Thank you, Enrique. It's great to have some reference points.
The genome will probably be in the 2-3 GB range, so my current setup definitely won't be enough. I'm surprised about the 3 weeks! On the Supernova website, they had some benchmarks, and nothing went above 3 days or so. What could make it take so long? I'm trying to get a rough idea of how much this would cost on AWS or if we should invest in a workstation for the lab.
I was just working on the genome size estimation today, but I'm a bit lost. I'm checking the FASTQ files, but I don't know how to tell out if they were generated through bcl2fastq or supernova/longranger mkfastq?
Thanks!
10x stopped supporting the "linked read" technology 4 years ago so you are going to have to work with
supernovaand hope that things will work with current versions of operating system (libraries etc can be an issue). You can try your luck with your lab comp first. Depending on the genome you are working with 128GB may be enough. I think those recommendations are for human sized genome.I don't recall if this data could be used on its own to generate a complete genome de novo assembly. It was meant to improve local regions/phasing of the genomes. Hope your data is good quality.
Thank you for answer!
I'm currently in the process of estimating the genome size, but I expect it to be in the 2-3 GB range. It's good to know that Supernova is the (only) way to go for de novo assembly with 10x Genomics data.
I did find a paper where they used 10x Genomics data and Supernova for de novo assembly, followed by MAKER and other tools for annotation, so at least I know it's possible.
Thanks again!