Fossil evidence for low gas exchange capacities for Early Cretaceous angiosperm leaves

被引:40
作者
Feild, Taylor S. [1 ]
Upchurch, Garland R., Jr. [4 ]
Chatelet, David S. [2 ]
Brodribb, Timothy J. [3 ]
Grubbs, Kunsiri C. [5 ]
Samain, Marie-Stephanie [6 ]
Wanke, Stefan [7 ]
机构
[1] Monash Univ, Sch Biol Sci, Clayton, Vic 3800, Australia
[2] Univ Tennessee, Dept Ecol & Evolutionary Biol, Knoxville, TN 37996 USA
[3] Univ Tasmania, Dept Plant Sci, Hobart, Tas 7001, Australia
[4] Texas State Univ, Dept Biol, San Marcos, TX USA
[5] Winthrop Univ, Dept Biol, Rock Hill, SC 29733 USA
[6] Univ Ghent, Dept Biol, Res Grp Spermatophytes, B-9000 Ghent, Belgium
[7] Tech Univ Dresden, Inst Bot, D-01062 Dresden, Germany
基金
美国国家科学基金会;
关键词
LEAF PHOTOSYNTHETIC CAPACITY; STOMATAL APERTURE; VESSEL EVOLUTION; WATER RELATIONS; POTOMAC GROUP; ELEVATED CO2; ARCHITECTURE; ECOPHYSIOLOGY; RISE; DIVERSIFICATION;
D O I
10.1666/10015.1
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
The photosynthetic gas exchange capacities of early angiosperms remain enigmatic. Nevertheless, many hypotheses about the causes of early angiosperm success and how angiosperms influenced Mesozoic ecosystem function hinge on understanding the maximum capacity for early angiosperm metabolism. We applied structure-functional analyses of leaf veins and stomatal pore geometry to determine the hydraulic and diffusive gas exchange capacities of Early Cretaceous fossil leaves. All of the late Aptian-early Albian angiosperms measured possessed low vein density and low maximal stomatal pore area, indicating low leaf gas exchange capacities in comparison to modern ecologically dominant angiosperms. Gas exchange capacities for Early Cretaceous angiosperms were equivalent or lower than ferns and gymnosperms. Fossil leaf taxa from Aptian to Paleocene sediments previously identified as putative stem-lineages to Austrobaileyales and Chloranthales had the same gas exchange capacities and possibly leaf water relations of their living relatives. Our results provide fossil evidence for the hypothesis that high leaf gas exchange capacity is a derived feature of later angiosperm evolution. In addition, the leaf gas exchange functions of austrobaileyoid and chloranthoid fossils support the hypothesis that comparative research on the biology of living basal angiosperm lineages reveals genuine signals of Early Cretaceous angiosperm ecophysiology.
引用
收藏
页码:195 / 213
页数:19
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