University Outreach Project Teaching Tissue Culture to Potato Farmers

Africa, Economy & Trade, Editors’ Choice, Featured, Food and Agriculture, Headlines, Innovation, TerraViva United Nations

Food and Agriculture

World Food Day is celebrated on October 16, 2022, with the theme Leave NO ONE behind. During this week IPS will look at features that showcase better production, better nutrition, a better environment, and a better life.

Richard Mbaria makes a point at his potato in Kapsita village of Nakuru County, Kenya. The farmer has increased his production per acre thanks to training by a CARP+ project implemented in the area by Egerton University. Maina Waruru/IPS

Richard Mbaria makes a point at his potato in Kapsita village of Nakuru County, Kenya. The farmer has increased his production per acre thanks to training by a CARP+ project implemented in the area by Egerton University. Credit: Maina Waruru/IPS

Nairobi, Oct 11 2022 (IPS) – Until a few years ago, Kenyan potato farmer Richard Mbaria used to harvest just four tonnes of the crop from an acre of land thanks to poor quality seeds, combined with an attack on the crop by pests and diseases.


The middle-aged farmer would select seeds from his previous harvest, picking the smallest tubers that could not fetch good prices in the market. This was the practice every other smallholder farmer in his Kapsita village in Elburgon, Nakuru County in Kenya’s Rift Valley region and beyond would do too. The reason is that many rarely afford certified seeds, and those who could were unaware of the importance of using approved seeds.

“That was then and today, but today I get an average of nearly 8 tonnes of the produce from an acre of land and want to improve the harvests to 10 to 12 tonnes from the same land in the near future,” Mbaria proudly discloses.

The father of four did not transform his farming miraculously. He has been trained in better management of crops and also on the selection and preservation of healthy planting seeds, which he is now selling to local farmers.

Even more radical transformation has happened to his farming. He’s now on the journey to becoming qualified to produce certified tissue culture planting material, thanks to the training he has received from Egerton University’s Enhancing Access to High Quality Seed Potato for Improved Productivity and Income of Smallholder Farmers in Nakuru County (HQSPIPI), implemented under the Community Action Research Programme (CARP+).

Tissue culture is the cultivation of plant tissues or organs in specially formulated nutrient solution in a lab or a controlled environment using mainly sprouts or tissue-like leaves, which are grown in a medium with nutrients and disease-killing chemicals. This way, an entire plant is regenerated from a single tissue.

This is done in a controlled environment – usually in a lab or a greenhouse to produce plantlets, also known as apical root cuttings and mini tubers (tiny-sized potato seeds), but which are clean and free of disease, explains Professor Anthony Kibe, Associate Professor of Agronomy at Egerton University.

When transplanted in the field, the result is seed potatoes which can be sold to farmers for high productivity and at relatively affordable prices.

The resulting plantlet or its small tubers at the bottom of the roots can be transplanted in the fields. The crop is usually high-yield and also free of disease when properly managed.

“Tissue culture (also known as in vitro culture) offers an excellent way for the rapid propagation of seed potato offering high yielding disease-free planting material using hydroponics or aeroponics technologies,” says Kibe.

The technique, he says, is critical in the production of disease-free and high-yielding fruits and vegetables and is widely used in bananas in East Africa. In potatoes, it is mainly practiced by large commercial farms, seed companies, and government research institutions due to the costs and complexity for an ordinary farmer.

The implication is that certified seeds are relatively expensive and out of reach of most of the nearly 1 million smallholder farmers engaged in potato farming in Kenya.

The programme is one of the activities under Transforming African Agricultural Universities to meaningfully contribute to Africa’s growth and development (TAGDev), an initiative by Uganda-based Regional Universities Forum for Capacity Building in Agriculture (RUFORUM), in partnership with the MasterCard Foundation.

One of its aims is to train farmers to plant quality seeds, test their soils, effectively manage diseases and pests, among others, for increased productivity, and organize them in marketing cooperatives for higher incomes, explains Kibe.

“About ten years ago, the average yield for potatoes per hectare in Kenya was 22.5 tonnes; today, it has dropped to around seven tonnes a hectare due to, among others, the transmission of diseases through seeds,” he adds.

It is a concern that his farmers’ outreach project has been addressing by offering free advice, addressing the major constraints to the production of the critical food crop.

“One way of addressing the problem is by training a number of farmers to become producers of disease-free seeds for sale to their colleagues for increased yields and higher income,” he says. Sadly, he notes, only about 2% of Kenyan farmers who grow potatoes use certified seeds, compromising yields.

“This is in stark contrast with leading world producers such as the Netherlands producer, where 99% of farmers use certified seeds,” Kibe explains.

In Kenya, average yields are around 10 tonnes per hectare, while the crop’s potential is as high as 30 tonnes for the size. The lack of quality disease-free seeds of improved varieties is a major cause of this yield gap. This is in contrast to countries like Egypt and South Africa, where yields stand at 40 tonnes per hectare, he told IPS.

“The planting material many farmers use each season for a new crop is produced, stored, and traded by farmers without regulation,” says Kibe.

Farmers select the seeds from their previous harvest. Part of the challenge is that only a few privately-owned farms and a handful of state-owned seed enterprises produce certified seed potatoes.

Where new varieties have been produced and propagated under the technology, yields have been as high as 30 tons per hectare.

Potato, he notes, has been a low-priority food crop in Kenya’s research agricultural research system, despite its importance as a staple food and its potential contribution to the country’s food security.

Under his project, nearly 5,000 farmers have been reached and trained on good husbandry for higher yields since 2017.

Of the three roles bestowed on universities – teaching, research, and outreach, the latter has been the least applied, with universities doing research with the expectation that the extension arms in government would do the knowledge transfer, says Anthony Egeru, who heads TAGDeV project at RUFORUM.

“However, the universities need to have visibility and prove relevant to communities in which they operate and assert their roles as facilitators of development,” he says.

Under the initiative, farmers such as Mbaria are reached by the universities and benefit from the knowledge in their possession, which largely remains stored in journal publications. On their side, universities fulfill their obligation of giving back to society.

While hydroponics is a technology out of reach of many growers, it is essential for the fast multiplication of seeds, according to Michael Cherutich, a potato expert at Kenya’s Agriculture Development Corporation.

The seed producers, including the state corporation, can hardly meet the demand for certified seeds. One way of ensuring affordability has many seed producers in the villages in potato farming areas.

IPS UN Bureau Report

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Women Advocates for Harvesting Rainwater in Salinity-Affected Coastal Bangladesh

Asia-Pacific, Climate Change, Development & Aid, Editors’ Choice, Environment, Featured, Headlines, Humanitarian Emergencies, Innovation, Natural Resources, TerraViva United Nations

Humanitarian Emergencies

Lalita Roy now has access to clean water and also provides a service to her community by working as a pani apa (water sister), looking after the community's rainwater harvesting plants. Credit: Rafiqul Islam/IPS

Lalita Roy now has access to clean water and also provides a service to her community by working as a pani apa (water sister), looking after the community’s rainwater harvesting plants. Credit: Rafiqul Islam/IPS

KHULNA, Bangladesh, Sep 23 2022 (IPS) – Like many other women in Bangladesh’s salinity-prone coastal region, Lalita Roy had to travel a long distance every day to collect drinking water as there was no fresh water source nearby her locality.


“In the past, there was a scarcity of drinking water. I had to travel one to two kilometers distance each day to bring water,” Roy, a resident of Bajua Union under Dakope Upazila in Khulna, told IPS.

She had to collect water standing in a queue; one water pitcher was not enough to meet her daily household demand.

“We require two pitchers of drinking water per day. I had to spend two hours each day collecting water. So, there were various problems. I had health complications, and I was unable to do household work for lack of time,” she said.

After getting a rainwater harvesting plant from the Gender-response Climate Adaptation (GCA) Project, which is being implemented by United Nations Development Programme (UNDP), Roy is now collecting drinking water using the rainwater harvesting plant, which makes her life easier.

“I am getting the facilities, and now I can give two more hours to my family… that’s why I benefited,” she added.

Shymoli Boiragi, another beneficiary of Shaheber Abad village under Dakope Upazila, said women in her locality suffered a lot in collecting drinking water in the past because they had to walk one to three kilometers every day to collect water.

“We lost both time and household work. After getting rainwater harvesting plants, we benefited. Now we need not go a long distance to collect water so that we can do more household work,” Boiragi said.

Shymoli revealed that coastal people suffered from various health problems caused by consuming saline water and spent money on collecting the water too.

“But now we are conserving rainwater during the ongoing monsoon and will drink it for the rest of the year,” she added.

THE ROLE OF PANI APAS

With support from the project, rainwater harvesting plants were installed at about 13,300 households under 39 union parishads in Khunla and Satkhira. One pani apa (water sister) has been deployed in every union from the beneficiaries.

Roy, now deployed as a pani apa, said the GCA project conducted a survey on the households needing water plants and selected her as a pani apa for two wards.

“As a pani apa, I have been given various tools. I go to every household two times per month. I clean up their water tanks (rainwater plants) and repair those, if necessary,” he added.

Roy said she provides services for 80 households having rainwater harvesting plants, and if they have any problem with their water tanks, she goes to their houses to repair plants.

“I go to 67 households, which have water plants, one to two times per month to provide maintenance services. If they call me over the cellphone, I also go to their houses,” said Ullashini Roy, another pani apa from Shaheber Abad village.

She said a household gives her Taka 20 per month for her maintenance services while she gets Taka 1,340 (US$ 15) from 67 households, which helps her with family expenses.

Ahoke Kumar Adhikary, regional project manager of the Gender-Response Climate Adaptation Project, said it supported installing rainwater harvesting plants at 13,300 households. Each plant will store 2,000 liters of rainwater in each tank for the dry season.

The water plants need maintenance, which is why the project has employed pani apas for each union parishad (ward or council). They work at a community level on maintenance.

“They provide some services, and we call them pani apas. The work of pani apas is to go to every household and provide the services,” Adhikary said.

He said the pani apas get Taka 20 from every household per month for providing their services, and if they need to replace taps or filters of the water plants, they replace those.

The pani apas charge for the replacements of equipment of the water plants, he added.

NO WATER TO DRINK

The coastal belt of Bangladesh is one of the most vulnerable areas to climate change as it is hit hard by cyclones, floods, and storm surges every year, destroying its freshwater sources. The freshwater aquifer is also being affected by salinity due to rising sea levels.

Ullashini Roy said freshwater was unavailable in the coastal region, and people drinking water was scarce.

“The water you are looking at is saline. The underground water is also salty. The people of the region cannot use saline water for drinking and household purposes,” Adhikary said.

Ahmmed Zulfiqar Rahaman, hydrologist and climate change expert at Dhaka-based think-tank Center for Environmental and Geographic Information Services (CEGIS), said if the sea level rises by 50 centimeters by 2050, the surface salinity will reach Gopalganj and Jhalokati districts – 50 km inside the mainland from the coastal belt, accelerating drinking water crisis there.

PUBLIC HEALTH AT RISK

According to a 2019 study, people consuming saline water suffer from various physical problems, including acidity, stomach problems, skin diseases, psychological problems, and hypertension.

It is even being blamed for early marriages because salinity gradually changes girls’ skin color from light to gray.

“There is no sweet water around us. After drinking saline water, we suffered from various waterborne diseases like diarrhea and cholera,” Ullashini said.

Hypertension and high blood pressure are common among coastal people. The study also showed people feel psychological stress caused by having to constantly collect fresh water.

Shymoli said when the stored drinking water runs out in any family; the family members get worried because it’s not easy to collect in the coastal region.

SOLUTIONS TO SALINITY

Rahaman said river water flows rapidly decline in Bangladesh during the dry season, but a solution needs to be found for the coastal area.

The hydrologist suggested a possible solution is building more freshwater reservoirs in the coastal region through proper management of ponds at a community level.

Rahaman said low-cost rainwater harvesting technology should be transferred to the community level so that coastal people can reserve rainwater during the monsoon and use this during the dry season.

He added that the government should provide subsidies for desalinization plants since desalinizing salt water is costly.

IPS UN Bureau Report

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