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决定甜樱桃(Rosa rubiginosa L.)在生长早期对旱地高适应潜力的生理特性。

Physiological traits determining high adaptation potential of sweet briar (Rosa rubiginosa L.) at early stage of growth to dry lands.

机构信息

Polish Academy of Sciences, The Franciszek Górski Institute of Plant Physiology, Niezapominajek 21, Kraków, 30-239, Poland.

Department of Plant Breeding, Physiology and Seed Science, Faculty of Agriculture and Economics, University of Agriculture, Podłużna 3, Kraków, 30-239, Poland.

出版信息

Sci Rep. 2019 Dec 18;9(1):19390. doi: 10.1038/s41598-019-56060-3.

Abstract

Little is known about mechanisms of sweet briar adaptation to dry habitats. The species is highly invasive and displaces native plants from dry lands of the southern hemisphere. This study evaluates physiological basis of Rosa rubiginosa L. adaptation to soil drought. We performed a pot soil drought experiment and assessed water relations, water use efficiency, gas exchange and photosynthetic apparatus activity. The study also measured the content of chlorophyll, soluble carbohydrates and proline and analyzed plant biomass growth. We hypothesized that the drought stress induced an effective mechanism enabling adaptation of young sweet briar roses to soil water deficit. The study identified several adaptation mechanisms of R. rubiginosa allowing the plant to survive soil drought. These included limiting transpiration and stomatal conductance, increasing the level of soluble sugars, reducing chlorophyll content, accumulating CO in intercellular spaces, and increasing the quantum yield of electron transport from Q to the PSI end electron acceptors. As a result, young sweet briar roses limited water loss and photoinhibition damage to the photosynthetic apparatus, which translated into consumption of soluble sugars for growth purposes. This study showed that photosynthesis optimization and increased activity of the photosynthetic apparatus made it possible to avoid photoinhibition and to effectively use water and sugars to maintain growth during water stress. This mechanism is probably responsible for the invasive nature of R. rubiginosa and its huge potential to displace native plant species from dry habitats of the southern hemisphere.

摘要

关于甜蔷薇适应干旱生境的机制知之甚少。该物种具有很强的入侵性,会从南半球干旱地区的本地植物中排挤出来。本研究评估了 Rosa rubiginosa L. 适应土壤干旱的生理基础。我们进行了盆栽土壤干旱实验,评估了水分关系、水分利用效率、气体交换和光合机构活性。该研究还测量了叶绿素、可溶性碳水化合物和脯氨酸的含量,并分析了植物生物量的生长。我们假设干旱胁迫诱导了一种有效的机制,使年轻的甜蔷薇能够适应土壤水分亏缺。研究确定了 R. rubiginosa 的几种适应机制,使植物能够在土壤干旱中存活。这些机制包括限制蒸腾和气孔导度、增加可溶性糖的水平、降低叶绿素含量、在细胞间隙中积累 CO 2 ,以及增加从 Q 到 PSI 末端电子受体的电子传递量子产率。结果表明,年轻的甜蔷薇限制了水分流失和对光合机构的光抑制损伤,这转化为消耗可溶性糖以促进生长。本研究表明,光合作用的优化和光合机构活性的增加使得避免光抑制以及有效地利用水和糖在水分胁迫下维持生长成为可能。这种机制可能是 R. rubiginosa 具有入侵性及其从南半球干旱生境中排挤本地植物物种的巨大潜力的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ecc/6920414/87cef280bd93/41598_2019_56060_Fig1_HTML.jpg

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