Plant evolution history overwhelms current environment gradients in affecting leaf chlorophyll across the tibetan plateau

HIGHLIGHTS

SUMMARY

    Plant functional_group (PFG) has the potential to determine leaf Chl variations (Zhang et_al, 2020; Kelly et_al, 2021). C4 plants have the ability to increase intercellular CO2 concentration, which leads to a stronger photosynthetic capacity than C3 plants (Wang et_al, 2011; Osborne et_al, 2014). Across terrestrial ecosystems, numerous studies, using remote sensing techniques, reveal the close relationships between leaf Chl fluorescence and photosynthetic processes, such as rubisco concentration, maximum rate of carboxylation (Vcmax), and electron transport (Jmax) (Carswell et_al, 2000; Kattge et_al, 2009; Luo et_al, 2019). For instance, leaf Chl is generally stimulated by more . . .

     

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