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procesy fototrofné
SYS d052817 LBL 00000ny--a2200000o--4500 005 20250606213732.0 008 060705|-|anznnbabn-----------|-a|a------ 040 $b slo $a DNLM $d BA006 065 $a G02.111.669 065 $a G03.800 066 $a 01 $c 03 150 $a procesy fototrofné $x DE $x GE $x IM $x PH $x RE $2 slo 550 $7 sllk_us_auth*d009747 $Y Nutritional Physiological Phenomena $w p $a javy vo fyziológii výživy 550 $7 sllk_us_auth*d052818 $Y Autotrophic Processes $w p $a procesy autotrofné 550 $7 sllk_us_auth*d052836 $Y Heterotrophic Processes $w p $a procesy heterotrofné 550 $7 sllk_us_auth*d052837 $Y Chemoautotrophic Growth $w p $a rast chemoautotrofný 550 $7 sllk_us_auth*d052818 $Y Autotrophic Processes $w b $a procesy autotrofné 550 $7 sllk_us_auth*d052836 $Y Heterotrophic Processes $w b $a procesy heterotrofné 550 $7 sllk_us_auth*d052837 $Y Chemoautotrophic Growth $w b $a rast chemoautotrofný 665 $a 2007 $2 eng 680 9-
$i Processes by which phototrophic organisms use sunlight as their primary energy source. Contrasts with chemotrophic processes which do not depend on light and function in deriving energy from exogenous chemical sources. Photoautotrophy (or photolithotrophy) is the ability to use sunlight as energy to fix inorganic nutrients to be used for other organic requirements. Photoautotrophs include all GREEN PLANTS; GREEN ALGAE; CYANOBACTERIA; and green and PURPLE SULFUR BACTERIA. Photoheterotrophs or photoorganotrophs require a supply of organic nutrients for their organic requirements but use sunlight as their primary energy source; examples include certain PURPLE NONSULFUR BACTERIA. Depending on environmental conditions some organisms can switch between different nutritional modes (AUTOTROPHY; HETEROTROPHY; chemotrophy; or phototrophy) to utilize different sources to meet their nutrients and energy requirements. $2 eng 680 $a distinguish from PHOTOTROPISM $2 eng 750 $a Phototrophic Processes $2 eng 980 $x M
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