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声学脆弱性、水力容量和木质部解剖结构决定了小粒谷物的干旱响应。

Acoustic Vulnerability, Hydraulic Capacitance, and Xylem Anatomy Determine Drought Response of Small Grain Cereals.

作者信息

Degraeve Szanne, De Baerdemaeker Niels J F, Ameye Maarten, Leroux Olivier, Haesaert Geert Jozej Willem, Steppe Kathy

机构信息

Department of Plants and Crops, Faculty of Bioscience Engineering, Ghent University, Ghent, Belgium.

Laboratory of Plant Ecology, Department of Plants and Crops, Faculty of Bioscience Engineering, Ghent University, Ghent, Belgium.

出版信息

Front Plant Sci. 2021 May 25;12:599824. doi: 10.3389/fpls.2021.599824. eCollection 2021.

Abstract

Selection of high-yielding traits in cereal plants led to a continuous increase in productivity. However, less effort was made to select on adaptive traits, favorable in adverse and harsh environments. Under current climate change conditions and the knowledge that cereals are staple foods for people worldwide, it is highly important to shift focus to the selection of traits related to drought tolerance, and to evaluate new tools for efficient selection. Here, we explore the possibility to use vulnerability to drought-induced xylem embolism of wheat cultivars Excalibur and Hartog ( L.), rye cultivar Duiker Max ( L.), and triticale cultivars Dublet and US2014 ( Wittmack) as a proxy for their drought tolerance. Multiple techniques were combined to underpin this hypothesis. During bench-top dehydration experiments, acoustic emissions (AEs) produced by formation of air emboli were detected, and hydraulic capacitances quantified. By only looking at the AE values, one would classify wheat cultivar Excalibur as most tolerant and triticale cultivar Dublet as most vulnerable to drought-induced xylem embolism, though Dublet had significantly higher hydraulic capacitances, which are essential in terms of internal water storage to temporarily buffer or delay water shortage. In addition, xylem anatomical traits revealed that both cultivars have a contrasting trade-off between hydraulic safety and efficiency. This paper emphasizes the importance of including a cultivar's hydraulic capacitance when evaluating its drought response and vulnerability to drought-induced xylem embolism, instead of relying on the AE as the one parameter.

摘要

谷类作物高产性状的选择使产量持续提高。然而,在适应性性状(即在不利和恶劣环境中有利的性状)的选择方面投入的精力较少。在当前气候变化条件下,且鉴于谷物是全球人类的主食,将重点转向耐旱相关性状的选择并评估高效选择的新工具至关重要。在此,我们探讨利用小麦品种Excalibur和Hartog(L.)、黑麦品种Duiker Max(L.)以及小黑麦品种Dublet和US2014(Wittmack)对干旱诱导木质部栓塞的脆弱性作为其耐旱性指标的可能性。我们结合了多种技术来支持这一假设。在台式脱水实验中,检测到空气栓塞形成产生的声发射(AE),并对水力电容进行了量化。仅看AE值的话,会将小麦品种Excalibur归类为最耐旱,而小黑麦品种Dublet最易受干旱诱导的木质部栓塞影响,尽管Dublet具有显著更高的水力电容,这对于内部水分储存以暂时缓冲或延迟缺水至关重要。此外,木质部解剖学特征表明,这两个品种在水力安全性和效率之间存在相反的权衡。本文强调在评估品种的干旱响应及其对干旱诱导木质部栓塞的脆弱性时,纳入品种的水力电容的重要性,而不是仅依赖AE这一个参数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b5a/8186553/719449428404/fpls-12-599824-g001.jpg

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