The Fort Worth Press - Climate change may boost Arctic 'virus spillover' risk

USD -
AED 3.672498
AFN 65.99991
ALL 81.873378
AMD 378.439802
ANG 1.79008
AOA 917.000148
ARS 1448.487698
AUD 1.429899
AWG 1.8
AZN 1.712449
BAM 1.658498
BBD 2.01317
BDT 122.152876
BGN 1.67937
BHD 0.377029
BIF 2961.725511
BMD 1
BND 1.270543
BOB 6.906845
BRL 5.229803
BSD 0.999546
BTN 90.307481
BWP 13.806116
BYN 2.86383
BYR 19600
BZD 2.010235
CAD 1.36624
CDF 2154.999626
CHF 0.776945
CLF 0.02185
CLP 862.749928
CNY 6.9465
CNH 6.934635
COP 3630.63
CRC 496.408795
CUC 1
CUP 26.5
CVE 93.503553
CZK 20.62655
DJF 177.998262
DKK 6.33157
DOP 62.937775
DZD 129.991046
EGP 46.951301
ERN 15
ETB 155.042675
EUR 0.84772
FJD 2.20415
FKP 0.732491
GBP 0.73095
GEL 2.695043
GGP 0.732491
GHS 10.950041
GIP 0.732491
GMD 73.501068
GNF 8769.058562
GTQ 7.666672
GYD 209.120397
HKD 7.81214
HNL 26.408086
HRK 6.3869
HTG 131.107644
HUF 322.772002
IDR 16766.9
ILS 3.09203
IMP 0.732491
INR 90.26235
IQD 1309.380459
IRR 42125.000158
ISK 122.920095
JEP 0.732491
JMD 156.640605
JOD 0.708964
JPY 155.856028
KES 129.000283
KGS 87.450297
KHR 4033.037668
KMF 417.999918
KPW 899.987247
KRW 1449.489768
KWD 0.30732
KYD 0.83298
KZT 501.119346
LAK 21499.832523
LBP 89508.041026
LKR 309.380459
LRD 185.911623
LSL 16.009531
LTL 2.95274
LVL 0.60489
LYD 6.319217
MAD 9.168716
MDL 16.926717
MGA 4429.877932
MKD 52.274308
MMK 2100.119929
MNT 3568.429082
MOP 8.04357
MRU 39.901294
MUR 45.889749
MVR 15.449674
MWK 1733.257012
MXN 17.286645
MYR 3.932499
MZN 63.749886
NAD 16.009531
NGN 1390.639711
NIO 36.785781
NOK 9.664365
NPR 144.492309
NZD 1.658525
OMR 0.384522
PAB 0.999521
PEN 3.364907
PGK 4.282347
PHP 59.127012
PKR 279.545138
PLN 3.57944
PYG 6631.277242
QAR 3.634567
RON 4.321031
RSD 99.548006
RUB 77.018176
RWF 1458.783824
SAR 3.750085
SBD 8.058101
SCR 13.790532
SDG 601.496925
SEK 8.91905
SGD 1.27107
SHP 0.750259
SLE 24.47503
SLL 20969.499267
SOS 570.272883
SRD 38.114498
STD 20697.981008
STN 20.775741
SVC 8.746163
SYP 11059.574895
SZL 16.015332
THB 31.573496
TJS 9.340767
TMT 3.51
TND 2.890372
TOP 2.40776
TRY 43.480601
TTD 6.770319
TWD 31.604497
TZS 2584.039658
UAH 43.256279
UGX 3563.251531
UYU 38.49872
UZS 12236.487289
VES 371.640565
VND 26002
VUV 119.537583
WST 2.726316
XAF 556.244594
XAG 0.011336
XAU 0.000202
XCD 2.70255
XCG 1.801384
XDR 0.691072
XOF 556.244594
XPF 101.131218
YER 238.374986
ZAR 15.97435
ZMK 9001.1992
ZMW 19.615608
ZWL 321.999592
  • RYCEF

    0.2800

    16.95

    +1.65%

  • NGG

    1.1200

    85.73

    +1.31%

  • BCC

    3.7850

    85.535

    +4.43%

  • RIO

    3.7300

    96.25

    +3.88%

  • SCS

    0.0200

    16.14

    +0.12%

  • GSK

    0.6650

    53.135

    +1.25%

  • RELX

    -5.3500

    30.18

    -17.73%

  • CMSD

    -0.0500

    24.03

    -0.21%

  • RBGPF

    0.1000

    82.5

    +0.12%

  • CMSC

    -0.0600

    23.69

    -0.25%

  • VOD

    0.2610

    15.171

    +1.72%

  • BTI

    0.6250

    61.615

    +1.01%

  • AZN

    1.1000

    189.51

    +0.58%

  • BCE

    0.2600

    26.09

    +1%

  • BP

    0.5350

    38.235

    +1.4%

  • JRI

    -0.0150

    13.135

    -0.11%

Climate change may boost Arctic 'virus spillover' risk
Climate change may boost Arctic 'virus spillover' risk / Photo: © Graham COLBY/AFP

Climate change may boost Arctic 'virus spillover' risk

A warming climate could bring viruses in the Arctic into contact with new environments and hosts, increasing the risk of "viral spillover", according to research published Wednesday.

Text size:

Viruses need hosts like humans, animals, plants or fungi to replicate and spread, and occasionally they can jump to a new one that lacks immunity, as seen during the Covid-19 pandemic.

Scientists in Canada wanted to investigate how climate change might affect spillover risk by examining samples from the Arctic landscape of Lake Hazen.

It is the largest lake in the world entirely north of the Arctic Circle, and "was truly unlike any other place I've been", researcher Graham Colby, now a medical student at University of Toronto, told AFP.

The team sampled soil that becomes a riverbed for melted glacier water in the summer, as well as the lakebed itself -- which required clearing snow and drilling through two metres of ice, even in May when the research was carried out.

They used ropes and a snowmobile to lift the lake sediment through almost 300 metres (980 feet) of water, and samples were then sequenced for DNA and RNA, the genetic blueprints and messengers of life.

"This enabled us to know what viruses are in a given environment, and what potential hosts are also present," said Stephane Aris-Brosou, an associate professor in the University of Ottawa's biology department, who led the work.

But to find out how likely they were to jump hosts, the team needed to examine the equivalent of each virus and host's family tree.

"Basically what we tried to do is measure how similar these trees are," said Audree Lemieux, first author of the research.

Similar genealogies suggest a virus has evolved along with its host, but differences suggest spillover.

And if a virus has jumped hosts once, it is more likely to do so again.

- 'Very unpredictable' -

The analysis found pronounced differences between viruses and hosts in the lakebed, "which is directly correlated to the risk of spillover," said Aris-Brosou.

The difference was less stark in the riverbeds, which the researchers theorise is because water erodes the topsoil, removing organisms and limiting interactions between viruses and potential new hosts.

Those instead wash into the lake, which has seen "dramatic change" in recent years, the study says, as increased water from melting glaciers deposits more sediment.

"That's going to bring together hosts and viruses that would not normally encounter each other," Lemieux said.

The authors of the research, published in the Proceedings of the Royal Society B: Biological Sciences journal, caution they are neither forecasting an actual spillover nor a pandemic.

"The likelihood of dramatic events remains very low," Lemieux said.

They also warn more work is needed to clarify how big the difference between viruses and hosts needs to be to create serious spillover risk.

But they argue that warming weather could increase risks further if new potential hosts move into previously inhospitable regions.

"It could be anything from ticks to mosquitoes to certain animals, to bacteria and viruses themselves," said Lemieux.

"It's really unpredictable... and the effect of spillover itself is very unpredictable, it can range from benign to an actual pandemic."

The team wants more research and surveillance work in the region to understand the risks.

"Obviously we've seen in the past two years what the effects of spillover can be," said Lemieux.

T.Harrison--TFWP