← Papers

Unverified paper record

Fruit and Leaf Sensing for Continuous Detection of Nectarine Water Status.

Frontiers in plant science · 3 Jul 2019 · 10.3389/fpls.2019.00805

Abstract

Continuous assessment of plant water status indicators provides the most precise information for irrigation management and automation, as plants represent an interface between soil and atmosphere. This study investigated the relationship of plant water status to continuous fruit diameter (FD) and inverse leaf turgor pressure rates ( p p ) in nectarine trees [ Prunus persica (L.) Batsch] throughout fruit development. The influence of deficit irrigation treatments on stem ( Ψ stem ) and leaf water potential, leaf relative water content, leaf stomatal conductance, and fruit growth was studied across the stages of double-sigmoidal fruit development in 'September Bright' nectarines. Fruit relative growth rate (RGR) and leaf relative pressure change rate (RPCR) were derived from FD and p p to represent rates of water in- and outflows in the organs, respectively. Continuous RGR and RPCR dynamics were independently and jointly related to plant water status and environmental variables. The independent use of RGR and RPCR yielded significant associations with midday Ψ stem , the most representative index of tree water status in anisohydric species. However, a combination of nocturnal fruit and leaf parameters unveiled an even more significant relationship with Ψ stem , suggesting a changing behavior of fruit and leaf water flows in response to pronounced water deficit. In conclusion, we highlight the suitability of a dual-organ sensing approach for improved prediction of tree water status.

Plant phenotyping relevance

果実径と葉の膨圧を連続センシングし、水分状態指標を抽出・予測する手法が研究の中心であるため、植物フェノタイピング手法として含める。

abstractContinuous assessment of plant water status indicators provides the most precise information for irrigation management and automation
abstractFruit relative growth rate (RGR) and leaf relative pressure change rate (RPCR) were derived from FD and p p to represent rates of water in- and outflows in the organs, respectively.

Code and data availability

The supplied blocks describe fruit diameter, water potential, RWC, stomatal conductance, and LVDT/LPCP continuous sensing measurements, but contain no public dataset deposit, no author code/scripts, and no data availability statement with a URL. Statistical analysis used commercial SYSTAT/Sigmaplot software only.

No evidence-backed public reproduction asset is currently recorded.

This is an automatically classified, unverified record. Curator approval is required before any resource enters the Catalog.