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适应低平均年降水量的锦鸡儿属植物气体交换的快速干旱恢复。

Rapid drought-recovery of gas exchange in Caragana species adapted to low mean annual precipitation.

机构信息

State Key Laboratory of Herbage Improvement and Grassland Agro-ecosystems, College of Ecology, Lanzhou University, Lanzhou, Gansu, China.

The UWA Institute of Agriculture and UWA School of Agriculture and Environment, The University of Western Australia M082, Crawley, Western Australia, Australia.

出版信息

Plant Cell Environ. 2023 Aug;46(8):2296-2309. doi: 10.1111/pce.14635. Epub 2023 Jun 9.

Abstract

While variation in mean annual precipitation (MAP) of the native habitat of a species has been shown to determine the ability of a species to resist a hydraulic decrease during drought, it remains unknown whether these variations in MAP also influence the ability of a species to recover and survive drought. Leaf hydraulic and gas exchange recovery following drought and the underlying mechanisms of these responses in six Caragana species from habitats along a large precipitation gradient were investigated during rehydration in a common garden. The gas exchange of species from arid habitats recovered more rapidly during rehydration after mild, moderate and severe drought stress treatments than species from humid habitats. The recovery of gas exchange was not associated with foliar abscisic acid concentration, but tightly related to the recovery of leaf hydraulic conductance (K ). The recovery of K was associated with the loss of K during dehydration under mild and moderate drought stress, and to leaf xylem embolism formation under severe drought stress. Results pointed to the different ability to recover in gas exchange in six Caragana species post-drought is associated with the MAP of the species in its native habitat.

摘要

虽然已经表明,物种原生栖息地的年平均降水量(MAP)变化决定了物种在干旱期间抵抗水力下降的能力,但仍不清楚这些 MAP 变化是否也会影响物种在干旱期间恢复和生存的能力。在一个共同的花园中进行再水合作用时,研究了来自沿大降水梯度的生境的六种柠条属物种在干旱后叶片水力和气体交换恢复情况以及这些响应的潜在机制。在轻度、中度和重度干旱胁迫处理后,来自干旱生境的物种在再水合作用期间的气体交换恢复得更快,而来自潮湿生境的物种则较慢。气体交换的恢复与叶片脱落酸浓度无关,但与叶片水力导度(K)的恢复密切相关。K 的恢复与轻度和中度干旱胁迫下脱水过程中 K 的损失以及严重干旱胁迫下叶片木质部栓塞形成有关。结果表明,六种柠条属物种在干旱后气体交换恢复能力的不同与它们在原生栖息地的 MAP 有关。

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