Javascript must be enabled to continue!
Leaf optical properties and photosynthesis of fern species with a wide range of divergence time in relation to mesophyll anatomy
View through CrossRef
AbstractBackground and AimsFor a comprehensive understanding of the mechanisms of changing plant photosynthetic capacity during plant evolutionary history, knowledge of leaf gas exchange and optical properties are essential, both of which relate strongly to mesophyll anatomy. Although ferns are suitable for investigating the evolutionary history of photosynthetic capacity, comprehensive research of fern species has yet to be undertaken in this regard.MethodsWe investigated leaf optical properties, gas exchange and mesophyll anatomy of fern species with a wide range of divergence time, using 66 ferns from natural habitats and eight glasshouse-grown ferns. We used a spectroradiometer and an integrating sphere to measure light absorptance and reflectance by the leaves.Key ResultsThe more newly divergent fern species had a thicker mesophyll, a larger surface area of chloroplasts facing the intercellular airspaces (Sc), thicker cell walls and large light absorptance. Although no trend with divergence time was obtained in leaf photosynthetic capacity on a leaf-area basis, when the traits were expressed on a mesophyll-thickness basis, trends in leaf photosynthetic capacity became apparent. On a mesophyll-thickness basis, the more newly divergent species had a low maximum photosynthesis rate, accompanied by a low Sc.ConclusionsWe found a strong link between light capture, mesophyll anatomy and photosynthesis rate in fern species for the first time. The thick mesophyll of the more newly divergent ferns does not necessarily relate to the high photosynthetic capacity on a leaf-area basis. Rather, the thick mesophyll accompanied by thick cell walls allowed the ferns to adapt to a wider range of environments through increasing leaf toughness, which would contribute to the diversification of fern species.
Oxford University Press (OUP)
Title: Leaf optical properties and photosynthesis of fern species with a wide range of divergence time in relation to mesophyll anatomy
Description:
AbstractBackground and AimsFor a comprehensive understanding of the mechanisms of changing plant photosynthetic capacity during plant evolutionary history, knowledge of leaf gas exchange and optical properties are essential, both of which relate strongly to mesophyll anatomy.
Although ferns are suitable for investigating the evolutionary history of photosynthetic capacity, comprehensive research of fern species has yet to be undertaken in this regard.
MethodsWe investigated leaf optical properties, gas exchange and mesophyll anatomy of fern species with a wide range of divergence time, using 66 ferns from natural habitats and eight glasshouse-grown ferns.
We used a spectroradiometer and an integrating sphere to measure light absorptance and reflectance by the leaves.
Key ResultsThe more newly divergent fern species had a thicker mesophyll, a larger surface area of chloroplasts facing the intercellular airspaces (Sc), thicker cell walls and large light absorptance.
Although no trend with divergence time was obtained in leaf photosynthetic capacity on a leaf-area basis, when the traits were expressed on a mesophyll-thickness basis, trends in leaf photosynthetic capacity became apparent.
On a mesophyll-thickness basis, the more newly divergent species had a low maximum photosynthesis rate, accompanied by a low Sc.
ConclusionsWe found a strong link between light capture, mesophyll anatomy and photosynthesis rate in fern species for the first time.
The thick mesophyll of the more newly divergent ferns does not necessarily relate to the high photosynthetic capacity on a leaf-area basis.
Rather, the thick mesophyll accompanied by thick cell walls allowed the ferns to adapt to a wider range of environments through increasing leaf toughness, which would contribute to the diversification of fern species.
Related Results
EO Satellite Based system for monitoring Bracken Fern in Scotland
EO Satellite Based system for monitoring Bracken Fern in Scotland
<p>Bracken fern (Pteridium) is ranked among the most invasive species of the world (Holland & Aplin 2013). The fern&#8217;s intrusion has caused great...
The implication of leaf anatomical structure for the selective breeding of lilacs
The implication of leaf anatomical structure for the selective breeding of lilacs
The cultivars of the common lilac (Syringa vulgaris) grown in the south of the Russian Far East are not always winter-hardy and are often damaged by fungal diseases due to a very h...
ChatGPT's Capabilities for Use in Anatomy Education and Anatomy Research
ChatGPT's Capabilities for Use in Anatomy Education and Anatomy Research
Dear Editors,
Recently, the discussion of an artificial intelligence (AI) - fueled platform in several articles in your journal has attracted the attention of many researchers [1, ...
Species-specific and environment-sensitive functional traits in six steppe plant species with different roles in community
Species-specific and environment-sensitive functional traits in six steppe plant species with different roles in community
Plant functional traits are often considered as indicators of plant-environment relationship; however, some plant features can be highly taxonomic-specific. The study of intraspeci...
Genetic variation in early-season leaf photosynthesis in sugar beet and its relationship with Cercospora leaf spot resistance
Genetic variation in early-season leaf photosynthesis in sugar beet and its relationship with Cercospora leaf spot resistance
Abstract
Improving photosynthesis is a promising approach to enhance sugar beet productivity. However, genetic variation in leaf photosynthesis and its relationship...
Section-level genome sequencing and comparative genomics of Aspergillus sections Cavernicolus and Usti
Section-level genome sequencing and comparative genomics of Aspergillus sections Cavernicolus and Usti
Fig. S1. A cladogram representation of the phylogenetic relations between the species in this paper. The red labels show bootstrap values of 100 % and the black labels show bootstr...
History of anatomy and its involvement with medical science and practice: Historical review
History of anatomy and its involvement with medical science and practice: Historical review
The medical practice starts from Patient’s discomfort in his body structures due to distortion in morphology. This is located and examined by clinician so, medical practice and Ana...

