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桃[(L.)巴施]品种在花芽萌发的表观基础温度和生长度日需求方面存在差异。

Peach [ (L.) Batsch] Cultivars Differ in Apparent Base Temperature and Growing Degree Hour Requirement for Floral Bud Break.

作者信息

Bielenberg Douglas G, Gasic Ksenija

机构信息

Department of Biological Sciences, Clemson University, Clemson, SC, United States.

Plant and Environmental Sciences, Clemson University, Clemson, SC, United States.

出版信息

Front Plant Sci. 2022 Feb 11;13:801606. doi: 10.3389/fpls.2022.801606. eCollection 2022.

Abstract

Bud break timing in peach [ (L.) Batsch] is determined by the sequential fulfillment of a chilling requirement (CR) and a heat requirement (HR) for development. Genotypic variation in CR has been well characterized in peach. Adapting peaches to low chilling environment through reduced CR can make them susceptible to crop destroying spring frosts, if bloom occurs too early. Potential variation in HR between accessions has received less attention due to the methodological difficulty in assessing HR independently of CR. HR could vary in the magnitude of growing degree hours (GDHs) and/or the base temperature at which GDH accumulation begins. Characterizing HR traits in peach accessions could allow improved bloom time modeling and selection of phenotypes with improved spring frost avoidance through delayed bloom. We estimated GDH and apparent base temperature for floral bud break by observing time to floral bud break at several constant forcing temperatures. We evaluated 54 peach accessions (representing a range of CR) in which chilling had been saturated after >1,700 h at 3°C. Accessions differed widely in both the GDH requirement (2,015 to 11,191°C⋅h) and apparent base temperature (-1.85 to 8.69°C) for GDH accumulation. GDH and apparent base temperature were negatively correlated. A simulation exercise was performed to assess relative importance of varying base temperature vs. GDH for delaying bloom at different chilling accumulations at three locations in the southeastern United States using 30 years of historical weather data. The aim of this study was to determine whether there may be unrecognized diversity in peach germplasm for two HR traits (base temperature and thermal time) to enable breeding efforts to delay floral bud break and reduce the frost exposure risk of developing flowers and fruits. Our results suggest that selecting cultivars for increased GDH would be a safer, more reliable strategy for delaying bloom than increasing base temperature for GDH accumulation.

摘要

桃[Prunus persica (L.) Batsch]的萌芽时间取决于发育过程中对低温需求量(CR)和热量需求量(HR)的依次满足。桃的CR基因型变异已得到充分研究。如果通过降低CR使桃适应低冷环境,而开花过早,可能会使其易受春季霜冻危害,从而导致作物减产。由于独立评估HR存在方法上的困难,不同种质间HR的潜在变异受到的关注较少。HR可能在生长度日(GDH)的大小和/或GDH积累开始时的基础温度方面存在差异。对桃种质的HR性状进行表征,有助于改进开花时间模型,并通过延迟开花来选择具有更好避霜能力的表型。我们通过在几个恒定的催花温度下观察花芽萌发时间,估算了花芽萌发的GDH和表观基础温度。我们评估了54份桃种质(代表一系列CR),这些种质在3°C下经过>1700小时后低温需求已饱和。不同种质在GDH需求(2015至11191°C·小时)和GDH积累的表观基础温度(-1.85至8.69°C)方面差异很大。GDH和表观基础温度呈负相关。利用30年的历史气象数据,在美国东南部的三个地点进行了模拟试验,以评估在不同低温积累条件下,基础温度变化与GDH对延迟开花的相对重要性。本研究的目的是确定桃种质中是否可能存在尚未被认识的两种HR性状(基础温度和热时间)的多样性,以便通过育种努力延迟花芽萌发,降低发育中的花和果实遭受霜冻的风险。我们的结果表明,选择具有较高GDH的品种来延迟开花,比提高GDH积累的基础温度是更安全、更可靠的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4632/8874129/7c45e73b5d05/fpls-13-801606-g001.jpg

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