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Anthesis dynamics and intra-cluster position effects on fruit quality in Washington apples
Thesis

Anthesis dynamics and intra-cluster position effects on fruit quality in Washington apples

Sarah Elizabeth Gruntmeir
Master of Science (MS), Washington State University
2026
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Gruntmeir thesis May 14DownloadView
Open Access

Abstract

Apple fruit quality is shaped by events occurring early in development, including the spatial and temporal pattern of bloom within the canopy and competitive interactions among flowers within clusters. This work examined how within-tree anthesis dynamics and early intra-cluster fruit selection influence pollination opportunity, fruit development, and harvest quality in modern Washington apple orchards.Bloom progression was quantified in ‘WA 38’ by monitoring individual flower anthesis dates across canopy height zones, cluster positions, and trunk orientation. Anthesis followed a clear spatial structure, especially in 2022, when about half of the king flowers in lower canopy zones (1–2) were open on the first day of bloom (April 25), compared with fewer than 16% of lateral flowers. In that year, lower-canopy zones also opened earlier overall: 58–69% of openings in zones 1–3 occurred on April 26-29 compared with 36–38% in zones 5–6. A similar spatial pattern was observed in 2023, although the initial bloom was less concentrated at the beginning of the period (April 29). When assessed using a three-day effective pollination period, the number of receptive flowers peaked on April 27 in 2022 and on May 3 in 2023, while the total number of open flowers continued to increase after these dates. This indicates that visual bloom can overestimate the actual pollination opportunity, since many flowers that appear open are no longer within the effective receptive window. Additional field trials in ‘Gala’, ‘Honeycrisp’, and ‘WA 38’ evaluated early intra-cluster thinning to a single king or lateral flower at the pink stage. Early thinning consistently increased fruit size compared to un-thinned trees, for example, in ‘Gala’ 2022, fruit weight increased from 83.7 g in un-thinned trees to 167 g in king-retained clusters. However, differences between king- and lateral-retained fruit varied by cultivar and year. Thinning to a single king within the cluster occasionally advanced fruit maturity, as reflected by lower starch index values (i.e., 4.99 in king versus 5.81 in lateral fruit in ‘Gala’ 2023), but was sometimes associated with higher disorder incidence (i.e., 22.4% in king versus 7.9% in lateral fruit in ‘Gala’ 2022). In contrast, lateral retention in ‘WA 38’ produced a favorable combination of quality traits, with higher soluble solids (14.8 ° Brix versus 13.7 in king), larger fruit (86.9 mm versus 83.0 mm), and greater firmness (18.8 versus 16.9 lb). Together, these results show that early-season processes influence fruit development, but their effects are not expressed uniformly at harvest. Differences in bloom timing determine when pollination can occur, and early thinning alters competitive dynamics within clusters, yet final fruit quality does not consistently reflect a single flower position producing superior fruit.

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