Eco-physiological peculiarities of Stellaria humifusa in West Spitsbergen

IF 0.5 Q4 ECOLOGY Czech Polar Reports Pub Date : 2019-06-01 DOI:10.5817/cpr2019-2-13
E. Markovskaya, E. Novichonok, N. Y. Shmakova
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引用次数: 1

Abstract

In the present paper, the results of the research of biometric parameters and functional peculiarities of photosynthetic apparatus of Stellaria humifusa in West Spitsbergen are discussed. The study showed that the largest proportion of the mat is composed of a brown layer of dead leaves covering the assimilative organs (about 70%). Green leaves and shoots accounted for about 20%, whereas generative organs – for about 10% of the mat mass. The values of the maximum photochemical quantum yield of PS II (FV/FM) in all the studied plants were lower than the optimal values (0.83), which suggests that the plants are exposed to stress factors. The low values of chlorophyll and carotenoid content and relatively high values of the light-harvesting complex (70-80%), the sharp decrease in the quantum yield of PS II (FPSII) entailed by a marginal increase in PPFD indicative of a sufficiently high of photochemical activity within the range of low and medium values of light. It also suggests that Stellaria humifusa is well-adapted to the shaded conditions created in the mat. Besides, a considerable decrease the maximum fluorescence yield of a light-adapted leaf (FM´) at increasing PPFD was observed, which suggests that Stellaria humifusa has a well-developed mechanism of energy dissipation via the non-photochemical (NPQ) pathway. The rapid development of NPQ gives reason to assume that, under high light conditions, non-photochemical quenching is likely to serve as the main mechanism for preventing the photodamage of the photosynthetic apparatus. Thus, it was shown that the photosynthetic apparatus of Stellaria humifusa works efficiently under the conditions created in the mat, and the thick layer of dead leaves covering the assimilative organs, on the one hand, protects them from excessive light, and on the other hand, absorbs thermal energy, which raises temperature of the local habitat.
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西斯匹次卑尔根矮星的生态生理特性
本文讨论了西斯匹次卑尔根地区腐植草(Stellaria humifusa)光合器官的生物特征参数和功能特性的研究结果。研究表明,草席上覆盖同化器官的褐色枯叶层所占比例最大(约70%)。绿叶和芽约占20%,而生殖器官约占10%。所有植物PS II的最大光化学量子产率(FV/FM)均低于最优值(0.83),表明植物受到了胁迫因素的影响。叶绿素和类胡萝卜素含量较低,而捕光复合物的含量相对较高(70-80%),PPFD的微小增加导致PSII (FPSII)的量子产率急剧下降,这表明在中低光值范围内具有足够高的光化学活性。此外,随着PPFD的增加,光适应叶片的最大荧光产量(FM´)显著降低,这表明腐植草具有完善的非光化学(NPQ)途径的能量耗散机制。NPQ的快速发展使我们有理由认为,在强光条件下,非光化学猝灭可能是防止光合机构光损伤的主要机制。由此可见,腐植草的光合器官在草垫条件下有效地工作,覆盖同化器官的厚厚的枯叶层一方面保护它们免受过多的光照,另一方面吸收热能,从而提高了当地栖息地的温度。
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来源期刊
Czech Polar Reports
Czech Polar Reports Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
1.30
自引率
10.00%
发文量
22
期刊介绍: Czech Polar Reports is an international, multidisciplinary, peer-reviewed journal. It is issued 2 times a year. The journal is dedicated to provide original research papers for sciences related to the polar regions and other planets with polar analogues. Czech Polar Reports covers the disciplines listed below. polar paleontology, geology, geochemistry, geomorphology, glaciology, climatology, hydrology, pedology, biochemistry, ecology, environmental science, microbiology, plant and animal biology including marine biology.
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