Abstract

Periodic drought events present a significant and, with climate change, increasing constraint on temperate forage plants' production. Consequently, improving plants' adaptive response to abiotic stress is a key goal to ensure agricultural productivity in these regions. In this study we developed a new methodology, using both area-based comparison and soil water content measurements of individual non-irrigated and irrigated clones, to assess performance of perennial ryegrass (Lolium perenne L.) genotypes subjected to moisture stress in a simulated competitive environment. We applied this method to the evaluation of a full-sibling population from a pair cross between genotypes from a New Zealand cultivar and a Moroccan ecotype. Our hypothesis was that: (i) both leaf lamina regrowth after defoliation (LR) and plant vigour affect plant performance during drought and rehydration; and (ii) quantitative trait loci (QTLs) associated with plant performance under moisture stress could be identified. Differences amongst genotypes in dry matter (DM) production, early vigour at establishment, leaf elongation rate and LR were measured. LR explained most of the variation in DM production during exposure to moisture deficit and rehydration followed by plant vigour, indicated by initial DM production in both treatments and subsequent measures of DM production of irrigated clones. We identified two main QTL regions associated with DM production and LR, both during drought exposure and rehydration. Further research focused on these regions should improve our understanding of the genetic control of drought response in this forage crop and potentially other grass species with significant synteny, and support improvement in performance through molecular breeding approaches.

Highlights

  • Perennial ryegrass (Lolium perenne L.) is widely used in grazing systems across the temperate world (Casler and Kallenbach, 2007)

  • We identified two main quantitative trait locus (QTL) regions associated with dry matter (DM) production and lamina regrowth after defoliation (LR), both during drought exposure and rehydration

  • For a robust assessment of genotype performance during drought, defined here as ‘the capability of the plant to maintain dry matter (DM) yield production during drought’, it is crucial that the drought treatments imposed in experimental systems are similar to the stresses that occur naturally, both in intensity, duration, and timing of initiation of drought (Da Silveira Pinheiro, 2003), and that factors such as ambient temperature and photoperiod are considered alongside drought intensity

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Summary

Introduction

Perennial ryegrass (Lolium perenne L.) is widely used in grazing systems across the temperate world (Casler and Kallenbach, 2007). Improving plant persistence, including adaptive response to Abbreviations: BLAT, BLAST-like alignment Tool; BLASTN, nucleotide basic local alignment search tool; CP, cross pollination; DM-Pre, dry matter yield before initiation of the drought treatment; DM-Mid, dry matter yield at mid drought; DM-Severe, dry matter yield at severe drought; DM-Post, dry matter yield at rehydration stage; ILGI, International Lolium Genome Initiative; IM, interval mapping; LER, leaf elongation rate; LOD, logarithm-of-odds score; MAS, marker-assisted selection; MQM, multiple QTL mapping; PV, phenotypic variance; QTL(s), quantitative trait locus (loci); SSR, simple sequence repeat; SWC, soil water content; LR, leaf lamina regrowth after defoliation. For a robust assessment of genotype performance during drought, defined here as ‘the capability of the plant to maintain dry matter (DM) yield production during drought’, it is crucial that the drought treatments imposed in experimental systems are similar to the stresses that occur naturally, both in intensity, duration, and timing of initiation of drought (Da Silveira Pinheiro, 2003), and that factors such as ambient temperature and photoperiod are considered alongside drought intensity

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