SlideShare une entreprise Scribd logo
1  sur  27
M.Uma Maheshwari, 
Reg No. 13APBO10 
II M.Sc Botany
» Major substance in plants next to water 
» Building blocks 
» Constituent element of 
» Chlorophyll 
» Cytochromes 
» Alkaloids 
» Many vitamins 
» Plays important role in metabolism, growth, 
reproduction and heredity
 Atmospheric Nitrogen 
 78% of atmosphere 
 Plants cannot utilize this form 
 Some Bacteria, Blue Green Algae, leguminous plants 
 Nitrates, Nitrites and Ammonia 
 Nitrate is chief form 
Amino acids in the soil 
 Many soil organisms use this form 
 Higher plants can also taken by higher plants 
 Organic Nitrogenous compounds in insects 
 Insectivorous plants
 The conversion of free nitrogen into 
nitrogenous salts to make it available for 
absorption of plants
Nitrogen fixation 
Non biological Biological 
Non - symbiotic Symbiotic
 The micro-organisms do not take place 
 Found in rainy season during lightning 
1. N2 + O2 lightning 2 NO 
(Nitric oxide) 
2. 2NO + O2 oxidation 2NO2 
( Nitrogen per oxide) 
3. 2NO2 + H2O HNO2 + HNO3 
4. 4NO2 + 2H2O + O2 4HNO3 
(Nitric acid) 
5. CaO + 2HNO3 Ca (NO3)2 + H2O 
(Calcium nitrate) 
6. HNO3 + NH3 NH4NO3 
(Ammonium nitrate) 
7. HNO2 + NH3 NH4NO2 
(Ammonium nitrite)
 Fixation of atmospheric Nitrogen into 
nitrogenous salts with the help of micro-organisms 
 Two types 
 Symbiotic 
 Non-symbiotic
o Fixation carried out by free living micro-organisms 
o Aerobic, anaerobic and blue green algae 
o Bacteria: special type (nitrogen fixing 
bacteria) types - 
o Free living aerobic : Azotobacter, Beijerenckia 
o Free living anaerobic : Clostridium 
o Free living photosynthetic : Chlorobium, 
Rhodopseudomonas 
o Free living chemosynthetic :Desulfovibro,Thiobacillus
o Free living fungi: yeasts and Pillularia 
o Blue green algae: 
o unicellular – Gloeothece, Synechococcus 
o Filamentous (non heterocystous) -Oscillatoria 
o Filamentous (heterocystous) – Tolypothrix, 
Nostoc, Anabaena
 Fixation of free nitrogen by micro-organisms 
in soil living symbiotically inside 
the plants 
 ‘Symbiosis’ – coined by DeBary 
 Three categories 
 Nodule formation in leguminous plants 
 Nodule formation in non-leguminous plants 
 Non nodulation
 2500 spp. Of family leguminosae ( Cicer 
arientium, Pisum, Cajanus, Arachis) produce 
root nodules with Rhizobium spp. 
 They fix Nitrogen only inside the root 
nodules 
 Association provides-food and shelter to 
bacteria 
-bacteria supply fixed 
nitrogen to plant 
 Nodules may buried in soil even after 
harvesting – continue nitrogen fixation
 Some other plants also produces root 
nodules 
 Causuarina equisetifolia – Frankia 
 Alnus – Frankia 
 Myrica gale – Frankia 
 Parasponia – Rhizobium 
 Leaf nodules are also noted 
 Dioscorea, Psychotria 
 Gymnosperms – root – Podocarpus, 
- leaves – Pavetta zinumermanniana, 
Chomelia
 Lichens - cyanobacteria 
 Anthoceros - Nostoc 
 Azolla – Anabaena azollae 
 Cycas – Nostoc and anabaene 
 Gunnera macrophylla - Nostoc 
 Digitaria, Maize and Sorghum – Spirillum 
notatum 
 Paspalum notatum – Azotobacter paspali
 Small, knob-like protuberances-root nodules 
 Size and shape varies 
 Spherical, flat, finger-like or elongated 
 From Pin head to one centimeter in size 
 Various spp. Of Rhizobium noted 
 Named after the host plant 
 Pea – Rhizobium leguminosarum 
 Beans – R. phaseoli 
 Soyabeans – R. japonicum 
 Lupins – R. lupini 
 Two types of Rhizobium- 
 Bradyrhizobium – slow growing spp. 
 Rhizobium - fast growing spp.
 Gram negative 
 Non spore forming 
 Micro-aerobic 
 Show a degree of specificity 
 The two partners (Bacteria and Host) 
recognized by chemical substance 
LECTINS - phytoagglutinins 
(carbohydrate containing plant protein)
 Root nodules formed due to infection of 
Rhizobium 
 Free living bacteria growing near root of 
legumes unable to fix nitrogen in free 
condition 
 Roots of the legumes secrete some growth 
factors helps in fast multiplication of 
bacteria 
 (E.g.) Pisum sativum secretes homo serine 
also carbohydrate containing protein 
Lectins over their surface
 This helps in recognition and attachment of 
rhizobial cells 
 Rhizobial cells have carbohydrate receptor 
on their surface 
 Lectins interact with the carbohydrate 
receptor of rhizobial cells 
 Occur between root hairs and young root 
hair 
 Bacteria enter the roots through soft 
infected root hairs 
 Tips are deformed and curved 
 Tubular infection thread is formed in the 
root hair cell and bacteria enters into it
 After entry, new cell wall is formed 
 Tubular infection contains 
mucopolysaccharides where bacteria 
embedded and start multiplication 
 It grows much and reaches the inner layers 
of cortex and the bacteria is released 
 It induces the cortical cells to multiply 
which result in the formation of nodule on 
the surface 
 The bacterial cells multiplies and colonize in 
the multiplying host cells
 After host cells are completely filled, 
bacterial cells becomes dormant-bacteroids 
 Float in leghaemoglobin – reddish pigment in 
cytoplasm of host cells 
- Efficient O2 scavenger 
- Maintains steady state of oxygen 
- Stimulates ATP production 
 Present studies indicates that leghaemoglobin 
is not essential 
 Nitrogenous compounds synthesized is 
translocated through vascular tissues 
 Groups of rhizobia surrounded by double 
membrane originated from host cell wall 
 Bacteroids lack firm wall (osmotically liable)
 Basic requirements for Nitrogen fixation 
 Nitrogenase and hydrogenase enzyme 
 Protective mechanism against Oxygen 
 Ferrodoxin 
 Hydrogen releasing system or electron 
donor (Pyruvic acid or glucose/sucrose) 
 Constant supply of ATP 
 Coenzymes and cofactors TPP, CoA, 
inorganic phosphate and Mg+2 
 Cobalt and Molybdenum 
 A carbon compound
 Plays key role 
 Active in anaerobic condition 
 Made up of two protein subunits 
 Non heme iron protein ( Fe-protein or dinitrogen 
reductase) 
 Iron molybdenum protein (Mo Fe-protein or 
dinitrogenase) 
 Fe protein reacts with ATP and reduces 
second subunit which ultimately reduces N2 
into ammonia 
N2 + 6H+ + 6e- 2NH3
 The reduction of N2 into NH3 requires 6 
protons and 6 electrons 
 12 mols of ATP required 
 One pair of electron requires 4 ATP 
 The modified equation 
N2 + 8H+ + 8e- 2NH3 + H2 
 Hydrogen produced is catalyzed into 
protons and electrons by hydrogenase 
hydrogenase 
H2 2H+ + 2e-
 Glucose-6-phosphate acts as a electron donor 
Sucrose 
(synthesized 
in leaves) 
Sucrose ( in 
roots ) 
Glucose and 
fructose 
Glucose-6- 
phosphate 
 Glucose-6-phosphate is converted to 
phosphogluconic acid 
Glucose-6-phosphate + NADP+ + H2O 6-phosphogluconic acid + NADPH + H+ 
NADPH donates electrons to ferrodoxin. Protons 
released and ferrodoxin is reduced 
 Reduced ferrodoxin acts as electron carrier. 
Donate electron to Fe-protein to reduce it. 
Electrons released from ferrodoxin thus oxidized
 Reduced Fe-protein combines with ATP in the 
presence of Mg +2 
 Second sub unit is activated and reduced 
 It donates electrons to N2 to NH3 
 Enzyme set free after complete reduction of 
N2 to NH3 
Mo – N=NH 
Mo=N-NH2 
MoΞN+NH3 
NΞN 
Mo-NΞN 
Mo + NH3

Contenu connexe

Tendances

Tendances (20)

Nitrogen fixation mechanism and genes involved in nitrogen fixation
Nitrogen fixation mechanism and genes involved in nitrogen fixationNitrogen fixation mechanism and genes involved in nitrogen fixation
Nitrogen fixation mechanism and genes involved in nitrogen fixation
 
Photosynthesis in bacteria and its types
Photosynthesis in bacteria and its typesPhotosynthesis in bacteria and its types
Photosynthesis in bacteria and its types
 
Mycorrhiza Biofertilizer: VAM
Mycorrhiza Biofertilizer: VAMMycorrhiza Biofertilizer: VAM
Mycorrhiza Biofertilizer: VAM
 
Plant Microbe Interaction
Plant Microbe InteractionPlant Microbe Interaction
Plant Microbe Interaction
 
Rhizobium ppt
Rhizobium pptRhizobium ppt
Rhizobium ppt
 
Ammonium assimilation
Ammonium assimilationAmmonium assimilation
Ammonium assimilation
 
C3 cycle
C3 cycleC3 cycle
C3 cycle
 
Biofertilizer
BiofertilizerBiofertilizer
Biofertilizer
 
Nitrogen Fixation
Nitrogen FixationNitrogen Fixation
Nitrogen Fixation
 
Nodule formation and nod factors
Nodule formation and nod factorsNodule formation and nod factors
Nodule formation and nod factors
 
Biofertilizer
BiofertilizerBiofertilizer
Biofertilizer
 
Phosphate solubilizers
Phosphate solubilizersPhosphate solubilizers
Phosphate solubilizers
 
PGPR
PGPRPGPR
PGPR
 
Azotobacter spp.
Azotobacter spp.Azotobacter spp.
Azotobacter spp.
 
Plant Growth Promoting microbes.pptx
Plant Growth Promoting microbes.pptxPlant Growth Promoting microbes.pptx
Plant Growth Promoting microbes.pptx
 
Biofertilizers ppt
Biofertilizers pptBiofertilizers ppt
Biofertilizers ppt
 
Saif ppt phosphate solubilisation
Saif ppt phosphate solubilisationSaif ppt phosphate solubilisation
Saif ppt phosphate solubilisation
 
Rhizobium
RhizobiumRhizobium
Rhizobium
 
Host pathogen interaction plants
Host pathogen interaction plantsHost pathogen interaction plants
Host pathogen interaction plants
 
Artificial seed
Artificial seedArtificial seed
Artificial seed
 

En vedette

Nitrogen Cycle Powerpoint
Nitrogen Cycle PowerpointNitrogen Cycle Powerpoint
Nitrogen Cycle Powerpoint
cpodjames
 
Conjugation
Conjugation  Conjugation
Conjugation
ninabakh
 
biodegradation of hydrocarbons
biodegradation of hydrocarbonsbiodegradation of hydrocarbons
biodegradation of hydrocarbons
khuda bakhsh
 
Phase contrast microscopy
Phase contrast microscopyPhase contrast microscopy
Phase contrast microscopy
jakkaas
 

En vedette (20)

NITROGEN CYCLE AND FIXATION
NITROGEN CYCLE AND FIXATIONNITROGEN CYCLE AND FIXATION
NITROGEN CYCLE AND FIXATION
 
Nitrogen cycle
Nitrogen cycleNitrogen cycle
Nitrogen cycle
 
Nitrogen cycle ppt
Nitrogen cycle pptNitrogen cycle ppt
Nitrogen cycle ppt
 
Nitrogen Cycle Powerpoint
Nitrogen Cycle PowerpointNitrogen Cycle Powerpoint
Nitrogen Cycle Powerpoint
 
Dr.wael elhelece photochemistry 431chem
Dr.wael elhelece photochemistry 431chemDr.wael elhelece photochemistry 431chem
Dr.wael elhelece photochemistry 431chem
 
Nitrogen fixation -
Nitrogen fixation - Nitrogen fixation -
Nitrogen fixation -
 
Nitrogen Cycle
Nitrogen CycleNitrogen Cycle
Nitrogen Cycle
 
Ppt on hepatitis b
Ppt on hepatitis b Ppt on hepatitis b
Ppt on hepatitis b
 
Conjugation
Conjugation  Conjugation
Conjugation
 
Blockbusters #soccd
Blockbusters #soccdBlockbusters #soccd
Blockbusters #soccd
 
biodegradation of hydrocarbons
biodegradation of hydrocarbonsbiodegradation of hydrocarbons
biodegradation of hydrocarbons
 
Transformations
TransformationsTransformations
Transformations
 
History of microbiology
History of microbiologyHistory of microbiology
History of microbiology
 
Cultural characteristics
Cultural characteristicsCultural characteristics
Cultural characteristics
 
Dark field microscopy
Dark field microscopyDark field microscopy
Dark field microscopy
 
Phase contrast microscopy
Phase contrast microscopyPhase contrast microscopy
Phase contrast microscopy
 
History of microbiology
History of microbiologyHistory of microbiology
History of microbiology
 
Genetic Analysis and Mapping in Bacteria and Bacteriophages
Genetic Analysis and Mapping in Bacteria and Bacteriophages Genetic Analysis and Mapping in Bacteria and Bacteriophages
Genetic Analysis and Mapping in Bacteria and Bacteriophages
 
Bright field microscopes
Bright field microscopesBright field microscopes
Bright field microscopes
 
Hepatitis Presentation
Hepatitis PresentationHepatitis Presentation
Hepatitis Presentation
 

Similaire à Nitrogen fixation

nitrogenmetabolism-201028181632.pdf
nitrogenmetabolism-201028181632.pdfnitrogenmetabolism-201028181632.pdf
nitrogenmetabolism-201028181632.pdf
StarletMG
 
Nitrobacteriaceae & Pseudomonas
Nitrobacteriaceae & PseudomonasNitrobacteriaceae & Pseudomonas
Nitrobacteriaceae & Pseudomonas
Alia Najiha
 

Similaire à Nitrogen fixation (20)

Nitrogenfixation physiology-140915092707-phpapp02
Nitrogenfixation physiology-140915092707-phpapp02Nitrogenfixation physiology-140915092707-phpapp02
Nitrogenfixation physiology-140915092707-phpapp02
 
Nitrogenfixation poliomyelitis hlivzddddddddddddddddddddddddddddddddddddddddd...
Nitrogenfixation poliomyelitis hlivzddddddddddddddddddddddddddddddddddddddddd...Nitrogenfixation poliomyelitis hlivzddddddddddddddddddddddddddddddddddddddddd...
Nitrogenfixation poliomyelitis hlivzddddddddddddddddddddddddddddddddddddddddd...
 
BIOLOGY FORM 4 CHAPTER 8 - DYNAMIC ECOSYSTEM PART 5
BIOLOGY FORM 4 CHAPTER 8 - DYNAMIC ECOSYSTEM PART 5BIOLOGY FORM 4 CHAPTER 8 - DYNAMIC ECOSYSTEM PART 5
BIOLOGY FORM 4 CHAPTER 8 - DYNAMIC ECOSYSTEM PART 5
 
Nitrogen fixation
Nitrogen fixationNitrogen fixation
Nitrogen fixation
 
Nitrogen Metabolism.pdf
Nitrogen Metabolism.pdfNitrogen Metabolism.pdf
Nitrogen Metabolism.pdf
 
Chemoautotrophs and photosynthetic eubacteria
Chemoautotrophs and photosynthetic eubacteriaChemoautotrophs and photosynthetic eubacteria
Chemoautotrophs and photosynthetic eubacteria
 
Biological nitrogen fixation.pptx
Biological nitrogen fixation.pptxBiological nitrogen fixation.pptx
Biological nitrogen fixation.pptx
 
Nitrogen metabolism
Nitrogen metabolismNitrogen metabolism
Nitrogen metabolism
 
nitrogenmetabolism-201028181632.pdf
nitrogenmetabolism-201028181632.pdfnitrogenmetabolism-201028181632.pdf
nitrogenmetabolism-201028181632.pdf
 
Plant microbe n-fixation
Plant microbe n-fixationPlant microbe n-fixation
Plant microbe n-fixation
 
nitrogen fixing mo.pptx
nitrogen fixing mo.pptxnitrogen fixing mo.pptx
nitrogen fixing mo.pptx
 
Bacterial physiologogy
Bacterial physiologogyBacterial physiologogy
Bacterial physiologogy
 
Classification of Bacteria microbiology
Classification of Bacteria microbiologyClassification of Bacteria microbiology
Classification of Bacteria microbiology
 
37 plantnutrition text
37 plantnutrition text37 plantnutrition text
37 plantnutrition text
 
Nitrogen metabolism
Nitrogen metabolismNitrogen metabolism
Nitrogen metabolism
 
Nitrobacteriaceae & Pseudomonas
Nitrobacteriaceae & PseudomonasNitrobacteriaceae & Pseudomonas
Nitrobacteriaceae & Pseudomonas
 
N2 fixation sith
N2 fixation  sithN2 fixation  sith
N2 fixation sith
 
Role of microbes in nitrogen fixation
Role of microbes in nitrogen fixationRole of microbes in nitrogen fixation
Role of microbes in nitrogen fixation
 
N2 cycle.pdf for education, reduction, oxidation,
N2 cycle.pdf for education, reduction, oxidation,N2 cycle.pdf for education, reduction, oxidation,
N2 cycle.pdf for education, reduction, oxidation,
 
B sc micro i btm u 4 nutritional requirements
B sc micro i btm u 4 nutritional requirementsB sc micro i btm u 4 nutritional requirements
B sc micro i btm u 4 nutritional requirements
 

Plus de WISDOM WEALTH INTERNATIONAL SCHOOL, TAMILNADU

Plus de WISDOM WEALTH INTERNATIONAL SCHOOL, TAMILNADU (9)

Plant adaptation
Plant adaptationPlant adaptation
Plant adaptation
 
Asexual reproduction - mode of reproduction by single organisms
Asexual reproduction - mode of reproduction by single organismsAsexual reproduction - mode of reproduction by single organisms
Asexual reproduction - mode of reproduction by single organisms
 
Application of tissue culture in crop improvement
Application of tissue culture in crop improvementApplication of tissue culture in crop improvement
Application of tissue culture in crop improvement
 
Biofertilizers organic farming
Biofertilizers  organic farmingBiofertilizers  organic farming
Biofertilizers organic farming
 
analysis and presentation of data
analysis and presentation of dataanalysis and presentation of data
analysis and presentation of data
 
application of tissue culture in crop improvement
application of tissue culture in crop improvementapplication of tissue culture in crop improvement
application of tissue culture in crop improvement
 
Remote sensing and gis env bio
Remote sensing and gis  env bioRemote sensing and gis  env bio
Remote sensing and gis env bio
 
Role of indigenous people in biodiversity conservation
Role of indigenous people in biodiversity conservationRole of indigenous people in biodiversity conservation
Role of indigenous people in biodiversity conservation
 
Pollution its causes and remedies
Pollution its causes and remediesPollution its causes and remedies
Pollution its causes and remedies
 

Dernier

Salient Features of India constitution especially power and functions
Salient Features of India constitution especially power and functionsSalient Features of India constitution especially power and functions
Salient Features of India constitution especially power and functions
KarakKing
 
The basics of sentences session 3pptx.pptx
The basics of sentences session 3pptx.pptxThe basics of sentences session 3pptx.pptx
The basics of sentences session 3pptx.pptx
heathfieldcps1
 

Dernier (20)

Mehran University Newsletter Vol-X, Issue-I, 2024
Mehran University Newsletter Vol-X, Issue-I, 2024Mehran University Newsletter Vol-X, Issue-I, 2024
Mehran University Newsletter Vol-X, Issue-I, 2024
 
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
 
Food safety_Challenges food safety laboratories_.pdf
Food safety_Challenges food safety laboratories_.pdfFood safety_Challenges food safety laboratories_.pdf
Food safety_Challenges food safety laboratories_.pdf
 
Holdier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdfHoldier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdf
 
80 ĐỀ THI THỬ TUYỂN SINH TIẾNG ANH VÀO 10 SỞ GD – ĐT THÀNH PHỐ HỒ CHÍ MINH NĂ...
80 ĐỀ THI THỬ TUYỂN SINH TIẾNG ANH VÀO 10 SỞ GD – ĐT THÀNH PHỐ HỒ CHÍ MINH NĂ...80 ĐỀ THI THỬ TUYỂN SINH TIẾNG ANH VÀO 10 SỞ GD – ĐT THÀNH PHỐ HỒ CHÍ MINH NĂ...
80 ĐỀ THI THỬ TUYỂN SINH TIẾNG ANH VÀO 10 SỞ GD – ĐT THÀNH PHỐ HỒ CHÍ MINH NĂ...
 
Salient Features of India constitution especially power and functions
Salient Features of India constitution especially power and functionsSalient Features of India constitution especially power and functions
Salient Features of India constitution especially power and functions
 
Towards a code of practice for AI in AT.pptx
Towards a code of practice for AI in AT.pptxTowards a code of practice for AI in AT.pptx
Towards a code of practice for AI in AT.pptx
 
How to Add New Custom Addons Path in Odoo 17
How to Add New Custom Addons Path in Odoo 17How to Add New Custom Addons Path in Odoo 17
How to Add New Custom Addons Path in Odoo 17
 
Accessible Digital Futures project (20/03/2024)
Accessible Digital Futures project (20/03/2024)Accessible Digital Futures project (20/03/2024)
Accessible Digital Futures project (20/03/2024)
 
REMIFENTANIL: An Ultra short acting opioid.pptx
REMIFENTANIL: An Ultra short acting opioid.pptxREMIFENTANIL: An Ultra short acting opioid.pptx
REMIFENTANIL: An Ultra short acting opioid.pptx
 
Sociology 101 Demonstration of Learning Exhibit
Sociology 101 Demonstration of Learning ExhibitSociology 101 Demonstration of Learning Exhibit
Sociology 101 Demonstration of Learning Exhibit
 
Unit 3 Emotional Intelligence and Spiritual Intelligence.pdf
Unit 3 Emotional Intelligence and Spiritual Intelligence.pdfUnit 3 Emotional Intelligence and Spiritual Intelligence.pdf
Unit 3 Emotional Intelligence and Spiritual Intelligence.pdf
 
Python Notes for mca i year students osmania university.docx
Python Notes for mca i year students osmania university.docxPython Notes for mca i year students osmania university.docx
Python Notes for mca i year students osmania university.docx
 
Exploring_the_Narrative_Style_of_Amitav_Ghoshs_Gun_Island.pptx
Exploring_the_Narrative_Style_of_Amitav_Ghoshs_Gun_Island.pptxExploring_the_Narrative_Style_of_Amitav_Ghoshs_Gun_Island.pptx
Exploring_the_Narrative_Style_of_Amitav_Ghoshs_Gun_Island.pptx
 
Key note speaker Neum_Admir Softic_ENG.pdf
Key note speaker Neum_Admir Softic_ENG.pdfKey note speaker Neum_Admir Softic_ENG.pdf
Key note speaker Neum_Admir Softic_ENG.pdf
 
SOC 101 Demonstration of Learning Presentation
SOC 101 Demonstration of Learning PresentationSOC 101 Demonstration of Learning Presentation
SOC 101 Demonstration of Learning Presentation
 
How to Create and Manage Wizard in Odoo 17
How to Create and Manage Wizard in Odoo 17How to Create and Manage Wizard in Odoo 17
How to Create and Manage Wizard in Odoo 17
 
On National Teacher Day, meet the 2024-25 Kenan Fellows
On National Teacher Day, meet the 2024-25 Kenan FellowsOn National Teacher Day, meet the 2024-25 Kenan Fellows
On National Teacher Day, meet the 2024-25 Kenan Fellows
 
Kodo Millet PPT made by Ghanshyam bairwa college of Agriculture kumher bhara...
Kodo Millet  PPT made by Ghanshyam bairwa college of Agriculture kumher bhara...Kodo Millet  PPT made by Ghanshyam bairwa college of Agriculture kumher bhara...
Kodo Millet PPT made by Ghanshyam bairwa college of Agriculture kumher bhara...
 
The basics of sentences session 3pptx.pptx
The basics of sentences session 3pptx.pptxThe basics of sentences session 3pptx.pptx
The basics of sentences session 3pptx.pptx
 

Nitrogen fixation

  • 1. M.Uma Maheshwari, Reg No. 13APBO10 II M.Sc Botany
  • 2. » Major substance in plants next to water » Building blocks » Constituent element of » Chlorophyll » Cytochromes » Alkaloids » Many vitamins » Plays important role in metabolism, growth, reproduction and heredity
  • 3.  Atmospheric Nitrogen  78% of atmosphere  Plants cannot utilize this form  Some Bacteria, Blue Green Algae, leguminous plants  Nitrates, Nitrites and Ammonia  Nitrate is chief form Amino acids in the soil  Many soil organisms use this form  Higher plants can also taken by higher plants  Organic Nitrogenous compounds in insects  Insectivorous plants
  • 4.  The conversion of free nitrogen into nitrogenous salts to make it available for absorption of plants
  • 5. Nitrogen fixation Non biological Biological Non - symbiotic Symbiotic
  • 6.  The micro-organisms do not take place  Found in rainy season during lightning 1. N2 + O2 lightning 2 NO (Nitric oxide) 2. 2NO + O2 oxidation 2NO2 ( Nitrogen per oxide) 3. 2NO2 + H2O HNO2 + HNO3 4. 4NO2 + 2H2O + O2 4HNO3 (Nitric acid) 5. CaO + 2HNO3 Ca (NO3)2 + H2O (Calcium nitrate) 6. HNO3 + NH3 NH4NO3 (Ammonium nitrate) 7. HNO2 + NH3 NH4NO2 (Ammonium nitrite)
  • 7.  Fixation of atmospheric Nitrogen into nitrogenous salts with the help of micro-organisms  Two types  Symbiotic  Non-symbiotic
  • 8. o Fixation carried out by free living micro-organisms o Aerobic, anaerobic and blue green algae o Bacteria: special type (nitrogen fixing bacteria) types - o Free living aerobic : Azotobacter, Beijerenckia o Free living anaerobic : Clostridium o Free living photosynthetic : Chlorobium, Rhodopseudomonas o Free living chemosynthetic :Desulfovibro,Thiobacillus
  • 9. o Free living fungi: yeasts and Pillularia o Blue green algae: o unicellular – Gloeothece, Synechococcus o Filamentous (non heterocystous) -Oscillatoria o Filamentous (heterocystous) – Tolypothrix, Nostoc, Anabaena
  • 10.  Fixation of free nitrogen by micro-organisms in soil living symbiotically inside the plants  ‘Symbiosis’ – coined by DeBary  Three categories  Nodule formation in leguminous plants  Nodule formation in non-leguminous plants  Non nodulation
  • 11.  2500 spp. Of family leguminosae ( Cicer arientium, Pisum, Cajanus, Arachis) produce root nodules with Rhizobium spp.  They fix Nitrogen only inside the root nodules  Association provides-food and shelter to bacteria -bacteria supply fixed nitrogen to plant  Nodules may buried in soil even after harvesting – continue nitrogen fixation
  • 12.  Some other plants also produces root nodules  Causuarina equisetifolia – Frankia  Alnus – Frankia  Myrica gale – Frankia  Parasponia – Rhizobium  Leaf nodules are also noted  Dioscorea, Psychotria  Gymnosperms – root – Podocarpus, - leaves – Pavetta zinumermanniana, Chomelia
  • 13.  Lichens - cyanobacteria  Anthoceros - Nostoc  Azolla – Anabaena azollae  Cycas – Nostoc and anabaene  Gunnera macrophylla - Nostoc  Digitaria, Maize and Sorghum – Spirillum notatum  Paspalum notatum – Azotobacter paspali
  • 14.  Small, knob-like protuberances-root nodules  Size and shape varies  Spherical, flat, finger-like or elongated  From Pin head to one centimeter in size  Various spp. Of Rhizobium noted  Named after the host plant  Pea – Rhizobium leguminosarum  Beans – R. phaseoli  Soyabeans – R. japonicum  Lupins – R. lupini  Two types of Rhizobium-  Bradyrhizobium – slow growing spp.  Rhizobium - fast growing spp.
  • 15.  Gram negative  Non spore forming  Micro-aerobic  Show a degree of specificity  The two partners (Bacteria and Host) recognized by chemical substance LECTINS - phytoagglutinins (carbohydrate containing plant protein)
  • 16.  Root nodules formed due to infection of Rhizobium  Free living bacteria growing near root of legumes unable to fix nitrogen in free condition  Roots of the legumes secrete some growth factors helps in fast multiplication of bacteria  (E.g.) Pisum sativum secretes homo serine also carbohydrate containing protein Lectins over their surface
  • 17.  This helps in recognition and attachment of rhizobial cells  Rhizobial cells have carbohydrate receptor on their surface  Lectins interact with the carbohydrate receptor of rhizobial cells  Occur between root hairs and young root hair  Bacteria enter the roots through soft infected root hairs  Tips are deformed and curved  Tubular infection thread is formed in the root hair cell and bacteria enters into it
  • 18.
  • 19.
  • 20.
  • 21.  After entry, new cell wall is formed  Tubular infection contains mucopolysaccharides where bacteria embedded and start multiplication  It grows much and reaches the inner layers of cortex and the bacteria is released  It induces the cortical cells to multiply which result in the formation of nodule on the surface  The bacterial cells multiplies and colonize in the multiplying host cells
  • 22.  After host cells are completely filled, bacterial cells becomes dormant-bacteroids  Float in leghaemoglobin – reddish pigment in cytoplasm of host cells - Efficient O2 scavenger - Maintains steady state of oxygen - Stimulates ATP production  Present studies indicates that leghaemoglobin is not essential  Nitrogenous compounds synthesized is translocated through vascular tissues  Groups of rhizobia surrounded by double membrane originated from host cell wall  Bacteroids lack firm wall (osmotically liable)
  • 23.  Basic requirements for Nitrogen fixation  Nitrogenase and hydrogenase enzyme  Protective mechanism against Oxygen  Ferrodoxin  Hydrogen releasing system or electron donor (Pyruvic acid or glucose/sucrose)  Constant supply of ATP  Coenzymes and cofactors TPP, CoA, inorganic phosphate and Mg+2  Cobalt and Molybdenum  A carbon compound
  • 24.  Plays key role  Active in anaerobic condition  Made up of two protein subunits  Non heme iron protein ( Fe-protein or dinitrogen reductase)  Iron molybdenum protein (Mo Fe-protein or dinitrogenase)  Fe protein reacts with ATP and reduces second subunit which ultimately reduces N2 into ammonia N2 + 6H+ + 6e- 2NH3
  • 25.  The reduction of N2 into NH3 requires 6 protons and 6 electrons  12 mols of ATP required  One pair of electron requires 4 ATP  The modified equation N2 + 8H+ + 8e- 2NH3 + H2  Hydrogen produced is catalyzed into protons and electrons by hydrogenase hydrogenase H2 2H+ + 2e-
  • 26.  Glucose-6-phosphate acts as a electron donor Sucrose (synthesized in leaves) Sucrose ( in roots ) Glucose and fructose Glucose-6- phosphate  Glucose-6-phosphate is converted to phosphogluconic acid Glucose-6-phosphate + NADP+ + H2O 6-phosphogluconic acid + NADPH + H+ NADPH donates electrons to ferrodoxin. Protons released and ferrodoxin is reduced  Reduced ferrodoxin acts as electron carrier. Donate electron to Fe-protein to reduce it. Electrons released from ferrodoxin thus oxidized
  • 27.  Reduced Fe-protein combines with ATP in the presence of Mg +2  Second sub unit is activated and reduced  It donates electrons to N2 to NH3  Enzyme set free after complete reduction of N2 to NH3 Mo – N=NH Mo=N-NH2 MoΞN+NH3 NΞN Mo-NΞN Mo + NH3