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硬粒小麦(L. var.)根系对干旱和盐胁迫的响应以及根系相关性状的遗传特征分析。

Durum wheat ( L. var. ) root system response to drought and salt stresses and genetic characterization for root-related traits.

作者信息

Bonfiglioli Luca, Urbanavičiūtė Ieva, Pagnotta Mario A

机构信息

Department of Agricultural and Forest Sciences, Tuscia University, Viterbo, Italy.

出版信息

Front Plant Sci. 2024 Mar 22;15:1362917. doi: 10.3389/fpls.2024.1362917. eCollection 2024.

Abstract

Abiotic stresses such as drought and salt are significant threats to crop productivity. The root system adaptation and tolerance to abiotic stresses are regulated by many biochemical reactions, which create a complex and multigenic response. The present study aims to evaluate the diversity of root responses to cyclic abiotic stress in three modern durum wheat varieties and one hydric stress-tolerant landrace in a pot experiment from seedling to more advanced plant development stages. The genotypes responded to abiotic stress during the whole experiment very differently, and at the end of the experiment, nine out of the 13 traits for the landrace J. Khetifa were significantly higher than other genotypes. Moreover, single sequence repeat (SSR) genetic analysis revealed high polymorphism among the genotypes screened and interesting private alleles associated with root system architecture traits. We propose that the markers used in this study could be a resource as material for durum wheat breeding programs based on marker-assisted selection to increase the vegetal material with high drought and salt stress tolerance and to identify candidates with strong early vigor and efficient root systems. This study provides appropriate genetic materials for marker-assisted breeding programs as well as a basic study for the genetic diversity of root traits of durum wheat crops.

摘要

干旱和盐渍等非生物胁迫是对作物生产力的重大威胁。根系对非生物胁迫的适应和耐受性受许多生化反应调控,这些反应产生复杂的多基因响应。本研究旨在通过盆栽试验,从幼苗期到更高级的植株发育阶段,评估三个现代硬粒小麦品种和一个耐水分胁迫地方品种对周期性非生物胁迫的根系反应多样性。在整个实验过程中,各基因型对非生物胁迫的反应差异很大,在实验结束时,地方品种J. Khetifa的13个性状中有9个显著高于其他基因型。此外,单序列重复(SSR)遗传分析显示,所筛选的基因型之间具有高度多态性,并且存在与根系结构性状相关的有趣私有等位基因。我们认为,本研究中使用的标记可作为硬粒小麦育种计划的资源材料,用于基于标记辅助选择,增加具有高耐旱和耐盐胁迫能力的植物材料,并鉴定具有强早期活力和高效根系的候选材料。本研究为标记辅助育种计划提供了合适的遗传材料,同时也为硬粒小麦作物根系性状的遗传多样性提供了基础研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22d6/10995220/124419a91598/fpls-15-1362917-g001.jpg

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