Impact of drought and salt stress on galactinol and raffinose family oligosaccharides in common bean (Phaseolus vulgaris).

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-07-01 DOI:10.1093/aobpla/plad038
Ramon de Koning, Gertjan E Wils, Raphaël Kiekens, Luc De Vuyst, Geert Angenon
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引用次数: 1

Abstract

Due to climate change, farmers will face more extreme weather conditions and hence will need crops that are better adapted to these challenges. The raffinose family oligosaccharides (RFOs) could play a role in the tolerance of crops towards abiotic stress. To investigate this, we determined for the first time the importance of galactinol and RFOs in the roots and leaves of common bean under drought and salt stress conditions. Initially, the physiological characteristics of common bean under agronomically relevant abiotic stress conditions were investigated by measuring the growth rate, transpiration rate, chlorophyll concentration and membrane stability, allowing to establish relevant sampling points. Subsequently, the differential gene expression profiles of the galactinol and RFO biosynthetic genes and the amount of galactinol and RFO molecules were measured in the primary leaves and roots of Phaseolus vulgaris cv. CIAP7247F at these sampling points, using RT-qPCR and HPAEC-PAD, respectively. Under drought stress, the genes galactinol synthase 1, galactinol synthase 3 and stachyose synthase were significantly upregulated in the leaves and had a high transcript level in comparison with the other galactinol and RFO biosynthetic genes. This was in accordance with the significantly higher amount of galactinol and raffinose detected in the leaves. Under salt stress, raffinose was also present in a significantly higher quantity in the leaves. In the roots, transcript levels of the RFO biosynthetic genes were generally low and no galactinol, raffinose or stachyose could be detected. These results suggest that in the leaves, both galactinol and raffinose could play a role in the protection of common bean against abiotic stresses. Especially, the isoform galactinol synthase 3 could have a specific role during drought stress and forms an interesting candidate to improve the abiotic stress resistance of common bean or other plant species.

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干旱和盐胁迫对菜豆半乳糖醇和棉子糖家族低聚糖的影响
由于气候变化,农民将面临更多的极端天气条件,因此需要更好地适应这些挑战的作物。棉子糖家族寡糖(RFOs)可能在作物对非生物胁迫的耐受性中发挥作用。为此,我们首次确定了在干旱和盐胁迫条件下,半乳糖醇和rfo在普通豆根和叶中的重要性。首先,通过测定普通豆的生长速率、蒸腾速率、叶绿素浓度和膜稳定性,研究农艺相关非生物胁迫条件下普通豆的生理特性,建立相应的采样点。随后,测定了半乳糖醇和RFO生物合成基因的差异基因表达谱以及半乳糖醇和RFO分子在菜豆初生叶和根中的含量。分别用RT-qPCR和HPAEC-PAD检测这些采样点的CIAP7247F。干旱胁迫下,半乳糖醇合成酶1、半乳糖醇合成酶3和水苏糖合成酶基因在叶片中表达显著上调,且转录水平高于其他半乳糖醇和RFO生物合成基因。这与在叶子中检测到的高得多的半乳糖醇和棉子糖相一致。在盐胁迫下,棉子糖在叶片中的含量也显著增加。在根中,RFO生物合成基因的转录水平普遍较低,未检测到半乳糖醇、棉子糖或水苏糖。这些结果表明,半乳糖醇和棉子糖在普通豆叶片中对非生物胁迫具有保护作用。特别是半乳糖醇合成酶3在干旱胁迫中可能具有特定的作用,是提高普通豆或其他植物非生物抗逆性的一个有趣的候选物。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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