Skip to Main Content

Purdue researcher part of effort to improve swine health

A Purdue University researcher is part of a project that is looking for ways to improve swine herd health and survivability to increase animal well-being and pork producers' profits.

stewart-k191.jpg
Kara Stewart

Kara Stewart, a Purdue assistant professor of animal sciences, will focus primarily on neonatal piglet survival from birth until weaning. The project is being led by theIowa Pork Industry Centerat Iowa State University and also includes scientists from Kansas State University. TheNational Pork Boardand theFoundation for Food and Agriculture Research(FFAR) are providing nearly $2 million for the five-year study.

"Leaders in the swine industry recognized that pig survivability was a multifactorial issue that would require teams of researchers from various disciplines to work together to research methods to improve livability in pigs," Stewart said. "Indiana Pork also has agreed to contribute money to these projects because they see the value in decreasing herd mortality rates and improving animal welfare in our industry."

It is estimated that 30 percent to 35 percent of pigs born die before reaching the market, creating significant economic losses for farmers. Those mortality rates have been increasing across all phases of production.

“The members of the animal science and welfare committees of the National Pork Board recognize improving pig health, welfare and productivity are keys in extending pig survivability,” said Chris Hostetler, director of animal science for the National Pork Board. “While this project is slated to last five years, it is the vision of the committees that this effort will fundamentally shape the way pigs are raised to provide safe, wholesome pork far into the future.”

Under the project, the causes of mortality on commercial swine farms will be studied by an interdisciplinary team of nutritionists, physiologists, veterinarians, well-being and behavior experts, geneticists, toxicologists, Extension specialists and economists. The goal is to fully understand the biological mechanisms that limit pig and sow survivability, how they interact and how they can be effectively improved.

“We know that improving survivability will increase the efficiency and environmental sustainability of the whole industry, but solutions need to be economically feasible,” said Tim Kurt, FFAR’s scientific program director.

“Increasing sow and piglet survivability is one of the most intractable issues facing the pork industry," said Sally Rockey, FFAR’s executive director. "While this is a clear animal welfare problem, it is also one of the most important productivity and economic issues for producers. FFAR is pleased to be part of this important research that unquestionably will have a multitude of positive impacts.”

Stewart will specifically investigate management procedures for newborn piglets that can increase their survivability. "I also will be looking at the impacts of inducing parturition, the farrowing process and colostrum production from the mother and how these factors impact piglet survival."

The project’s overarching goal through effective research and extension activities is to improve swine survivability by 1 percent or more each year. Increasing the wean-to-finish survival of animals by 1 percent would represent an estimated gain in productivity of approximately 1.2 million pigs a year for the nation’s swine industry.

The research team objectives include:

* Evaluate producers’ management attitudes and economics associated with improving survivability in U.S. swine production.

* Identify the causes of mortality on U.S. sow farms to support development and implementation of targeted strategies to maximize survivability.

* Define factors that influence wean-to-finish survivability and implement management strategies based on production-based research.

* Develop national extension, outreach and education resources and strategies to encourage adoption and implementation of management practices to improve survivability in pork production.

The project also will train future industry leaders, including graduate students and staff, and is expected to employ undergraduate and veterinary students through internship programs.

Additional information on the project team, specific efforts and progress can be followed on the project website at www.piglivability.org

Featured Stories

PhD student Nowrin Shaika and professor Halis Simsek, both in agricultural and biological engineering, demonstrate using electrocoagulation to harvest microalgae Chlorella vulgaris from wastewater cleaned with algae.
Studies assess feasibility of aquaculture wastewater treatment methods

Aquaculture production operations that help feed the world’s growing population also...

Read More
The Wildlife Society students hold a plaque for overall conclave winner; a student holds radio telemetry equipment; students hold binoculars while birding
Purdue TWS Hosts North Central Section Conclave

The Purdue Student Chapter of The Wildlife Society welcomed fellow students from across the...

Read More
Austin Berenda
Austin Berenda - Graduate Ag Research Spotlight

When Second Lieutenant Austin Berenda was in Ranger School, he led his platoon through tactical...

Read More
Wind farm in Northern Indiana
U.S. Department of Energy taps Purdue Extension to lead new Indiana collaborative for renewable energy

A developer approaches a local plan commission, seeking approval to locate a wind or solar farm...

Read More
Eastern hellbender salamanders eat bloodworms and swim in an indoor raceway
Farmers Helping Hellbenders RCPP Program Accepting Applications

The Farmers Helping Hellbenders program is accepting applications for the second round of its...

Read More
Purdue University PhD student Chance Clark (left), agronomy professor Jianxin Ma and their associates have discovered two long, noncoding RNA genes in soybeans that control multiple desirable traits for crops.
Gene seekers discover atypical genes that control multiple valuable soybean traits

A team led by Purdue University soybean geneticist Jianxin Ma has developed a new...

Read More
To Top