
Respiration In Plants, As In All Living Organisms, Is Essential To Provide Metabolic Energy And Carbon Skeletons For Growth And Maintenance. As Such, Respiration Is An Essential Component Of A Plant{u2019}s Carbon Budget. Depending On Species And Environmental Conditions, It Consumes 25-75% Of All The Carbohydrates Produced In Photosynthesis {u2013} Even More At Extremely Slow Growth Rates. Respiration In Plants Can Also Proceed In A Manner That Produces Neither Metabolic Energy Nor Carbon Skeletons, But Heat. This Type Of Respiration Involves The Cyanide-resistant, Alternative Oxidase; It Is Unique To Plants, And Resides In The Mitochondria. The Activity Of This Alternative Pathway Can Be Measured Based On A Difference In Fractionation Of Oxygen Isotopes Between The Cytochrome And The Alternative Oxidase. Heat Production Is Important In Some Flowers To Attract Pollinators; However, The Alternative Oxidase Also Plays A Major Role In Leaves And Roots Of Most Plants. A Common Thread Throughout This Volume Is To Link Respiration, Including Alternative Oxidase Activity, To Plant Functioning In Different Environments. Regulation Of Respiration In Vivo -- Calorespirometry In Plant Biology -- The Application Of The Oxygen-isotope Technique To Assess Respiratory Pathway Partitioning -- Respiration In Photosynthetic Cells: Gas Exchange Components, Interactions With Photorespiration And The Operation Of Mitochondria In The Light -- Effects Of Light Intensity And Carbohydrate Status On Leaf And Root Respiration -- The Effects Of Water Stress On Plant Respiration -- Response Of Plant Respiration To Changes In Temperature: Mechanisms And Consequences Of Variations In Q10 Values And Acclimation -- Oxygen Transport, Respiration, And Anaerobic Carbohydrate Catabolism In Roots In Flooded Soils -- Effects Of Soil Ph And Aluminum On Plant Respiration -- Understanding Plant Respiration: Separating Respiratory Components Versus A Process-based Approach -- Respiratory/carbon Costs Of Sym
Page Count:
0
Publication Date:
2005-01-01
ISBN-10:
1280283971
ISBN-13:
9781280283970
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