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苔藓植物的耐旱性与弹性有关,但与细胞壁厚度和光合作用无关。

Desiccation tolerance in bryophytes relates to elasticity but is independent of cell wall thickness and photosynthesis.

机构信息

Department of Biology, Universitat de les Illes Balears, INAGEA, Palma de Mallorca, Spain.

Department of Botany, Ecology and Plant Physiology, Universidad de La Laguna, Av. Astrofísico Francisco Sánchez, La Laguna, Spain.

出版信息

Physiol Plant. 2022 Mar;174(2):e13661. doi: 10.1111/ppl.13661.

Abstract

Mosses have been found outliers of the trade-off between photosynthesis and bulk elastic modulus described for vascular plants. Hence, potential trade-offs among physical features of cell walls and desiccation tolerance, water relations, and photosynthesis were assessed in bryophytes and other poikilohydric species. Long-term desiccation tolerance was quantified after variable periods of desiccation/rehydration cycles. Water relations were analyzed by pressure-volume curves. Mesophyll conductance was estimated using both CO curve-fitting and anatomical methods. Cell wall elasticity was the parameter that better correlated with the desiccation tolerance index for desiccation tolerant species and was antagonistic to higher absolute values of osmotic potential. Although high values of cell wall effective porosity were estimated compared with the values assumed for vascular plants, the desiccation tolerance index negatively correlated with the porosity in desiccation tolerant bryophytes. Neither cell wall thickness nor photosynthetic capacity were correlated with the desiccation tolerance index of the studied species. The existence of a potential evolutionary trade-off between cell wall thickness and desiccation tolerance is rejected. The photosynthetic capacity reported for bryophytes is independent of elasticity and desiccation tolerance. Furthermore, the role of cell wall thickness in limiting CO conductance would be overestimated under a scenario of high cell wall porosity for most bryophytes.

摘要

藓类植物被认为是维管植物光合作用与体弹性模量权衡关系的例外。因此,对苔藓植物和其他变水生物种细胞壁的物理特征与脱水耐性、水分关系和光合作用之间的潜在权衡关系进行了评估。通过可变的脱水/复水循环周期,定量测定了长期的脱水耐性。通过压力-体积曲线分析水分关系。使用 CO 曲线拟合和解剖学方法估算了叶肉导度。细胞壁弹性是与耐旱物种脱水耐性指数相关性更好的参数,与较高的渗透势绝对值呈拮抗关系。尽管与维管植物假设的值相比,估算的细胞壁有效孔隙率较高,但耐旱苔藓植物的脱水耐性指数与孔隙率呈负相关。细胞壁厚度和光合作用能力都与所研究物种的脱水耐性指数无关。细胞壁厚度和脱水耐性之间存在潜在进化权衡关系的说法被否定。报道的苔藓植物光合作用能力与弹性和脱水耐性无关。此外,在大多数苔藓植物细胞壁高孔隙率的情况下,细胞壁厚度限制 CO 导度的作用可能被高估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9974/9314017/0bbfba02ff4d/PPL-174-0-g005.jpg

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