Genetic load refers to the presence of deleterious alleles within a population, reducing its overall fitness. In plant populations, genetic load can accumulate due to inbreeding, genetic drift, or bottleneck events. While some level of genetic load is typical, high levels can lead to decreased fertility, stunted growth, and increased susceptibility to diseases. Breeding programs aim to manage genetic load by introducing genetic diversity, often through hybridization or outcrossing. Understanding genetic load is essential in conservation genetics and agriculture to ensure resilient plant populations with high adaptability and productivity.
Title : Exploring the genetic diversity in tannin-rich forages to explain the large intra species variability in tannin content
Selina Sterup Moore, Aarhus University, Denmark
Title : Isolation and functional properties of biomolecules of plants and its application
Balagopalan Unni, GEMS Arts & Science College (Autonomous), India
Title : Primed for the future: PGPR and the promise of sustainable, heritable crop resilience
Prashant Singh, Banaras Hindu University (BHU), India
Title : Revealing allelic variations in candidate genes associated with grain yield under salinity stress between two contrasting rice genotypes
Nisha Sulari Kottearachchi, Wayamba University of Sri Lanka, Sri Lanka
Title : Adaptive strategies of Aristida L. species across ecological zones of Pakistan: Linking soil characteristics with morphological and physiological traits
Iram Ijaz, University of Agriculture Faisalabad Pakistan, Pakistan
Title : Ethnobotanical survey and abundance of weeds in selected Manihot esculenta (cassava) Crantz farms in Osun state, Nigeria
Dada Caleb Mayokun, University of Ibadan, Nigeria