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利用精准表型分析来审视鹰嘴豆植物遗传资源中的营养期耐旱性和恢复能力。

Engaging Precision Phenotyping to Scrutinize Vegetative Drought Tolerance and Recovery in Chickpea Plant Genetic Resources.

作者信息

Lauterberg Madita, Tschiersch Henning, Papa Roberto, Bitocchi Elena, Neumann Kerstin

机构信息

Leibniz Institute of Plant Genetics and Crop Plant Research (IPK), 06466 Gatersleben, Germany.

Department of Agricultural, Food and Environmental Sciences, Università Politecnica delle Marche, 60131 Ancona, Italy.

出版信息

Plants (Basel). 2023 Aug 4;12(15):2866. doi: 10.3390/plants12152866.

Abstract

Precise and high-throughput phenotyping (HTP) of vegetative drought tolerance in chickpea plant genetic resources (PGR) would enable improved screening for genotypes with low relative loss of biomass formation and reliable physiological performance. It could also provide a basis to further decipher the quantitative trait drought tolerance and recovery and gain a better understanding of the underlying mechanisms. In the context of climate change and novel nutritional trends, legumes and chickpea in particular are becoming increasingly important because of their high protein content and adaptation to low-input conditions. The PGR of legumes represent a valuable source of genetic diversity that can be used for breeding. However, the limited use of germplasm is partly due to a lack of available characterization data. The development of HTP systems offers a perspective for the analysis of dynamic plant traits such as abiotic stress tolerance and can support the identification of suitable genetic resources with a potential breeding value. Sixty chickpea accessions were evaluated on an HTP system under contrasting water regimes to precisely evaluate growth, physiological traits, and recovery under optimal conditions in comparison to drought stress at the vegetative stage. In addition to traits such as Estimated Biovolume (EB), Plant Height (PH), and several color-related traits over more than forty days, photosynthesis was examined by chlorophyll fluorescence measurements on relevant days prior to, during, and after drought stress. With high data quality, a wide phenotypic diversity for adaptation, tolerance, and recovery to drought was recorded in the chickpea PGR panel. In addition to a loss of EB between 72% and 82% after 21 days of drought, photosynthetic capacity decreased by 16-28%. Color-related traits can be used as indicators of different drought stress stages, as they show the progression of stress.

摘要

对鹰嘴豆植物遗传资源(PGR)的营养期耐旱性进行精确且高通量的表型分析(HTP),将有助于更有效地筛选出生物量形成相对损失低且具有可靠生理性能的基因型。这也可为进一步解读耐旱性和恢复的数量性状以及更好地理解其潜在机制提供依据。在气候变化和新型营养趋势的背景下,豆类尤其是鹰嘴豆因其高蛋白含量和对低投入条件的适应性而变得越来越重要。豆类的PGR是可用于育种的宝贵遗传多样性来源。然而,种质利用有限部分是由于缺乏可用的特征数据。HTP系统的发展为分析动态植物性状(如非生物胁迫耐受性)提供了前景,并可支持鉴定具有潜在育种价值的合适遗传资源。在一个HTP系统上,对60份鹰嘴豆种质在不同水分条件下进行了评估,以精确评估其在营养生长阶段与干旱胁迫相比,在最佳条件下的生长、生理性状及恢复情况。除了在四十多天内对估计生物量(EB)、株高(PH)和几个与颜色相关的性状进行测量外,还在干旱胁迫前、期间和之后的相关日子通过叶绿素荧光测量来检测光合作用。凭借高质量的数据,在鹰嘴豆PGR群体中记录到了广泛的适应、耐受和恢复干旱的表型多样性。干旱21天后,除了EB损失72%至82%外,光合能力下降了16 - 28%。与颜色相关的性状可作为不同干旱胁迫阶段的指标,因为它们显示了胁迫的进展情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a307/10421427/ebbeae1ce827/plants-12-02866-g001.jpg

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