聚乙二醇模拟干旱胁迫下 Saragolla 和 Svevo 小麦品种叶片的生理和解剖研究。

IF 2.6 4区 生物学 Q2 PLANT SCIENCES Functional Plant Biology Pub Date : 2024-02-01 DOI:10.1071/FP23151
Ilva Licaj, Chiara Germinario, Maria Chiara Di Meo, Ettore Varricchio, Mariapina Rocco
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引用次数: 0

摘要

随着全球气候变化的加剧,干旱胁迫的频率和严重程度都在增加,从而成为包括小麦在内的农作物生长和产量的主要问题。当前的挑战是探索不同的方法来培育耐旱性更强的小麦基因型。因此,我们对 "古老的 "品种重新产生了兴趣,这些品种有望比现在培育的少数优良品种更能承受环境压力。本研究旨在比较分析模拟干旱的聚乙二醇(PEG-6000)处理对 Saragolla 和 Svevo 这两个硬质小麦幼苗的形态解剖学和叶面生理特征的影响,因为这些特征能在一定程度上反映植物对环境的适应性。结果表明,与另一个品种相比,干旱胁迫下的 Saragolla 叶片表现出气孔密度降低较多、气孔宽度略有减少、木质部血管平均面积扩大、中叶细胞更紧凑、叶绿素含量略有减少,以及光合作用和生长性能更好。从这些表现来看,我们认为 Saragolla 栽培品种比 Svevo 更耐旱,因此很有希望在干旱地区种植。
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The physiology and anatomy study in leaves of Saragolla and Svevo wheat cultivars under polyethylene glycol-simulated drought stress.

Drought stress is increasing in frequency and severity with the progression of global climate change, thereby becoming a major concern for the growth and yield of crop plants, including wheat. The current challenge is to explore different ways of developing wheat genotypes with increased tolerance to drought. Therefore, we renewed interest in 'ancient' varieties expected to be more tolerant to environmental stress than the few elite varieties nowadays cultivated. This study aimed to perform comparative analysis of the effect of drought-simulating polyethylene glycol (PEG-6000) treatment on morpho-anatomical and physiological foliar traits of two durum wheat seedlings cultivars, Saragolla and Svevo, as these can reflect the adaptability of the plant to the environment to a certain extent. Results demonstrated that drought-stressed Saragolla leaves exhibited a greater reduction of stomatal density, a minor reduction of stomatal pore width, a wider xylem vessel mean area, greater compactness of mesophyll cells, a minor loss of chlorophyll content, as well as better photosynthetic and growth performance compared to the other variety. From such behaviours, we consider the Saragolla cultivar more drought tolerant than Svevo and therefore probably very promising for cultivation in dry areas.

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来源期刊
Functional Plant Biology
Functional Plant Biology 生物-植物科学
CiteScore
5.50
自引率
3.30%
发文量
156
审稿时长
1 months
期刊介绍: Functional Plant Biology (formerly known as Australian Journal of Plant Physiology) publishes papers of a broad interest that advance our knowledge on mechanisms by which plants operate and interact with environment. Of specific interest are mechanisms and signal transduction pathways by which plants adapt to extreme environmental conditions such as high and low temperatures, drought, flooding, salinity, pathogens, and other major abiotic and biotic stress factors. FPB also encourages papers on emerging concepts and new tools in plant biology, and studies on the following functional areas encompassing work from the molecular through whole plant to community scale. FPB does not publish merely phenomenological observations or findings of merely applied significance. Functional Plant Biology is published with the endorsement of the Commonwealth Scientific and Industrial Research Organisation (CSIRO) and the Australian Academy of Science. Functional Plant Biology is published in affiliation with the Federation of European Societies of Plant Biology and in Australia, is associated with the Australian Society of Plant Scientists and the New Zealand Society of Plant Biologists.
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