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RED RUST OF TEA
 C/O : Cephaleurous parasiticus
 It is an algal diseases that attacks both young and old
tea plant up to an elevation of 600 masl.
 Usually epiphytic on leaves.
 More severe on tea plant grown under sub optimal
growing condition, ill drained soils, alkali soils and
inadequate or complete absent of shade.
Symptoms:
 Minute rusty spots on the young unfolded tender
leaves.
 Spots roundish and become enlarge upto 10-15 mm.
 Reddish and hairy spots on upper leaf surface.
 Old and thick leaves are discolored.
 In later stage spots spread to stem.
 Tissues of the stem are killed in patches and cause
dieback. The leaves of the infected branches variegate
with yellow patches.
Disease cycle:
 The algae produces microspores, rust colored, spore on the
surface of leaf.
 The sporangia are spread by wind and by water splash.
 The algae may spread from leaves to branches and fruits.
 Wide range of host, algal leaf spots are recorded on
avocado, , citrus, cocoa, coffee, guava, mango, oil palm,
pepper, tea, vanilla, and many more plants.
 Most algal spots develop on the upper leaf surface.
 Older infection becomes greenish-gray in color.
 Cephalerous usually does not harm the plant.
Management:
 Avoid plant stress
 Avoid poorly drained sites
 Promote good air circulation in the plant canopy to reduce
humidity and duration of leaf wetness
 Removal of infected portion and spraying of Bordeaux
mixture in the injured plant portion.
 spray the infected plant with Copper oxychloride 0.25 %.
 Destruction of affected plant portions
 Improving the nutrient status of the soil by the application
of nitrogen, phosphorus and potassium.
 C/O: Cephaleuros virescens.
 It caused by algal parasite
 Predominant on litchi
 Epiphytic on leaves
 Parasitic in nature
RED RUST OF LITCHI
Symptoms:
 the disease first appear on young unfolded tender branches .
 At first stage, small lesions of velvety white growth appear on
the lower surface of infected leaves .
 On the upper surface, just the opposite site of lesion, chlorotic
patches occur.
 As the leaf increase in size , the velvety growth becomes more
prominent and dense.
CONT..
 Later larger areas of leaves are affected with this growth .
 Old and thick leaves show various types of malformation like
depression and curling.
 Finally the velvety growth turns light brown to brick red.
 Spots spread to stem, infected stem become pale and appear
unhealthy even from a distance.
 Disease results in considerable decline in tree vigour and fruit yield.
Disease cycle:
 Algae can survive in stem and old leaves all year around .
 Algae forms sporangia on infected leaves and stem ,which are
exposed to air.
 Orange colored zoospores are formed inside the sporangia at
low temperature.
 Zoospores are round to oval in shape and are biflagellated.
 Zoospore swim in water and germinate to form thallus.
 Algae can survive in stem and old leaves all year around .
CONT..
 Algae forms sporangia on infected leaves and stem ,which
are exposed to air.
 Orange colored zoospores are formed inside the sporangia
at low temperature.
 Zoospores are round to oval in shape and are biflagellated.
 Zoospore swim in water and germinate to form thallus.
MANAGEMENT:
 Provide good drainage facility.
 Promote good air circulation to reduce humidity .
 Difficult to eradicate the disease after establishment, so
pruning and plucking of infected leaves should be done
immediately.
 Six spray of lime sulphur(3 in autumn and 3 in spring)at 15
days interval.
 Spray 0.3 % copper oxychloride during July to September is
effective.
 Avoid plant stress.
GUAVA RUST:
 C/O: Puccina psidii
 Guava (Psidium guajava - Myrtaceae) rust is the
most important disease of guava trees.
 Young leaves, flower buds, flowers, young fruit
and green shoots are infected by Puccina psidii
SYMPTOMS:
• The pathogen cause orange to red pustules appearing on
foliage, young shoots, inflorescences and fruit of guava.
• Typical symptoms associated with this disease include
distortion, defoliation, reduced growth and if severe,
mortality.
• On fully expanded leaves, dark bordered, roughly circular
brown lesions with yellow halos develop
• Severe infection results lesion to coalesce so that almost leaf
are covered.
• Leaf over 40 days are resistant to infection
DISEASE CYCLE:
 Soil and air borne
 Puccinia psidii is functionally autoecious , and hemicyclic (no spermogonia
and aecia ever observed)
 Teliospore remain dormant in soil germinate to give 4 haploid basidiospore
which form germ tube and enter into host epidermis, colonize, and produce
dikaryotic urediospore.
 Urediospore(asexual spore) are disseminated by rain splash for secondary
infection. At later stage black teliospore are formed.
 Temp of 12-25ºc and high humidity favours infection
 Disease usually begins to occur at the onset and development of young
shoots; leaves that are 40 days or more old have been observed to be more
resistant to infection
MANAGEMENT:
• Destruction of infected twigs, leaves and fruits by burning
• Root stock from sour guava
• Lower down the high RH and leaf wetness through proper
irrigation practices
• Adjust plant spacing ,fertilization and pruning of trees.
• Application of fungicides like copper oxychloride 0.2%
THANK YOU
Kushal Bhattarai
Kabita Kunwar
Krishna Dumre
Kiran Acharya

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Red rust of tea, litchi and guava

  • 1. RED RUST OF TEA  C/O : Cephaleurous parasiticus  It is an algal diseases that attacks both young and old tea plant up to an elevation of 600 masl.  Usually epiphytic on leaves.  More severe on tea plant grown under sub optimal growing condition, ill drained soils, alkali soils and inadequate or complete absent of shade.
  • 2. Symptoms:  Minute rusty spots on the young unfolded tender leaves.  Spots roundish and become enlarge upto 10-15 mm.  Reddish and hairy spots on upper leaf surface.  Old and thick leaves are discolored.  In later stage spots spread to stem.  Tissues of the stem are killed in patches and cause dieback. The leaves of the infected branches variegate with yellow patches.
  • 3.
  • 4. Disease cycle:  The algae produces microspores, rust colored, spore on the surface of leaf.  The sporangia are spread by wind and by water splash.  The algae may spread from leaves to branches and fruits.  Wide range of host, algal leaf spots are recorded on avocado, , citrus, cocoa, coffee, guava, mango, oil palm, pepper, tea, vanilla, and many more plants.  Most algal spots develop on the upper leaf surface.  Older infection becomes greenish-gray in color.  Cephalerous usually does not harm the plant.
  • 5. Management:  Avoid plant stress  Avoid poorly drained sites  Promote good air circulation in the plant canopy to reduce humidity and duration of leaf wetness  Removal of infected portion and spraying of Bordeaux mixture in the injured plant portion.  spray the infected plant with Copper oxychloride 0.25 %.  Destruction of affected plant portions  Improving the nutrient status of the soil by the application of nitrogen, phosphorus and potassium.
  • 6.  C/O: Cephaleuros virescens.  It caused by algal parasite  Predominant on litchi  Epiphytic on leaves  Parasitic in nature RED RUST OF LITCHI
  • 7. Symptoms:  the disease first appear on young unfolded tender branches .  At first stage, small lesions of velvety white growth appear on the lower surface of infected leaves .  On the upper surface, just the opposite site of lesion, chlorotic patches occur.  As the leaf increase in size , the velvety growth becomes more prominent and dense.
  • 8. CONT..  Later larger areas of leaves are affected with this growth .  Old and thick leaves show various types of malformation like depression and curling.  Finally the velvety growth turns light brown to brick red.  Spots spread to stem, infected stem become pale and appear unhealthy even from a distance.  Disease results in considerable decline in tree vigour and fruit yield.
  • 9.
  • 10. Disease cycle:  Algae can survive in stem and old leaves all year around .  Algae forms sporangia on infected leaves and stem ,which are exposed to air.  Orange colored zoospores are formed inside the sporangia at low temperature.  Zoospores are round to oval in shape and are biflagellated.  Zoospore swim in water and germinate to form thallus.  Algae can survive in stem and old leaves all year around .
  • 11. CONT..  Algae forms sporangia on infected leaves and stem ,which are exposed to air.  Orange colored zoospores are formed inside the sporangia at low temperature.  Zoospores are round to oval in shape and are biflagellated.  Zoospore swim in water and germinate to form thallus.
  • 12. MANAGEMENT:  Provide good drainage facility.  Promote good air circulation to reduce humidity .  Difficult to eradicate the disease after establishment, so pruning and plucking of infected leaves should be done immediately.  Six spray of lime sulphur(3 in autumn and 3 in spring)at 15 days interval.  Spray 0.3 % copper oxychloride during July to September is effective.  Avoid plant stress.
  • 13. GUAVA RUST:  C/O: Puccina psidii  Guava (Psidium guajava - Myrtaceae) rust is the most important disease of guava trees.  Young leaves, flower buds, flowers, young fruit and green shoots are infected by Puccina psidii
  • 14. SYMPTOMS: • The pathogen cause orange to red pustules appearing on foliage, young shoots, inflorescences and fruit of guava. • Typical symptoms associated with this disease include distortion, defoliation, reduced growth and if severe, mortality. • On fully expanded leaves, dark bordered, roughly circular brown lesions with yellow halos develop • Severe infection results lesion to coalesce so that almost leaf are covered. • Leaf over 40 days are resistant to infection
  • 15.
  • 16. DISEASE CYCLE:  Soil and air borne  Puccinia psidii is functionally autoecious , and hemicyclic (no spermogonia and aecia ever observed)  Teliospore remain dormant in soil germinate to give 4 haploid basidiospore which form germ tube and enter into host epidermis, colonize, and produce dikaryotic urediospore.  Urediospore(asexual spore) are disseminated by rain splash for secondary infection. At later stage black teliospore are formed.  Temp of 12-25ºc and high humidity favours infection  Disease usually begins to occur at the onset and development of young shoots; leaves that are 40 days or more old have been observed to be more resistant to infection
  • 17. MANAGEMENT: • Destruction of infected twigs, leaves and fruits by burning • Root stock from sour guava • Lower down the high RH and leaf wetness through proper irrigation practices • Adjust plant spacing ,fertilization and pruning of trees. • Application of fungicides like copper oxychloride 0.2%
  • 18. THANK YOU Kushal Bhattarai Kabita Kunwar Krishna Dumre Kiran Acharya