入侵物种 Tithonia diversifolia 和两种共生本地灌木物种在波动光照条件下的光合响应动态。

IF 4.6 1区 生物学 Q1 PLANT SCIENCES
Plant Diversity Pub Date : 2023-04-25 eCollection Date: 2024-03-01 DOI:10.1016/j.pld.2023.04.001
Ju Li, Shu-Bin Zhang, Yang-Ping Li
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引用次数: 0

摘要

为了确定入侵植物的入侵性,许多研究都比较了入侵物种和本地物种的光合作用特征或策略。然而,很少有研究比较入侵物种和本地物种在光波动期间的光合作用动态。我们比较了入侵物种 Tithonia diversifolia 与两种本地物种 Clerodendrum bungei 和 Blumea balsamifera 在阳光充足和阴暗生境下的光合诱导、弛豫动力学和叶片性状。不同物种的光合作用动态和叶片特征各不相同。在阳光充足的生境中,T. diversifolia的诱导速度和气孔开放反应较慢,但其平均内在水分利用效率高于两个本地物种。因此,诱导反应速度较慢的原因可能是 T. diversifolia 的气孔长度较长。生境对 T. diversifolia 和 B. balsamifera 的光合作用动态有显著影响,但对 C. bungei 没有影响。在阴暗的生境中,T. diversifolia 的光合诱导反应比在阳光充足的生境中快,导致 T. diversifolia 在光合诱导过程中的平均气孔导度高于两种本地物种。相比之下,B. balsamifera 在阴暗生境中的气孔长度更大,光合诱导和弛豫反应比在阳光充足生境中更慢,导致光合弛豫期间的碳增量更高。尽管如此,在这两种生境中,T. diversifolia 在光波动期间的碳增量总体上高于两种本地物种。我们的研究结果表明,在波动的光照环境下,T. diversifolia能采取更有效的应对策略,以获得最大的碳增益,这可能是其成功入侵的原因之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photosynthetic response dynamics in the invasive species Tithonia diversifolia and two co-occurring native shrub species under fluctuating light conditions.

To determine the invasiveness of invasive plants, many studies have compared photosynthetic traits or strategies between invasive and native species. However, few studies have compared the photosynthetic dynamics between invasive and native species during light fluctuations. We compared photosynthetic induction, relaxation dynamics and leaf traits between the invasive species, Tithonia diversifolia and two native species, Clerodendrum bungei and Blumea balsamifera, in full-sun and shady habitats. The photosynthetic dynamics and leaf traits differed among species. T. diversifolia showed a slower induction speed and stomatal opening response but had higher average intrinsic water-use efficiency than the two native species in full-sun habitats. Thus, the slow induction response may be attributed to the longer stomatal length in T. diversifolia. Habitat had a significant effect on photosynthetic dynamics in T. diversifolia and B. balsamifera but not in C. bungei. In shady habitat, T. diversifolia had a faster photosynthetic induction response than in full-sun habitat, leading to a higher average stomatal conductance during photosynthetic induction in T. diversifolia than in the two native species. In contrast, B. balsamifera had a larger stomatal length and slower photosynthetic induction and relaxation response in shady habitat than in full-sun habitat, resulting in higher carbon gain during photosynthetic relaxation. Nevertheless, in both habitats, T. diversifolia had an overall higher carbon gain during light fluctuations than the two native species. Our results indicated that T. diversifolia can adopt more effective response strategies under fluctuating light environments to maximize carbon gain, which may contribute to its successful invasion.

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来源期刊
Plant Diversity
Plant Diversity Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
8.30
自引率
6.20%
发文量
1863
审稿时长
35 days
期刊介绍: Plant Diversity (formerly Plant Diversity and Resources) is an international plant science journal that publishes substantial original research and review papers that advance our understanding of the past and current distribution of plants, contribute to the development of more phylogenetically accurate taxonomic classifications, present new findings on or insights into evolutionary processes and mechanisms that are of interest to the community of plant systematic and evolutionary biologists. While the focus of the journal is on biodiversity, ecology and evolution of East Asian flora, it is not limited to these topics. Applied evolutionary issues, such as climate change and conservation biology, are welcome, especially if they address conceptual problems. Theoretical papers are equally welcome. Preference is given to concise, clearly written papers focusing on precisely framed questions or hypotheses. Papers that are purely descriptive have a low chance of acceptance. Fields covered by the journal include: plant systematics and taxonomy- evolutionary developmental biology- reproductive biology- phylo- and biogeography- evolutionary ecology- population biology- conservation biology- palaeobotany- molecular evolution- comparative and evolutionary genomics- physiology- biochemistry
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