Egan Lucy, Hofmann Rainer, Nichols Shirley, Hadipurnomo Jonathan, Hoyos-Villegas Valerio
AgResearch Lincoln Research Centre, Christchurch, New Zealand.
Faculty of Agriculture and Life Sciences, Lincoln University, Lincoln, New Zealand.
Front Plant Sci. 2021 Mar 17;12:595030. doi: 10.3389/fpls.2021.595030. eCollection 2021.
Determining the performance of white clover cultivars under drought conditions is critical in dry climates. However, comparing the differences in cultivar performance requires equivalent soil water content for all plants, to reduce the water deficit threshold eliciting stomatal closure. In this study, the objective was to compare the rate of stomatal closure in eighty white clover cultivars in response to soil drying. Two glasshouse experiments were conducted, and the daily transpiration rate was measured by weighing each pot. The transpiration rate of the drought-stressed plants were normalized against the control plants to minimize effects from transpiration fluctuations and was recorded as the normalized transpiration rate (NTR). The daily soil water content was expressed as the fraction of transpirable soil water (FTSW). The FTSW threshold (FTSWc) was estimated after which the NTR decreases linearly. The FTSWc marks the critical point where the stomata start to close, and transpiration decreases linearly. The significant difference ( 0.05) between the 10 cultivars with the highest and lowest FTSWc demonstrates the cultivars would perform better in short- or long-term droughts.
在干旱气候条件下,确定白三叶草品种在干旱条件下的表现至关重要。然而,比较品种表现的差异需要所有植株的土壤含水量相当,以降低引发气孔关闭的水分亏缺阈值。在本研究中,目的是比较80个白三叶草品种对土壤干燥的气孔关闭速率。进行了两个温室试验,通过称量每个花盆来测量每日蒸腾速率。将干旱胁迫植株的蒸腾速率相对于对照植株进行标准化,以尽量减少蒸腾波动的影响,并记录为标准化蒸腾速率(NTR)。每日土壤含水量表示为可蒸发土壤水分数(FTSW)。估计FTSW阈值(FTSWc),在此之后NTR呈线性下降。FTSWc标志着气孔开始关闭且蒸腾呈线性下降的临界点。FTSWc最高和最低的10个品种之间的显著差异(P<0.05)表明这些品种在短期或长期干旱中表现会更好。