Cronje Regina B, Jonker Arnoldus J
Agricultural Research Council - Tropical and Subtropical Crops, Mbombela, South Africa.
Bio Protoc. 2023 Mar 20;13(6):e4636. doi: 10.21769/BioProtoc.4636.
Ethylene is an important plant hormone that is involved in the regulation of numerous processes in plant development. It also acts as a signaling molecule in response to biotic and abiotic stress conditions. Most studies have investigated ethylene evolution of harvested fruit or small herbaceous plants under controlled conditions, but only a few explored ethylene release in other plant tissues, such as leaves and buds, particularly those of subtropical crops. However, in light of increasing environmental challenges in agriculture (such as temperature extremes, droughts, floods, and high solar radiation), studies on these challenges and on potential chemical treatments for mitigating their effects on plant physiology have become more and more important. Thus, adequate techniques for the sampling and analysis of tree crops are needed to ensure accurate ethylene quantification. As part of a study on ethephon as a mitigating agent to improve litchi flowering under warm winter conditions, a protocol was developed for ethylene quantification in leaf and bud tissue of litchi following ethephon application, taking into account that these plant organs release lower ethylene concentrations than fruit. At sampling, leaves and buds were placed in glass vials of appropriate sizes for the respective plant tissue volumes and allowed to equilibrate for 10 min to release possible wound ethylene before incubating the samples for 3 h at ambient temperature. Thereafter, ethylene samples were aspirated from the vials and analyzed using a gas chromatograph with flame ionization detection, the TG-BOND Q+ column for separation of ethylene, and helium as the carrier gas. Quantification was achieved based on a standard curve derived from an external standard gas calibration with certified ethylene gas. This protocol will also be appropriate for other tree crops with similar plant materials as study foci. It will enable researchers to accurately determine ethylene production in various studies investigating the role of ethylene in general plant physiology or stress-induced plant responses following a range of treatment conditions.
乙烯是一种重要的植物激素,参与植物发育中众多过程的调控。它还作为一种信号分子,响应生物和非生物胁迫条件。大多数研究在受控条件下研究了采后果实或小型草本植物的乙烯释放,但只有少数研究探讨了其他植物组织(如叶片和芽)中的乙烯释放,特别是亚热带作物的这些组织。然而,鉴于农业中环境挑战日益增加(如极端温度、干旱、洪水和高太阳辐射),关于这些挑战以及减轻其对植物生理影响的潜在化学处理的研究变得越来越重要。因此,需要适当的技术来对木本作物进行采样和分析,以确保准确量化乙烯。作为关于乙烯利作为缓解剂以改善暖冬条件下荔枝开花的研究的一部分,制定了一个方案,用于在施用乙烯利后对荔枝叶片和芽组织中的乙烯进行量化,同时考虑到这些植物器官释放的乙烯浓度低于果实。在采样时,将叶片和芽放入适合各自植物组织体积的玻璃小瓶中,使其平衡10分钟以释放可能的伤口乙烯,然后在环境温度下将样品孵育3小时。此后,从瓶中吸出乙烯样品,并使用配有火焰离子化检测的气相色谱仪进行分析,使用TG-BOND Q+柱分离乙烯,以氦气作为载气。基于由经认证的乙烯气体进行的外标气体校准得出的标准曲线进行定量。该方案也适用于以类似植物材料为研究重点的其他木本作物。它将使研究人员能够在各种研究中准确测定乙烯产量,这些研究调查乙烯在一般植物生理学中的作用或一系列处理条件后胁迫诱导的植物反应。