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High-Throughput Phenotyping of Indirect Traits for Early-Stage Selection in Sugarcane Breeding

Remote Sensing · 10 Dec 2019 · 10.3390/rs11242952

Abstract

One of the major limitations for sugarcane genetic improvement is the low heritability of yield in the early stages of breeding, mainly due to confounding inter-plot competition effects. In this study, we investigate an indirect selection index (Si), developed based on traits correlated to yield (indirect traits) that were measured using an unmanned aerial vehicle (UAV), to improve clonal assessment in early stages of sugarcane breeding. A single-row early-stage clonal assessment trial, involving 2134 progenies derived from 245 crosses, and a multi-row experiment representative of pure-stand conditions, with an unrelated population of 40 genotypes, were used in this study. Both experiments were screened at several stages using visual, multispectral, and thermal sensors mounted on a UAV for indirect traits, including canopy cover, canopy height, canopy temperature, and normalised difference vegetation index (NDVI). To construct the indirect selection index, phenotypic and genotypic variance-covariances were estimated in the single-row and multi-row experiment, respectively. Clonal selection from the indirect selection index was compared to single-row yield-based selection. Ground observations of stalk number and plant height at six months after planting made from a subset of 75 clones within the single-row experiment were highly correlated to canopy cover (rg = 0.72) and canopy height (rg = 0.69), respectively. The indirect traits had high heritability and strong genetic correlation with cane yield in both the single-row and multi-row experiments. Only 45% of the clones were common between the indirect selection index and single-row yield based selection, and the expected efficiency of correlated response to selection for pure-stand yield based on indirect traits (44%–73%) was higher than that based on single-row yield (45%). These results highlight the potential of high-throughput phenotyping of indirect traits combined in an indirect selection index for improving early-stage clonal selections in sugarcane breeding.

Plant phenotyping relevance

UAV搭載の可視・マルチスペクトル・熱センサーでサトウキビの形態・生理形質を高スループット取得し、育種選抜への統合方法を評価しており、表現型取得が研究の中心である。

titleHigh-Throughput Phenotyping of Indirect Traits for Early-Stage Selection in Sugarcane Breeding
abstractBoth experiments were screened at several stages using visual, multispectral, and thermal sensors mounted on a UAV for indirect traits, including canopy cover, canopy height, canopy temperature, and normalised difference vegetation index (NDVI).
abstractThese results highlight the potential of high-throughput phenotyping of indirect traits combined in an indirect selection index for improving early-stage clonal selections in sugarcane breeding.

Code and data availability

The supplied blocks describe UAV-based sugarcane phenotyping (multispectral, thermal, visual imagery; selection index analysis in R) but contain no data availability statement, no public repository deposit, and no author code release. The only URL present is the CC BY license notice, which is not a paper-specific asset

No evidence-backed public reproduction asset is currently recorded.

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