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Leaf Venation and Morphology Help Explain Physiological Variation in Yucca brevifolia and Hesperoyucca whipplei Across Microhabitats in the Mojave Desert, CA

Different microclimates can have significant impact on the physiology of succulents that inhabit arid environments such as the Mojave Desert (California). We investigated variation in leaf physiology, morphology and anatomy of two dominant Mojave Desert monocots, Yucca brevifolia (Joshua tree) and H...

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Autores principales: Jolly, Amber R., Zailaa, Joseph, Farah, Ugbad, Woojuh, Janty, Libifani, Félicia Makaya, Arzate, Darlene, Caranto, Christian Alex, Correa, Zayra, Cuba, Jose, Calderon, Josephina Diaz, Garcia, Nancy, Gastelum, Laura, Gutierrez, Ivette, Haro, Matthew, Orozco, Monserrat, Pinlac, Jessica Lamban, Miranda, Andoni, Nava, Justin, Nguyen, Christina, Pedroza, Edgar, Perdomo, Jennyfer, Pezzini, Scott, Yuen, Ho, Scoffoni, Christine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7820123/
https://www.ncbi.nlm.nih.gov/pubmed/33488640
http://dx.doi.org/10.3389/fpls.2020.578338
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author Jolly, Amber R.
Zailaa, Joseph
Farah, Ugbad
Woojuh, Janty
Libifani, Félicia Makaya
Arzate, Darlene
Caranto, Christian Alex
Correa, Zayra
Cuba, Jose
Calderon, Josephina Diaz
Garcia, Nancy
Gastelum, Laura
Gutierrez, Ivette
Haro, Matthew
Orozco, Monserrat
Pinlac, Jessica Lamban
Miranda, Andoni
Nava, Justin
Nguyen, Christina
Pedroza, Edgar
Perdomo, Jennyfer
Pezzini, Scott
Yuen, Ho
Scoffoni, Christine
author_facet Jolly, Amber R.
Zailaa, Joseph
Farah, Ugbad
Woojuh, Janty
Libifani, Félicia Makaya
Arzate, Darlene
Caranto, Christian Alex
Correa, Zayra
Cuba, Jose
Calderon, Josephina Diaz
Garcia, Nancy
Gastelum, Laura
Gutierrez, Ivette
Haro, Matthew
Orozco, Monserrat
Pinlac, Jessica Lamban
Miranda, Andoni
Nava, Justin
Nguyen, Christina
Pedroza, Edgar
Perdomo, Jennyfer
Pezzini, Scott
Yuen, Ho
Scoffoni, Christine
author_sort Jolly, Amber R.
collection PubMed
description Different microclimates can have significant impact on the physiology of succulents that inhabit arid environments such as the Mojave Desert (California). We investigated variation in leaf physiology, morphology and anatomy of two dominant Mojave Desert monocots, Yucca brevifolia (Joshua tree) and Hesperoyucca whipplei, growing along a soil water availability gradient. Stomatal conductance (g(s)) and leaf thickness were recorded in the field at three different sites (north-western slope, south-eastern slope, and alluvial fan) in March of 2019. We sampled leaves from three individuals per site per species and measured in the lab relative water content at the time of g(s) measurements, saturated water content, cuticular conductance, leaf morphological traits (leaf area and length, leaf mass per area, % loss of thickness in the field and in dried leaves), and leaf venation. We found species varied in their g(s): while Y. brevifolia showed significantly higher g(s) in the alluvial fan than in the slopes, H. whipplei was highest in the south-eastern slope. The differences in g(s) did not relate to differences in leaf water content, but rather to variation in number of veins per mm(2) in H. whipplei and leaf width in Y. brevifolia. Our results indicate that H. whipplei displays a higher water conservation strategy than Y. brevifolia. We discuss these differences and trends with water availability in relation to species’ plasticity in morphology and anatomy and the ecological consequences of differences in 3-dimensional venation architecture in these two species.
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spelling pubmed-78201232021-01-23 Leaf Venation and Morphology Help Explain Physiological Variation in Yucca brevifolia and Hesperoyucca whipplei Across Microhabitats in the Mojave Desert, CA Jolly, Amber R. Zailaa, Joseph Farah, Ugbad Woojuh, Janty Libifani, Félicia Makaya Arzate, Darlene Caranto, Christian Alex Correa, Zayra Cuba, Jose Calderon, Josephina Diaz Garcia, Nancy Gastelum, Laura Gutierrez, Ivette Haro, Matthew Orozco, Monserrat Pinlac, Jessica Lamban Miranda, Andoni Nava, Justin Nguyen, Christina Pedroza, Edgar Perdomo, Jennyfer Pezzini, Scott Yuen, Ho Scoffoni, Christine Front Plant Sci Plant Science Different microclimates can have significant impact on the physiology of succulents that inhabit arid environments such as the Mojave Desert (California). We investigated variation in leaf physiology, morphology and anatomy of two dominant Mojave Desert monocots, Yucca brevifolia (Joshua tree) and Hesperoyucca whipplei, growing along a soil water availability gradient. Stomatal conductance (g(s)) and leaf thickness were recorded in the field at three different sites (north-western slope, south-eastern slope, and alluvial fan) in March of 2019. We sampled leaves from three individuals per site per species and measured in the lab relative water content at the time of g(s) measurements, saturated water content, cuticular conductance, leaf morphological traits (leaf area and length, leaf mass per area, % loss of thickness in the field and in dried leaves), and leaf venation. We found species varied in their g(s): while Y. brevifolia showed significantly higher g(s) in the alluvial fan than in the slopes, H. whipplei was highest in the south-eastern slope. The differences in g(s) did not relate to differences in leaf water content, but rather to variation in number of veins per mm(2) in H. whipplei and leaf width in Y. brevifolia. Our results indicate that H. whipplei displays a higher water conservation strategy than Y. brevifolia. We discuss these differences and trends with water availability in relation to species’ plasticity in morphology and anatomy and the ecological consequences of differences in 3-dimensional venation architecture in these two species. Frontiers Media S.A. 2021-01-08 /pmc/articles/PMC7820123/ /pubmed/33488640 http://dx.doi.org/10.3389/fpls.2020.578338 Text en Copyright © 2021 Jolly, Zailaa, Farah, Woojuh, Libifani, Arzate, Caranto, Correa, Cuba, Calderon, Garcia, Gastelum, Gutierrez, Haro, Orozco, Pinlac, Miranda, Nava, Nguyen, Pedroza, Perdomo, Pezzini, Yuen and Scoffoni. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Jolly, Amber R.
Zailaa, Joseph
Farah, Ugbad
Woojuh, Janty
Libifani, Félicia Makaya
Arzate, Darlene
Caranto, Christian Alex
Correa, Zayra
Cuba, Jose
Calderon, Josephina Diaz
Garcia, Nancy
Gastelum, Laura
Gutierrez, Ivette
Haro, Matthew
Orozco, Monserrat
Pinlac, Jessica Lamban
Miranda, Andoni
Nava, Justin
Nguyen, Christina
Pedroza, Edgar
Perdomo, Jennyfer
Pezzini, Scott
Yuen, Ho
Scoffoni, Christine
Leaf Venation and Morphology Help Explain Physiological Variation in Yucca brevifolia and Hesperoyucca whipplei Across Microhabitats in the Mojave Desert, CA
title Leaf Venation and Morphology Help Explain Physiological Variation in Yucca brevifolia and Hesperoyucca whipplei Across Microhabitats in the Mojave Desert, CA
title_full Leaf Venation and Morphology Help Explain Physiological Variation in Yucca brevifolia and Hesperoyucca whipplei Across Microhabitats in the Mojave Desert, CA
title_fullStr Leaf Venation and Morphology Help Explain Physiological Variation in Yucca brevifolia and Hesperoyucca whipplei Across Microhabitats in the Mojave Desert, CA
title_full_unstemmed Leaf Venation and Morphology Help Explain Physiological Variation in Yucca brevifolia and Hesperoyucca whipplei Across Microhabitats in the Mojave Desert, CA
title_short Leaf Venation and Morphology Help Explain Physiological Variation in Yucca brevifolia and Hesperoyucca whipplei Across Microhabitats in the Mojave Desert, CA
title_sort leaf venation and morphology help explain physiological variation in yucca brevifolia and hesperoyucca whipplei across microhabitats in the mojave desert, ca
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7820123/
https://www.ncbi.nlm.nih.gov/pubmed/33488640
http://dx.doi.org/10.3389/fpls.2020.578338
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