---
author:
- contributor_roles: []
  family: Edmunds
  given: Scott
  url: https://orcid.org/0000-0001-6444-1436
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container: GigaBlog
date: '2020-02-04T00:00:00+00:00'
date_updated: '2025-12-06T10:19:58+00:00'
guid: http://gigasciencejournal.com/blog/?p=3223
identifier: https://doi.org/10.59350/qh3na-ehy20
image: http://gigasciencejournal.com/blog/wp-content/uploads/2020/02/Coronavirus-300x221.jpeg
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keywords:
- Medicine
- Coronavirus
- Ebola
- Guest Post
- Infectious Disease
lang: en
license: https://creativecommons.org/licenses/by/4.0/legalcode
rid: aw634-a1a85
rights: https://creativecommons.org/licenses/by/4.0/legalcode
summary: <em> <strong> With much of the GigaScience team spanning the Hong Kong-Shenzhen
  border and now confined to remote working, the current 2019-novel coronavirus outbreak
  has been particularly disruptive and close to home. </strong> </em>
title: 'Guest Blog: Data in the time of Coronavirus'
url: https://wayback.archive-it.org/22098/2025-05-01T17:13:42Z/http://gigasciencejournal.com/blog/guest-blog-coronavirus-data
version: v1
---

![Coronavirus data
forcasting](http://gigasciencejournal.com/blog/wp-content/uploads/2020/02/Coronavirus-300x221.jpeg){.alignright
.wp-image-3224 loading="lazy" decoding="async"
srcset="http://gigasciencejournal.com/blog/wp-content/uploads/2020/02/Coronavirus-300x221.jpeg 300w, http://gigasciencejournal.com/blog/wp-content/uploads/2020/02/Coronavirus-768x565.jpeg 768w, http://gigasciencejournal.com/blog/wp-content/uploads/2020/02/Coronavirus-1024x753.jpeg 1024w"
sizes="(max-width: 318px) 100vw, 318px" width="318" height="234"}***With
much of the GigaScience team spanning the Hong Kong-Shenzhen border and
now confined to remote working, the current 2019-novel coronavirus
outbreak has been particularly disruptive and close to home. As with
previous [WHO \"public-health emergency of international
concern\"](https://www.who.int/news-room/detail/30-01-2020-statement-on-the-second-meeting-of-the-international-health-regulations-(2005)-emergency-committee-regarding-the-outbreak-of-novel-coronavirus-(2019-ncov))
such as Ebola and Zika, data has provided a potent tool in fighting both
the outbreak, and the conspiracy theories that have filled the
information gaps caused by poor communication and lack of trust in local
governments. Compared to previous outbreaks, we are potentially better
equipped to more rapidly fill in these information gaps. With real-time
visualization of cases and results using tools like
[healthmaps](https://www.healthmap.org/ncov2019/), [JHU Global Case
dashboard](https://gisanddata.maps.arcgis.com/apps/opsdashboard/index.html#/bda7594740fd40299423467b48e9ecf6),
forkable [method sharing via
protocols.io](http://dx.doi.org/10.17504/protocols.io.bbmuik6w), and
[Nextstrain](https://nextstrain.org/ncov), [forums like
virological.](http://virological.org/) And the rise of preprints for
sharing of results, bioRxiv & medRxiv having [48 Coronavirus submissions
at time of
posting](https://www.biorxiv.org/search/text_abstract_title%3A2019-ncoV%20text_abstract_title_flags%3Amatch-all%20jcode%3Amedrxiv%7C%7Cbiorxiv%20numresults%3A10%20sort%3Arelevance-rank%20format_result%3Astandard)
(and causing some controversy with unreliable submissions, but seeing
them debunked and [retracted much
faster](https://www.statnews.com/2020/02/03/retraction-faulty-coronavirus-paper-good-moment-for-science/)
than [traditional peer reviewed
publications](https://www.sciencemag.org/news/2020/02/paper-non-symptomatic-patient-transmitting-coronavirus-wrong)).***

***![Coronavirus data
sifter](http://gigasciencejournal.com/blog/wp-content/uploads/2020/02/DSC03802-300x200.jpg){.wp-image-3235
.alignleft loading="lazy" decoding="async"
srcset="http://gigasciencejournal.com/blog/wp-content/uploads/2020/02/DSC03802-300x200.jpg 300w, http://gigasciencejournal.com/blog/wp-content/uploads/2020/02/DSC03802-768x513.jpg 768w, http://gigasciencejournal.com/blog/wp-content/uploads/2020/02/DSC03802-1024x684.jpg 1024w, http://gigasciencejournal.com/blog/wp-content/uploads/2020/02/DSC03802.jpg 1616w"
sizes="(max-width: 257px) 100vw, 257px" width="257" height="171"}Trying
to digest some of these data streams and following [previous
blogs](http://gigasciencejournal.com/blog/guest-blog-the-2014-ebola-epidemic-approaches-and-resources-to-slow-the-spread-of-infection/)
[on the
Ebola](http://gigasciencejournal.com/blog/guest-blog-the-ebola-epidemic-revisited-where-are-we-in-2015/)
and
[Zika](http://gigasciencejournal.com/blog/guest-blog-mind-zika-data-gap/)
epidemics, we present another data oriented guest post from Michael Dean
who has pooled together these various data streams to present a
non-specialist view of the Coronavirus crisis. Michael is a researcher
in the areas of human genetics and cancer. He has worked on the
understanding of the role of host genetics in the response to HIV as
well as cervical cancer and HPV. \[Note: the material presented here is
from Michael\'s own perspective on the public Coronavirus data and does
not represent the viewpoint of his employer\].***

::: {#attachment_3228 .wp-caption .alignright style="width: 301px"}
![Coronavirus data
plotted](http://gigasciencejournal.com/blog/wp-content/uploads/2020/02/Screenshot-2020-02-04-at-11.31.58-PM-291x300.png){.size-medium
.wp-image-3228 loading="lazy" decoding="async"
aria-describedby="caption-attachment-3228"
srcset="http://gigasciencejournal.com/blog/wp-content/uploads/2020/02/Screenshot-2020-02-04-at-11.31.58-PM-291x300.png 291w, http://gigasciencejournal.com/blog/wp-content/uploads/2020/02/Screenshot-2020-02-04-at-11.31.58-PM.png 692w"
sizes="(max-width: 291px) 100vw, 291px" width="291" height="300"}

Table 1. Reported cases and deaths from 2019-nCoV. Source JHU CSSE
:::

At the start of the Year of the Mouse, the world is experiencing an
outbreak of a new Coronavirus, for now, called 2019-nCoV. As of February
4th ([source JHU CSSE
dashboard](https://gisanddata.maps.arcgis.com/apps/opsdashboard/index.html#/bda7594740fd40299423467b48e9ecf6))^,^
there are 20,679 confirmed cases and 427 fatalities. Nearly 99% of the
cases have been reported in China mostly in Hubei Province; and all
except two reported fatalities have occurred in Mainland China. All the
initial cases came from the city of Wuhan, the capital of Hubei, in
Central China, but the origin of the virus is unknown. The case fatality
rate (fatalities/total cases, CFR), based on reported data has been
declining from nearly 3% to 2% as more data has become available, but is
less than 2% in China, outside of Hubei. This is considerably lower than
SARS (9.6%)^1^ and MERS (9-36%)^2^

The first full-length reference genome for the virus was deposited in
[GENBANK as NC_045512](https://www.ncbi.nlm.nih.gov/nuccore/NC_045512.2)
by scientists at Fudan University, Shanghai, China, and referred to as
the Wuhan seafood market pneumonia virus, as many of the initial cases
were linked to a market of seafood and animals in the city of Wuhan.
Multiple additional complete genomes have been deposited in GENBANK by
the researchers within China and internationally including the US
Centers for Disease Control (CDC). Additional isolates (62 in total at
the time of posting) have been [deposited in
GISAID](https://www.gisaid.org), a public repository of influenza virus
sequences . Variation and evolution of the virus are being followed by
an open-sourced project tracking pathogen evolution,
[Nextstrain](https://nextstrain.org/). To date, the virus has shown few
variable sites and low diversity.

::: {#attachment_3225 .wp-caption .aligncenter style="width: 809px"}
![Coronavirus
data](http://gigasciencejournal.com/blog/wp-content/uploads/2020/02/Screenshot-2020-02-04-at-10.13.08-PM-1024x251.png){.wp-image-3225
loading="lazy" decoding="async"
aria-describedby="caption-attachment-3225"
srcset="http://gigasciencejournal.com/blog/wp-content/uploads/2020/02/Screenshot-2020-02-04-at-10.13.08-PM-1024x251.png 1024w, http://gigasciencejournal.com/blog/wp-content/uploads/2020/02/Screenshot-2020-02-04-at-10.13.08-PM-300x74.png 300w, http://gigasciencejournal.com/blog/wp-content/uploads/2020/02/Screenshot-2020-02-04-at-10.13.08-PM-768x189.png 768w"
sizes="(max-width: 799px) 100vw, 799px" width="799" height="196"}

Fig 1. Map and diversity of 2019-nCoV. The map of the viral genome is
shown with sites of identified variation and the known open reading
frames (ORF) and viral proteins; spike (S), nucleocapsid phosphoprotein
(N), and membrane glycoprotein (M). Source: Nextstrain.
:::

The 2019-nCoV is most closely related to a beta-coronavirus isolated in
bats in Yunnan^3,4^
 ([MG772933](https://nextstrain.org/groups/blab/sars-like-cov)), and all
the current isolates found in China or other countries are very closely
related (Figure 2). The sequence data suggests that there was a single
zoonotic event of viral transmission into the human population.
Phylogenetic analysis places 2019-nCoV in the sarbecovirus subgenus that
includes the SARS virus.^3^  Three prereprints in bioRxiv describe data
indicating that the virus uses the angiotensin-converting enzyme II
(ACE2) protein as its cellular receptor^5-7^, as does SARS.^8^  This
result is significant as the Middle East respiratory syndrome (MERS)
virus, MERS-CoV, uses dipeptyl peptidase 4 (DPP4; also known as CD26) as
its receptor.^9^ To date, there is no variation in the portion of the
virus that binds to ACE2^6^.

::: {#attachment_3226 .wp-caption .aligncenter style="width: 769px"}
![Coronavirus
data](http://gigasciencejournal.com/blog/wp-content/uploads/2020/02/Screenshot-2020-02-04-at-10.20.22-PM-1024x631.png){.wp-image-3226
loading="lazy" decoding="async"
aria-describedby="caption-attachment-3226"
srcset="http://gigasciencejournal.com/blog/wp-content/uploads/2020/02/Screenshot-2020-02-04-at-10.20.22-PM-1024x631.png 1024w, http://gigasciencejournal.com/blog/wp-content/uploads/2020/02/Screenshot-2020-02-04-at-10.20.22-PM-300x185.png 300w, http://gigasciencejournal.com/blog/wp-content/uploads/2020/02/Screenshot-2020-02-04-at-10.20.22-PM-768x473.png 768w"
sizes="(max-width: 759px) 100vw, 759px" width="759" height="468"}

Fig 2. Phylogenetic tree of 2019-nCoV. A tree of sequenced isolates is
shown along with the country or city where they were isolated, and the
date. Source: Nextstrain.
:::

Peer-reviewed publications documented the clinical features of 41
infected cases, 6 of whom died, and their demographic and clinical
features.^10^ An estimate of 7 days from onset of symptoms to hospital
admission was presented. The second description of 99 cases has also
been published^11^ along with reports documenting human-human
transmission.^3,4^  A third study of 425 cases provided an estimate of
the mean incubation time of 5.2 days and a basic reproductive number of
2.2 (95% CI, 1.4 to 3.9).^11^ At the time of writing, current estimates
of the case fatality rate (CFR) for 2019-nCoV are between 2 and 3
(**Table 1**). However, in regions of China outside of Hubei only 11 out
of 6125 have died (0.18%). The first case report of a 35-year old male
in the US described mild to moderate symptoms, and a virus with one one
amino acid difference in one protein from the reference.^12^ There has
been considerable cooperation among international health organizations,
with the CDC publishing the details of a [real-time PCR diagnostic
test](https://www.cdc.gov/coronavirus/2019-nCoV/guidance-laboratories.html),
and the World Health Organization has a site for [up-to-date clinical
treatment
guidelines](https://www.who.int/docs/default-source/coronaviruse/clinical-management-of-novel-cov.pdf?sfvrsn=bc7da517_2&download=true).

In conclusion there is still rapid growth of 2019-nCoV infections in
Hubei Province, with a slowly declining fatality rate, but much fewer
deaths outside of this region. Genetic and biological data is being
rapidly produced and disseminated allowing for the rapid development of
diagnostic tests and development of vaccines and other therapeutics.

**We at *GigaScience* applaud this rapid and open sharing of the
Coronavirus data. We already have stringent open and transparent data,
review and publication policies in place, and would encourage submission
of Data Notes and Technical Notes (methodological and software papers)
to enable due credit to producers of data and tools. As with our
dissemination of the data from the [deadly German 2011 *E. coli*
outbreak](http://gigasciencejournal.com/blog/notes-from-an-e-coli-tweenome-lessons-learned-from-our-first-data-doi/),
curation and dissemination will be rapid, and we will also offer waivers
of our article and data processing charges for Coronavirus studies to
encourage this. Please contact us if you have presubmission inquiries or
questions. While public events in our base of Hong Kong have all been
called off, there are [local \"virtual\"
efforts](https://github.com/opensourcehk/wuhanvirusdata) to crowdsource
and hack data from the outbreak, and some of the *GigaScience* team will
be participating in a live streaming data science workshop on Sunday 9th
February (follow the [youtube
link](https://www.youtube.com/channel/UC6xrF3O1aJxNXho9v_TYBMg?fbclid=IwAR3S7cyy_8jjJr_9Hu7a2i-0IzJwGW-1F6TcGTZjjzT0hX8hM_St9sZttyg)
to watch).**

[[\*\*Further Reading\
\*\*]{.bumpedFont15}]{.s5}[1.](https://doi.org/10.1038/nrmicro.2016.81)
de Wit . *et al.*, SARS and MERS: recent insights into emerging
coronaviruses. *Nat Rev Microbiol* **14**, 523-34 (2016).\
[2.](https://doi.org/10.3390/v11121119) Willman M *et al.*, A
Comparative Analysis of Factors Influencing Two Outbreaks of Middle
Eastern Respiratory Syndrome (MERS) in Saudi Arabia and South Korea.
*Viruses* **11**(2019).\
[3.](https://doi.org/10.1016/S0140-6736(20)30211-7) Zhu N. *et al.,* A
Novel Coronavirus from Patients with Pneumonia in China, 2019. *N Engl J
Med* (2020).\
[4.](https://doi.org/10.1016/S0140-6736(20)30154-9) Chan JF. *et al.* A
familial cluster of pneumonia associated with the 2019 novel coronavirus
indicating person-to-person transmission: a study of a family cluster.
*Lancet* (2020).\
[5.](https://doi.org/10.1101/2020.01.22.914952) Zhou P *et al.,*
Discovery of a novel coronavirus associated with the recent pneumonia
outbreak in humans and its potential bat origin. *bioRxiv* (2020).\
[6.](https://doi.org/10.1101/2020.01.31.929042) Hoffmann M *et al.,* The
novel coronavirus 2019 (2019-nCoV) uses the SARS-1 coronavirus receptor
2 ACE2 and the cellular protease TMPRSS2 for entry into target cells.
*bioRxiv* (2020).\
[7.](https://doi.org/10.1101/2020.01.22.915660) Letko M *et al.*,
Functional assessment of cell entry and receptor usage for lineage B
β-coronaviruses, including 2019-nCoV. *bioRxiv* (2020).\
[8.](https://www.nature.com/articles/nature02145) Li W *et al.,*
Angiotensin-converting enzyme 2 is a functional receptor for the SARS
coronavirus. *Nature* **426**, 450-4 (2003).

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