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Natural and synthetic hydrogels as an amendment to overcome Radiata pine drought stress at the time of planting

2026/06/30 by Jen Owens, David Siqueira, Donald White +2
Agricultural and Biological Sciences · Engineering · Environmental Science · #Amendment #Growing season #Pinus radiata #Plant nutrient uptake and metabolism #Polymer-Based Agricultural Enhancements #Radiata #Seedling #Seedling growth and survival studies #Soil water #Sowing #Water content #Water stress

paper · pdf · doi:10.1007/s11056-026-10193-2

crossref issued 2026/06/30 · crossref published 2026/06/30 · crossref published-online 2026/06/30 · openalex publication_date 2026/06/30 · crossref created 2026/06/30 · crossref published-print 2026/07/01 · openalex created_date 2026/07/01 · openalex updated_date 2026/07/29 · crossref deposited 2026/07/31 · crossref indexed 2026/07/31

Abstract

Extending New Zealand’s planting season for Pinus radiata may increase the economic viability of mechanised planting. Doing this could necessitate adding hydrogels or water at planting to buffer dry soil conditions, however, optimizing amendment type and volume for seedling establishment is required. We compared how synthetic polyacrylamide hydrogel (PAM) and nanocellulose hydrogel (NCH) influenced water retention in different forest soils, and found NCH applied to intact soil cores at 0.5% could increase plant available soil water by up to 28%. However, results were inconsistent among the soil types tested. To couple plant response with amendment type, two nursery trials were conducted where P. radiata seedlings were planted on either shoulder of the traditional planting window (May to September) using PAM, NCH or water applied at different volumes. The results showed that during the pre-planting window trial (autumn: April-May), plant water reserves were no different between PAM and water treatments over 54 days in dry soil, but adding PAM to wet soil suppressed root growth. During the post-planting window (spring: November-December) PAM maintained plant water reserves higher than water over 39 days. The results suggest PAM is best deployed during the post-planting window, when plant water demands are higher. Field trials are needed to confirm these observations.

Citations