S23

International Symposium on Application of Genetics and Breeding Approaches to Improve Temperate Tree Crops

Conveners

Fabrizio Costa

University of Trento

Miyuki Kunihisa

National Agriculture and Food Research Organization (NARO)

Atsushi Kono

National Agriculture and Food Research Organization (NARO)

Norio Takada

National Agriculture and Food Research Organization (NARO)

Keynote Speakers

Fabrizio Costa

University of Trento

Zhangjun Fei

Cornell University

Program

The oral and poster sessions for this symposium are listed below. Times are shown in Japan Standard Time (JST) and may be updated as the program is finalized. Click a session to view its presentations, or search by author, title, or presentation number; keynote and invited talks are marked. For the full congress schedule across all rooms and days — including a timeline view and a “What’s on now” finder — see the Program at a glance page.

Submit your Acta Horticulturae Manuscript

Abstract submission for IHC2026 is now closed. The next step for presenters is the Acta Horticulturae manuscript. You can submit the manuscript related to your presentation through your abstract account on the ROSA system using the button below. The submission deadline is 15 August 2026. All oral presenters — including invited and keynote speakers — must submit a manuscript, and poster authors are strongly encouraged to do so as well.


Scientific Committee

Akihiko SatoJPN; Andrea PatocchiCHE; Awais KhanUSA; Cameron PeaceUSA; Celia CantinESP; Eiichi InoueJPN; Fabrizio CostaITA; Kate EvansUSA; Mai MinamikawaJPN; Maria AranzanaESP; Nicola BusattoITA; Patricio Munoz del ValleUSA; Shingo TerakamiJPN; Véronique DecroocqFRA; Vincent BusNZL; Yoshihiro TakemuraJPN

Call for Abstracts

Fruit tree crops in the temperate area are currently facing important challenges. The climate change is modifying the environment where the crops have been adapted, and to meet the FAO’s 2050 agenda, the entire agricultural system, in particular horticulture, needs to be substantially reviewed to ensure a more sustainable production of fruits in a scenario distinguished by a continuous limitation of natural resources and inputs. To this end, the development of new and better performing cultivars is compelling. Different breeding approaches can be nowadays employed to obtain new ideotypes guaranteeing the sustainable production of high quality fruits in a climate change context. In addition to traditional breeding strategy, the continuous progress in sequencing technologies, deciphering of genomes in different fruit species and cultivars, is paving the way for more valuable and efficient molecular breeding. This can also be achieved through the current implementation and development of genetic approaches to comprehensively unravel the genetic control of trait of interest, such as MAS, GWAS or genomic selection. Breeding can take also advantage by transcriptomic strategies for the definition of the gene-network responsible for the regulation of specific phenotype. These different disciplines can be to date integrated for the efficient selection of the most valuable individuals and the identification of causal genes that can be further specifically modified through genome editing.
This symposium aims to provide a multidisciplinary overview of the well established and modern genetic approaches that can be applied to improve fruit quality, abiotic/biotic stress resistance and climate-resilience as well as the outcome of such breeding.

The following topics will be developed during the symposium:

  • Molecular breeding approaches for a more efficient selection of novel ideotypes
  • Breeding strategies for a more resistant and resilient horticulture
  • Breeding and genetics for abiotic and biotic stresses
  • Breeding and genetics for fruit quality and postharvest
  • Advanced genetic methods in fruit crop breeding
  • Application of OMICS technologies in fruit tree crops
  • Advanced genetic methods to improve fruit tree crops
  • Genetics and Breeding in the context of climate change
  • Role of genetics and breeding for fruit security
  • New frontiers in horticulture

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