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Water Deficit Stress Responses of Three Native Australian Ornamental Herbaceous Wildflower Species for Water-wise Landscapes.

机译:三种本土澳大利亚观赏草本野花物种在水向景观中的水分亏缺胁迫响应。

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Perennial wildflower species are important but not well-understood elements in water-wise landscaping that anchors urban water conservation programs in arid climates. Comparative growth and physiological responses to soil substrate drying of three herbaceous Australian ornamental species from habitats of variable moisture regimes were investigated in the context of isohydric and anisohydric behavior. Clonal Orthosiphon aristatus, Dianella revoluta 'Breeze', and Ptilotus nobilis plants were container-grown individually and competitively together in two separate studies. In both studies, plants were water-stressed through cyclical dry downs. We measured stomatal conductance (gS), soil water content, and water potential during each study and osmotic adjustment estimated from pressure-volume data and plant biomass at the end of each study. O. aristatus, a rainforest species, fit a general anisohydric model of high water use and more negative water potential during soil drying until stomatal closure and leaf wilting. D. revolata and P. nobilis, indigenous to Australia's dry interior, fit a general isohydric, drought-tolerant model of stomatal closure from water deficits that moderates leaf water potential but through different mechanisms. P. nobilis and D. revolata moderate water use and maintain acceptable aesthetic performance under water stress, suitable for mixed low-water landscape plantings. O. aristatus would not be suitable for low-water urban landscapes, either isolated or in mixed plantings, because of high soil water depletion and wilting.
机译:多年生野花物种在以水为生的景观美化中很重要,但不是很容易理解的要素,这些要素是干旱气候下城市节水计划的基础。在等渗和等渗行为的背景下,研究了来自三种湿度变化的生境的三种澳大利亚牧草的比较生长和对土壤基质干燥的生理响应。在两个单独的研究中,分别以容器和竞争性方式将无性的Orthosiphon aristatus,Dianella revoluta'Breeze'和Ptilotus nobilis植物进行容器种植。在两项研究中,植物都因周期性干旱而受到水分胁迫。我们在每个研究期间测量气孔导度(gS),土壤水分和水势,并在每个研究结束时根据压力量数据和植物生物量估算渗透调节量。 O. aristatus是一种雨林物种,适合于在土壤干燥直至气孔关闭和叶子枯萎之前高耗水量和更大负水势的一般缺水模型。 D. revolata和P. nobilis,是澳大利亚干燥的内陆地区固有的,适合气孔关闭,缺水的一般等渗,耐旱模型,该模型通过不同的机制缓解了叶片水势。 P. nobilis和D. revolata适度用水,并且在水分胁迫下保持可接受的美学表现,适合混合低水景观种植。由于土壤水的大量消​​耗和枯萎,aristatus O.不适用于孤立或混合种植的低水城市景观。

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