided in the instructions in the computer readable non-transient medium.
5. The nucleic acid cDNA library of claim 1 , wherein at least 89% of the nucleic acids encode for the full length sequence of the preselected cDNA sequences provided in the instructions in the computer readable non-transient medium.
6. The nucleic acid cDNA library of claim 1 , wherein the nucleic acids collectively encode cDNA sequences for at least 500 genes.
7. The nucleic acid cDNA library of claim 1 , wherein the nucleic acids collectively encode cDNA sequences for at least 10,000 genes.
8. The nucleic acid cDNA library of claim 1 , wherein each of the nucleic acids is 100 to 200 bases in length.
9. The nucleic acid cDNA library of claim 1 , wherein the nucleic acids are double stranded.
10. A nucleic acid library comprising at least 5000 nucleic acids synthesized based on instructions provided in a computer readable non-transient medium for synthesis of preselected cDNA sequences each having a full length sequence of at least 150 bases in length and collectively encoding for a plurality of genes, wherein each of the plurality of genes is a different genomic sequence that comprises at least one intron, wherein the plurality of genes are preselected, wherein at least 47% of the at least 5000 nucleic acids encode for the full length sequence of the preselected cDNA sequences provided in the instructions in the computer readable non-transient medium, wherein the variation in the amount of each of the nucleic acids is controlled, and wherein the variation is less than 50% between any two nucleic acids.
11. The nucleic acid library of claim 10 , wherein at least 64% of the at least 5000 nucleic acids encode for the full length sequence of the preselected cDNA sequences provided in the instructions in the computer readable non-transient medium.
12. The nucleic acid library of claim 10 , wherein the nucleic acid library comprises at least 10,000 nucleic acids.
13. The nucleic acid library of claim 10 , wherein the at least 5000 nucleic acids are double stranded.
14. The nucleic acid library of claim 10 , wherein each of the at least 5000 nucleic acids is attached to a structure.