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一种半落叶灌木——岩蔷薇(Cistus salvifolius)对夏季严重干旱和热胁迫的耐受性

Resilience of a semi-deciduous shrub, Cistus salvifolius, to severe summer drought and heat stress.

作者信息

Grant Olga M, Tronina Ukasz, García-Plazaola José I, Esteban Raquel, Pereira João Santos, Chaves M Manuela

机构信息

Laboratório de Ecofisiologia Molecular, Instituto de Tecnologia Química e Biológica, Quinta do Marquês, 2784-505 Oeiras, Portugal.

Agrobiotechnology Institute. IdAB-CSIC-UPNA, E- 31192 Mutilva, Navarra, Spain.

出版信息

Funct Plant Biol. 2015 Feb;42(2):219-228. doi: 10.1071/FP14081.

Abstract

Shrubs often form the understorey in Mediterranean oak woodlands. These shrubs are exposed to recurrent water deficits, but how they will respond to predicted future exacerbation of drought is not yet understood. The ecophysiology of the shrub Cistus salvifolius L. was studied over the summer of 2005, which was during a heat-wave superimposed on the most severe drought in the Iberian Peninsula in the last 140 years. Branch water potential fell drastically during the summer, accompanied by stomatal closure and downregulation of PSII, with a concomitant loss of chlorophyll in the leaves. A parallel increase in the ratio of light-dissipating to light-capturing pigments and the proportion of xanthophyll cycle pigments in the de-epoxidated state, along with alterations in the structure of the light harvesting complex, may have reduced the potential for damage to leaves. Substantial increases in leaf tocopherol content during high radiation may have reduced damage from free radicals. Following autumn rains, leaves of the same shrubs showed physiological recovery, indicating the resilience of this Mediterranean species, for which an extremely dry hydrological year with 45% less rainfall than average, did not prevent healthy leaf functioning in response to renewed soil moisture availability.

摘要

在地中海橡树林地中,灌木常构成林下植被层。这些灌木经常面临反复的水分亏缺,但它们如何应对未来预计的干旱加剧情况尚不清楚。2005年夏季对灌木岩蔷薇(Cistus salvifolius L.)的生理生态学进行了研究,当时正值热浪叠加在伊比利亚半岛过去140年来最严重的干旱期间。夏季,枝条水势急剧下降,同时气孔关闭,PSII下调,叶片中的叶绿素随之损失。光耗散色素与光捕获色素的比例以及脱环氧化状态下叶黄素循环色素的比例同时增加,再加上光捕获复合体结构的改变,可能降低了叶片受损的可能性。在高辐射期间,叶片生育酚含量大幅增加,可能减少了自由基造成的损害。秋季降雨后,同一批灌木的叶片显示出生理恢复,表明这种地中海物种具有恢复力,即使在一个极其干旱的水文年份,降雨量比平均水平少45%,也不妨碍叶片在土壤水分再次可得时正常发挥功能。

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