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April 28, 2026Silvae genetica/Silvae Genetica0 citationsOpen Access

Reduced Inbreeding Seed Orchard Engine: A Web-Based Application for Optimising Seed Orchard Layouts

DPD.P. PrakashTropical Forest Research InstituteDRDiwakar RanjanBabasaheb Bhimrao Ambedkar Bihar UniversityIPIsh PrakashDr. Rajendra Prasad Central Agriculture University

Key Points

  • The research aims to develop a web-based application for optimizing seed orchard layouts to minimize inbreeding hazards.
  • Developed the RISE tool for dynamic seed orchard arrangements using coancestry data and a placement strategy.
  • Incorporated statistical tests (paired t-test, Kolmogorov-Smirnov test, Levene’s test) to analyze results.
  • Facilitated custom configurations for clone counts and spatial setups through an online platform.
  • Achieved significantly lower d_min levels (inbreeding indicator) compared to arbitrary configurations (exact metrics not specified).
  • Validated improvements in orchard layouts with statistical analysis showing significant enhancements in cloning arrangements.
  • Effectively managed complex clone pedigrees and genomic co-ancestry data.

Abstract

Abstract In advanced seed orchards, factors such as shared clone origins and uneven planting densities heighten the chances of inbreeding. The RISE tool advances beyond traditional minimum-inbreeding and quadratic assignment frameworks by incorporating comprehensive coancestry data, gap-filling for plant losses, variable clone counts, and dynamic features like distance graphs and selectable clone emphasis in an online environment. This research describes an innovative browseraccessible program that creates efficient orchard arrangements for practical forest management, employing a preliminary placement strategy paired with a streamlined annealing process to reduce the inbreeding indicator, dₘin. The system accommodates custom grid setups, the number of clones, clonal replicates, and sibling links, producing arrangements through spreadsheet exports and engaging visual displays. Relative to arbitrary configurations, the program yields notably reduced dₘin levels (an indicator of mating hazards). It provides statistical analysis of the resulting orchard, such as paired t-test, Kolmogorov-Smirnov test and Levene’s test, validating improvements across cases. It can handle complex pedigrees and co-ancestry estimates from marker based genomic studies. The tool suits forestry practitioners, delivering an effective option for orchards of diverse scales. The program's architecture, approach, and forestry applications are explored, underscoring its role in advancing orchard oversight.

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Cite This Study

Prakash et al. (2026) studied this question.

synapsesocial.com/papers/69f04edc727298f751e72c19https://doi.org/10.2478/sg-2026-0004
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