温度和CO2浓度升高对雪柏叶片水力特性的响应

IF 3.4 3区 生物学 Q1 Agricultural and Biological Sciences Botanical Studies Pub Date : 2022-01-24 DOI:10.1186/s40529-022-00331-2
Yao Zhao, Mei Sun, Huijun Guo, Chunhui Feng, Zhenya Liu, Junping Xu
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引用次数: 1

摘要

背景:在气候变化的背景下,高原湿地植物的功能性状对温度升高和CO2浓度的响应需要进一步研究。水力性状是植物维持生态功能的关键,影响着植物的生长和生存。然而,很少有研究全面考虑湿地植物在水、物输运、损失和滞留等方面对环境变化的响应策略。根据IPCC最新预测结果,在温度升高(2°C)和CO2浓度升高(850 μmol/mol)条件下,对中国高原湿地优势种塔伯纳蒙塔尼(Schoenoplectus tabernaemontani)水力特性的响应进行了研究。结果:与CK组相比,ET组柽桐的净光合速率、蒸腾速率、气孔长度、角质层厚度、维管束长度、维管束宽度和维管束面积显著降低,气孔密度和叶脉密度显著增加。与CK组相比,EC组塔伯纳孟塔尼的气孔长度和角质层厚度显著降低,气孔密度显著增加,其他参数值与对照组差异不显著。净光合速率与气孔长度、角质层厚度、维管束长度呈极显著正相关,气孔导度与角质层厚度呈极显著正相关。蒸腾速率与角质层厚度、表皮细胞面积、维管束长度、维管束宽度、维管束面积呈显著正相关。在水力性状方面,气孔密度与气孔长度或角质层厚度呈显著负相关,而后者呈显著正相关。表皮细胞面积与表皮厚度、维管束长度、维管束宽度、维管束面积呈显著正相关。结论:升高的温度和CO2浓度不利于塔伯纳蒙塔尼的光合活性。光合速率、气孔密度和大小、叶脉密度、表皮结构大小和维管束大小在该物种对温度和CO2浓度变化的适应中起重要作用。在适应过程中,水力性状不是相互孤立的,性状之间存在着功能关联。本研究为高原湿地的管理和保护提供了科学依据。
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Responses of leaf hydraulic traits of Schoenoplectus tabernaemontani to increasing temperature and CO2 concentrations.

Background: Against the background of a changing climate, the responses of functional traits of plateau wetland plants to increasing temperatures and CO2 concentrations need to be understood. Hydraulic traits are the key for plants to maintain their ecological functions and affect their growth and survival. However, few studies have comprehensively considered the response strategies of wetland plants' hydraulic traits to environmental changes in the context of water and matter transport, loss, and retention. According to the latest IPCC prediction results, we performed experiments under increased temperature (2 °C) and CO2 levels (850 μmol/mol) in an artificial Sealed-top Chamber (STC) to investigate the responses of the hydraulic characteristics of Schoenoplectus tabernaemontani, the dominant species in plateau wetlands in China.

Results: Compared with the CK group, net photosynthetic rate, transpiration rate, stomatal length, cuticle thickness, vascular bundle length, vascular bundle width, and vascular bundle area of S. tabernaemontani in the ET group were significantly reduced, whereas stomatal density and vein density increased significantly. Compared with the CK group, the hydraulic traits of S. tabernaemontani in the EC group were reduced considerably in stomatal length and cuticle thickness but increased dramatically in stomatal density, and there were no significant differences between other parameter values and the control group. Net photosynthetic rate was significantly positively correlated with stomatal length, cuticle thickness, and vascular bundle length, and stomatal conductance was significantly positively correlated with cuticle thickness. The transpiration rate was significantly positively correlated with cuticle thickness, epidermal cell area, vascular bundle length, vascular bundle width, and vascular bundle area. Regarding the hydraulic traits, there was a significant negative correlation between stomatal density and stomatal length, or cuticle thickness, and a significant positive correlation between the latter two. The epidermal cell area was significantly positively correlated with epidermal thickness, vascular bundle length, vascular bundle width, and vascular bundle area.

Conclusions: Increased temperature and CO2 levels are not conducive to the photosynthetic activity of S. tabernaemontani. Photosynthetic rate, stomatal density and size, vein density, epidermal structure size, and vascular bundle size play an essential role in the adaptation of this species to changes in temperature and CO2 concentration. In the process of adaptation, hydraulic traits are not isolated from each other, and there is a functional association among traits. This study provide a scientific basis for the management and protection of plateau wetlands.

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来源期刊
Botanical Studies
Botanical Studies 生物-植物科学
CiteScore
5.50
自引率
2.90%
发文量
32
审稿时长
2.4 months
期刊介绍: Botanical Studies is an open access journal that encompasses all aspects of botany, including but not limited to taxonomy, morphology, development, genetics, evolution, reproduction, systematics, and biodiversity of all plant groups, algae, and fungi. The journal is affiliated with the Institute of Plant and Microbial Biology, Academia Sinica, Taiwan.
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