Literature DB >> 32480976

Rapid adjustment of leaf angle explains how the desert moss, Syntrichia caninervis, copes with multiple resource limitations during rehydration.

Nan Wu1, Yuan-Ming Zhang1, Alison Downing2, Zachary T Aanderud3, Ye Tao1, Steven Williams3.   

Abstract

Although the desert moss Syntrichia caninervis Mitt. is extremely desiccation tolerant, it still requires water and photosynthates for growth. The ecological significance of the leaf angle in maintaining a balance between water and light availability is critical to its survival. Active leaf repositioning balances water and light availability following rehydration. S. caninervis can adjust leaf angles from a steep (84-69°) to a stable level at 30° within 7s after rehydration, obtaining maximum net photosynthetic gain at a shoot relative water content of ~60%. Leaf morphological characters, (leaf hair points, surface papillae and costal anatomy) and ultrastructural changes (chloroplast reordering and loss of lipid reserves as shown by changes in osmiophilic globules) were linked to rapid leaf spreading, water gain and sunlight reflectivity of leaves during rehydration. The high 377.20±91.69 (cm2g-1) surface area to mass ratio was a major factor in facilitating the rapid response to rewetting. Hyaline cells of the leaf base absorbed water, swelled and forced the leaf away from the stem as soon as rehydration commenced. Loss of leaf hair points retards leaf angle adjustment during rehydration.

Entities:  

Year:  2014        PMID: 32480976     DOI: 10.1071/FP13054

Source DB:  PubMed          Journal:  Funct Plant Biol        ISSN: 1445-4416            Impact factor:   3.101


  2 in total

Review 1.  Ecology and responses to climate change of biocrust-forming mosses in drylands.

Authors:  Mónica Ladrón de Guevara; Fernando T Maestre
Journal:  J Exp Bot       Date:  2022-07-16       Impact factor: 7.298

2.  Propagation of desert moss Syntrichia caninervis in peat pellet: a method for rapidly obtaining large numbers of cloned gametophytes.

Authors:  Xiujin Liu; Ping Zhou; Xiaoshuang Li; Daoyuan Zhang
Journal:  Plant Methods       Date:  2021-04-21       Impact factor: 4.993

  2 in total

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