Tuesday, July 28, 2020

COVID-19 and its impact on the Agri Economy of Punjab

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Syed Ahmed Uzair

Article Title

COVID-19 and its impact on the Agri Economy of Punjab

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Global Views 360

Publication Date

July 28, 2020

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Women planting paddy seedlings in agricultural field

Women planting paddy seedlings in agricultural field | Source: Diganta Talukdar via Wikimedia

The COVID-19 pandemic has hit the agricultural economy of the Indian state of Punjab really hard. Punjab’s paddy farmers have traditionally relied on migrant agricultural labourers who are mostly natives of the state of Bihar and Uttar Pradesh. Due to the pandemic, a large number of migrant labourers have returned to their native place causing a massive shortage of farm workers in Punjab.

Its impact became more severe as the paddy transplantation period was already around. Gurbachan Singh, a local paddy farmer told news agency ANI, "There is a shortage of labourers as the government sent back the migrant workers without proper planning."

The shortage of migrant workers forced the farmers to rely more on the local labourers. The local labourers used this opportunity to demand more wages which has resulted in almost doubling the labour cost. The migrant labourers used to charge around ₹2500 per acre for sowing paddy while the local ones were demanding ₹4000 per acre for the same work.

The  village panchayat (Local village council) tried to fix the labour charges of ₹3,000 per acre which did not go down well with local labourers. This caused a dispute which even resulted in a clash between labourers and farmers where the shots were fired as well.

The labour shortage does not appear to be ending soon as most migrant labourers are not willing to come back. Viresh Kumar, a labour contractor from Sonbarsa in Bihar’s Sitamarhi district who supplies workers to paddy farmers in Phagwara, told ThePrint, “Workers from Bihar and UP either don’t want to come back to fields in Punjab or they want farmers or us to bear the cost of bringing them back, which is a very expensive and complex procedure now. Due to the lack of sufficient number of regular trains, the cost of bringing a single migrant to Punjab is around Rs 3,000 to Rs 4,000 per person.”

The shortage of cheap labour has forced the local farmers to start looking for some alternative which could maintain the economic feasibility of farming.also provided some benefit

Agricultural Secretary of Punjab government, KS Pannu noted that some of the farmers have started employing new technology to cope up with the labour shortage. "Farmers have sown paddy at around 5 lakh hectare land with Direct Seeding of Rice technology this year. Some farmers, however, shifted back to the puddling method for cultivation as they could not adapt to the technology," Pannu told ANI.

Manpreet Ayali, a member of Punjab State Legislative Assembly, and a wealthy farmer, says that this labour shortage is a blessing in disguise for the farmers as it would make them more self-reliant, rather than depending on labour for the transplantation season.

The shortage of cheap migrant labour has forced many farmers to cut down the area of paddy cultivation. Experts believe that due to the reduced area of transplantation the groundwater levels might improve in the state which tops the country in over-exploitation of groundwater reserves.

It is still too early to give a definite verdict on the long term impact of the COVID-19 on the agricultural economy of Punjab, but in the short term it is nothing short of a disaster for the local farmers.

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February 4, 2021 4:59 PM

Xenobots: The first ever ‘living’ robots

Creating robots using artificial intelligence has become quite normal in this century. But a robot built with an amalgamation of artificial intelligence and biology is quite enthralling. Researchers from University of Vermont and Tufts University collaborated to conceive a living robot called ‘Xenobot’.

This astounding, millimeter-wide chunk of technology is considered to be ‘living’ as it is created by stem cells from the embryo of Xenopus laevis, an African frog species. These stem cells were selected in such a way that they grew out to be heart and skin cells.

Prior to this, computer scientists at the University of Vermont ran an evolutionary algorithm, which imitates natural selection, on their supercomputer, which yielded the most suitable structures of the robot. After selecting the best designs, biologists at the Tufts University moulded the skin and heart cells into the forms which closely resembled the outputs of the algorithm, through microsurgery.

The resulting biological bodies looked like tiny aliens. "They're neither a traditional robot nor a known species of animal. It's a new class of artifact: a living, programmable organism" said Joshua Bongard, a computer scientist and robotics expert at the University of Vermont, who was involved in the research. Detailed results are published in the Proceedings of the National Academy of Sciences (PNAS) research paper on January 13, 2020.

Newly created xenobots were found to swim in any liquid medium for at least 10 days (or more if put in a nutrient-rich environment) without being fed with any nourishment, since the cells have a reserve of embryonic energy.

Another incredible facet of this technology is that it can revamp any of its parts efficiently upon damage. While technological pieces made out of plastic and metal might cause a lot of pollution after they are disposed of, xenobots are completely biodegradable, causing no harm to the environment. "These xenobots are fully biodegradable, when they're done with their job after seven days, they're just dead skin cells" said Bongard.

One might wonder how these miniscule cell blotches are helpful to us. Well, Xenobots may be very small in size but they can achieve feats which almost no huge, metal-made robot can.

These living robots will be useful in certain fields like medicine wherein they could be utilized to clear plague from our arteries. They can also be modelled with pouches which enables them to carry certain substances. This property can be used for delivering drugs in specific parts of our bodies. Xenobots can also be a boon in the field of cancer biology as they can help reprogramming tumors into normal cells.

Additionally, these tiny biological bodies can be oceans’ best friends. With contaminants like radioactive chemicals, plastics and microplastics creating havoc in the marine world, an immediate need to clean up our water bodies arises. Many xenobots were observed to be moving in circles (an attribute of the beating heart cells), which resembled a ‘clean-up’ motion. Hence, these tiny robots can be a perfect tool to eradicate microplastics from the oceans as well as eliminating nuclear wastes.

Although this technology may be promising, certain ethical questions arise with every technological development, especially those involving biological manipulations. If programmed in a certain way, xenobots can also take over natural biological functions (maybe nerve cells to hamper brain function) and this can be used for nasty purposes.

Michael Levin who directs the Center for Regenerative and Developmental Biology at Tufts said, “That fear is not unreasonable. When we start to mess around with complex systems that we don't understand, we're going to get unintended consequences”. Levin and Bongard are extensively working towards understanding how complex systems work. "There's all of this innate creativity in life. We want to understand that more deeply—and how we can direct and push it toward new forms" said UVM's Josh Bongard.

Like any new disruptive technological innovation, the Xenobots also have the potential to prove boon or bane for the humankind. Let's hope it turns out more boon than bane.

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