极端干旱条件下杠柳的落叶相对休眠-复水复苏型生存策略
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国家自然科学基金(31401820);中央高校基本科研业务费专项基金资助(KJQN201538);江苏省自然科学基金(BK20140702)


Survival Strategy of Periploca sepium under Extremely Drought Conditions:Being Relative Dormant and Quick Resuscitation
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    摘要:

    以3种梯度恒定干旱胁迫(土壤水分分别控制在最大田间持水量的80%、55%和35%)为对照,人工模拟持续自然干旱(干旱15~54 d后复水),研究黄土丘陵区广泛分布的乡土灌木杠柳(Periploca sepium)的形态、耗水、生长、生理在持续干旱、极端干旱以及旱后复水时的变化,探讨长期恒定胁迫及极端干旱下植物的适应性策略。结果表明:(1)在恒定干旱胁迫下,杠柳可调整生长和生理状况使其达到适应有限水分供应的新稳定状态;植株冠层减小,叶片可溶性糖积累以及过氧化物酶活性升高是杠柳适应长期恒定干旱胁迫的重要机制。(2)在长期自然干旱胁迫下,杠柳的形态与生理状况均持续变化。在叶片死亡脱落前,叶片中大量积累的脯氨酸、游离氨基酸和可溶性糖提高了杠柳对干旱胁迫的耐受性;随着干旱胁迫的加剧,杠柳叶片加速衰老死亡、以休眠芽形式进入相对休眠状态。(3)复水后根系和茎复苏长出新芽并补偿生长,新芽中高含量的脯氨酸和游离氨基酸以及高活性状态的SOD和POD表明新芽活跃的生理状态是其补偿生长的重要机制,即杠柳在极端干旱条件下具有落叶相对休眠-复水后复苏型生存策略。

    Abstract:

    Plant adaptation strategies to prolonged drought are drawing extensive attention due to climate change.Periploca sepium is a native and widespread species in drought-prone regions.To understand plant survival and recovery mechanisms from extreme drought,we investigated the morphology,solutes accumulation and antioxidant enzymes of P.sepium under progressing drought stress (PD) and during subsequent re-watering.Three prolonged constant drought stresses (PCD) were set as comparisons.For PCD,soil moistures were kept at 80%,55% and 35% of field capacity water content,respectively.For PD,seedlings were dehydrated for 15-54 d to reach various drought intensities.(1)Under PCD,P.sepium could adapt and enter into a new steady physiology.Reduced canopy size and higher level of soluble sugars (TSS) and peroxidase (POD) contributed mainly to its drought resistance.(2)Contrast to PCD,P.sepium under PD showed ever-changing morphology and physiology.In drought phase,high accumulated proline,free amino acids (FAA) and TSS conferred tolerance before leaf death.As drought intensifying,morphological changes especially the well-organized organ senescence played pivotal roles in P.sepium survival.(3)When re-watered,new buds appeared and grew significantly faster than normal plants.Surprisingly high level of proline,FAA,superoxide dismutase (SOD) and POD indicate highly active physiology in new buds.Proline,FAA concentrations as well as SOD and POD activities declined rapidly with plant reviving,indicating their important roles in plant recovery and compensatory re-growth.These results exhibit contrasting resistant mechanisms under PCD and PD,and provide new information on plant recovery mechanisms from extremely drought.

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安玉艳,梁宗锁.极端干旱条件下杠柳的落叶相对休眠-复水复苏型生存策略[J].西北植物学报,2015,35(12):2522-2531

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  • 在线发布日期: 2016-01-11
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