Nardini Andrea, Savi Tadeja, Losso Adriano, Petit Giai, Pacilè Serena, Tromba Giuliana, Mayr Stefan, Trifilò Patrizia, Lo Gullo Maria A, Salleo Sebastiano
Dipartimento di Scienze della Vita, Università di Trieste, Via L. Giorgieri 10, 34127, Trieste, Italy.
Institut für Botanik, Universität Innsbruck, Sternwarterstrasse 15, A-6020, Innsbruck, Austria.
New Phytol. 2017 Feb;213(3):1068-1075. doi: 10.1111/nph.14245. Epub 2016 Oct 13.
Drought-induced xylem embolism is a serious threat to plant survival under future climate scenarios. Hence, accurate quantification of species-specific vulnerability to xylem embolism is a key to predict the impact of climate change on vegetation. Low-cost hydraulic measurements of embolism rate have been suggested to be prone to artefacts, thus requiring validation by direct visualization of the functional status of xylem conduits using nondestructive imaging techniques, such as X-ray microtomography (microCT). We measured the percentage loss of conductance (PLC) of excised stems of Laurus nobilis (laurel) dehydrated to different xylem pressures, and compared results with direct observation of gas-filled vs water-filled conduits at a synchrotron-based microCT facility using a phase contrast imaging modality. Theoretical PLC calculated on the basis of microCT observations in stems of laurel dehydrated to different xylem pressures overall were in agreement with hydraulic measurements, revealing that this species suffers a 50% loss of xylem hydraulic conductance at xylem pressures averaging -3.5 MPa. Our data support the validity of estimates of xylem vulnerability to embolism based on classical hydraulic techniques. We discuss possible causes of discrepancies between data gathered in this study and those of recent independent reports on laurel hydraulics.
干旱诱导的木质部栓塞是未来气候情景下对植物生存的严重威胁。因此,准确量化物种对木质部栓塞的特定脆弱性是预测气候变化对植被影响的关键。有人提出,低成本的栓塞率水力测量容易出现假象,因此需要使用无损成像技术(如X射线显微断层扫描(microCT))直接观察木质部导管的功能状态来进行验证。我们测量了脱水至不同木质部压力的月桂树(月桂)离体茎干的导水率损失百分比(PLC),并在基于同步加速器的microCT设施中使用相衬成像模式,将结果与直接观察充满气体与充满水的导管进行比较。基于对脱水至不同木质部压力的月桂树茎干的microCT观察计算出的理论PLC总体上与水力测量结果一致,表明该物种在平均木质部压力为-3.5 MPa时,木质部水力导度损失50%。我们的数据支持基于经典水力技术对木质部栓塞脆弱性估计的有效性。我们讨论了本研究收集的数据与近期关于月桂树水力的独立报告数据之间差异的可能原因。