Experimental analysis of genetic and environmental interactions on leaf elongation and reproductive development in Lolium perenne.

IF 2.6 3区 生物学 Q2 ECOLOGY
AoB Plants Pub Date : 2024-12-24 eCollection Date: 2025-01-01 DOI:10.1093/aobpla/plae069
Simon Rouet, Jean-Louis Durand, Alice Troux, Romain Barillot
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引用次数: 0

Abstract

Perennial grasses' reproductive phenology profoundly impacts plant morphogenesis, biomass production, and perenniality in natural ecosystems and cultivated grasslands. Complex interactions between vegetative and reproductive development complicate grass phenology prediction for various environments and genotypes. This work aims to analyse genetic × environment interactions effects on tiller growth and reproductive development in Lolium perenne. Three perennial ryegrass cultivars, Bronsyn, Carvalis, and Tryskal, were grown from seedling to heading under four inductive conditions. T0 plants were continuously exposed to high temperatures and long days (HT-LD). T1, T2, and T3, plants were initially exposed to low temperatures and short days (LT-SD) for 9 weeks. Then, T1 plants were immediately transferred to high temperatures and long days (HT-LD). Before their exposure to HT-LD, T2, and T3 plants were first transferred to high temperatures and short days (HT-SD) for 3 and 6 weeks, respectively. Leaf length, leaf emergence, and heading were regularly monitored. Floral transition and heading only occurred in T1, T2, and T3, i.e. after successive exposure to low temperature and long photoperiod. Bronsyn had higher heading earliness and proportion of reproductive tillers than Carvalis and Tryskal. The duration of HT-SD exposure affected the final number of leaves and spikelets. The rate of leaf and spikelet production significantly increased once plants were exposed to LD. Our results suggest an additive effect of the photoperiod and floral transition on leaf elongation rate. These findings enhance our understanding of the genetic × environment interactions on the vegetative and reproductive development in perennial ryegrass.

遗传与环境互作对黑麦草叶片伸长和生殖发育的影响。
多年生牧草的生殖物候对自然生态系统和人工草地植物的形态发生、生物量生产和多年生性有着深远的影响。营养发育和生殖发育之间复杂的相互作用使不同环境和基因型的草物候预测复杂化。本研究旨在分析遗传×环境互作对黑麦草分蘖生长和生殖发育的影响。以Bronsyn、Carvalis和Tryskal 3个多年生黑麦草品种为研究对象,在4种诱导条件下从幼苗到抽穗。10株植物连续高温长日照(HT-LD)。在T1、T2和T3阶段,植物首先暴露在低温短日(LT-SD)环境中9周。然后,T1植株立即转移到高温长日照(HT-LD)。在接触HT-LD之前,先将T2和T3植株分别转入高温短日(HT-SD)处理3周和6周。定期监测叶长、出芽和抽穗情况。花的转变和抽穗只发生在T1、T2和T3,即连续暴露于低温和长光周期后。Bronsyn的抽穗率和繁殖分蘖比例均高于Carvalis和Tryskal。高温- sd处理的时间长短影响最终的叶片数和颖花数。当植物暴露于LD后,叶片和小穗的产量显著增加。我们的研究结果表明,光周期和花的转变对叶片伸长率有加性效应。这些发现有助于我们进一步了解遗传-环境相互作用对多年生黑麦草营养和生殖发育的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
AoB Plants
AoB Plants PLANT SCIENCES-
CiteScore
4.80
自引率
0.00%
发文量
54
审稿时长
20 weeks
期刊介绍: AoB PLANTS is an open-access, online journal that has been publishing peer-reviewed articles since 2010, with an emphasis on all aspects of environmental and evolutionary plant biology. Published by Oxford University Press, this journal is dedicated to rapid publication of research articles, reviews, commentaries and short communications. The taxonomic scope of the journal spans the full gamut of vascular and non-vascular plants, as well as other taxa that impact these organisms. AoB PLANTS provides a fast-track pathway for publishing high-quality research in an open-access environment, where papers are available online to anyone, anywhere free of charge.
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