header banner
SOCIETY

Nepal's coronavirus genome is similar to that found in India: Study

A study, though failed to assess the comparative  virulence and lethality of the virus from India, has shown that the majority of the virus sequence  recorded in Nepal are similar  to those recorded in India. "Of the 15 virus sequences unveiled in Nepal, two-thirds similar to that found in India," Dr Pradip Gyawali, member secretary of the Nepal Health Research Council (NHRC), said.
By SHREE RAM SUBEDI

KATHMANDU, Nov 30: Prime Minister KP Sharma Oli, on May 19, spoke in the parliament about the relative strength of coronaviruses coming from different parts of the world. "The virus coming from Wuhan, Italy and Dubai appeared weak. But the one coming from India appears lethal," he had said. PM Oli made the remarks after the country saw a steep spike in the number of corona cases with the influx of migrant laborers from India. The Indian media went nuts over the PM’s statement. The PM's remark was based on personnel observations, not on   scientific basis.


A study, though failed to assess the comparative  virulence and lethality of the virus from India, has shown that the majority of the virus sequence  recorded in Nepal are similar  to those recorded in India. "Of the 15 virus sequences unveiled in Nepal, two-thirds similar to that found in India," Dr Pradip Gyawali, member secretary of the Nepal Health Research Council (NHRC), said.


Nearly three months after the PM's remark in the parliament, and seven months into the outbreak of COVID-19, the NHRC investigated the genes of the virus to ascertain its makeup, and possible mutations on their journey to Nepal. The baseline study, covering a total 15 COVID-19 samples, aimed to record the changes in their genetic identity in Nepal beginning from its outbreak in January.


Related story

AstraZeneca vaccine found to be effective against new variant o...


A private lab, Intrepid Nepal Pvt. Ltd. (INPL), was entrusted to unveil the  genetic sequence of the virus through 'Next Generation Sequencing (NGS)' technology, which reads the entire genome in a  short period of time. Comparing sequencing results over time can help scientists understand the virus’ mutation. With the completion of the genetic sequence, further validation was made by a World Health Organization lab in Hong Kong.


As a part of the study, samples of SARS-CoV-2 were collected from National Public Laboratory,Teku, Nepal Korea Maitri Hospital, Thimi and Kathmandu University, Dhulikhel, representing 10 different districts of various ecological zones, and covering a period from June 26 to August 10. The results of findings were correlated with the help of bioinformatics tools and various online platforms, including NCBI and GISAID. 


Experts believe that the mutations of the virus is one of the reasons for the surge in corona cases and patients with symptoms in Nepal. The study has confirmed changes in proteins--both in its structural and non-structural format. "In structural protein, changes were recorded in spike and Nucleocapsid protein and these proteins let viruses enter human cell,"  reads a summary of the study finding, available to Republica.


Alterations in genes were recorded in non-structural proteins including nsp2, nssp 3, aasp 12, which are largely RNA dependent and RNA Polymerase(RDRP). These non-structural proteins play a pivotal role in infections and pathogens.


In its major findings, the report said, "The genetic composition of the virus in Nepal is similar to India, Bangladesh, Saudi Arabia, Europe and America. As there are differences in genetic composition, a further study is required."


Since the emergence of SARS-CoV-2, several research studies have highlighted variations in the virus’ genetic sequence as it travelled across the globe. According to a researcher involved in the Nepal study, the  globally dominant mutation variant of SARS-CoV-2, called D614G, was prevalent in Nepal, with few alterations in its genetic composition.


The NHRC officials believe that a systematic tracking of demographic and clinical patient information, as well as strain information is indispensable to effectively combat COVID-19. They also believed that the result would help ascertain whether the reagents currently used for carrying out RT-PCR in Nepal  are appropriate. The RT-PCR  reagents target different strains of the virus and a detailed knowledge of the local strain would be useful to avert false corona positive reports, a researcher involved in the study said.


The study recommends regular studies on the genetic sequence of the virus to help to decide the choice of reagents used in RT-PCR, therapeutic drugs and potential vaccines for Nepal. "There is a need for monthly study to ascertain the changes at the genetic level of the virus," states the report. Dr Gyawali informed that they have signed a deal with Kathmandu University to carry out these studies on a regular basis. "Discussions are underway with other institutions, including Tribhuvan University, to carry out these studies," he said. 

Related Stories
WORLD

COVID's new Omicron sub-lineages can dodge immunit...

WORLD

Moderna starts trial for Omicron-specific booster...

SOCIETY

Two-dose vaccines induce lower antibodies against...

WORLD

Indian scientists flag virus mutations that could...

WORLD

India records world’s biggest single-day rise in c...

Top Videos

Bold Preety willing to fight for her musical career

Awareness among people on heart diseases has improved in Nepal’

Print still remains the numbers of one platform

Bringing home a gold medal is on my bucket

What is Nepal's roadmap to sage child rights