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Rapid Senescence in Sockeye Salmon
       (Oncorhynchus nerka)
Rapid Senescence
• Pacific salmon are semelparous and die of
  senescence soon after beginning reproductive
  behavior

• Individuals go from peak health to death in a
  matter of days to weeks
  – Rates vary within populations and among populations

• Loss of aggression, loss of strength and swimming
  ability, and physical decline
Physical Signs of Senescence


 Frayed fins




                      Loss of coloration
Research Question:

WHAT CAUSES RAPID SENESCENCE
IN SOCKEYE SALMON?
Study Site in Southwest Alaska:
         Hansen Creek
               Small tributary of Lake Aleknagik

               Nearly uniform top to bottom:
               4m wide & 10cm deep riffles

               Annual spawning population of
               3,000 – 20,000 sockeye salmon

               Stream life annually averages
               below 10 days (usually 7-14)
Study Site in Southwest Alaska:
             Iliamna Lake Ponds
Tributary of Lake Iliamna, the
largest lake in Alaska (2,600 km2)

Small, variable population size
(~500)

Larger individuals and longer
reproductive lifespan
(19.4 days in 2008)
Salmon Entering Hansen Creek
              Up to 40% of individuals may strand
              at stream mouth in a given year
                 Sampled for a “pre-senescent”
                 baseline for gene expression
Laboratory Procedures
• RNA extraction and quantification of genes of
  interest (brain tissues)
  – Adrenocorticotropic hormone (ACTH)
  – Corticotropin-releasing hormone (CRH)
  – Heat shock protein (HSC71)

• Protein extraction and quantification
  (liver tissues)
  – Heat shock protein: HSP70
Why did I look at ACTH & CRH?

                         Both are genes involved in
                         the cortisol production and
                         regulation pathway

                         Cortisol = stress hormone
                         •Suppresses immune system
                         •Inhibits glucose uptake
                         •Stimulates protein
                         degredation


       Anterior Kidney
Why heat shock proteins?
• Heat shock proteins = stress proteins
  – Chaperones: move other proteins around cells
  – Help with protein-folding & identify incorrectly-
    folded proteins
  – Prepare old proteins to be degraded by cell


• Predicted to be associated with senescence
Gene Expression Analysis

                 Designed primers for ACTH,
                 CRH, and HSC71

                 Quantified with Real-time
                 PCR

                 Corrected for total RNA
                 used by comparing 18s
                 expression levels
No significant differences
                                          or major trends
                      25
Relative Expression




                      20
                                            CRH
                                                                                         3
                                                                                                              ACTH




                                                                   Relative Expression
                      15

                      10                                                                 2
                      5

                      0                                                                  1

                           Pre-Senescent    Hansen       Ponds
                                           Senescent   Senescent                         0

                      40                                                                     Pre-Senesncent    Hansen       Ponds
Relative Expression




                      35
                                           HSC71                                                              Senescent   Senescent
                      30
                      25
                      20
                      15
                      10
                                                                                              • Large Variation &
                       5
                       0                                                                        Low Sample Sizes
                           Pre-Senescent    Hansen       Ponds
                                           Senescent   Senescent
Explanations for high variation?
• Factors I explored for each gene of interest:
  – Body size
  – Sex of individuals
  – Entry date or date of senescence
  – Stream life
CRH levels lower in
                                 slower-senescing individuals
                      35.0

                      30.0                                        R² = 0.903
Relative Expression




                                                                  P = 0.0036
                      25.0

                      20.0

                      15.0

                      10.0

                       5.0

                       0.0
                             3       4     5        6        7         8       9
                                          In-stream Life (Days)
Western Blot Protein Analysis




Western Blot using antibody for HSP70

Quantified total protein from each sample and HSP70 proportion
Increased concentrations of HSP70
                              in senescent individuals
                 8000

                 7000

                 6000
Band Intensity




                 5000

                 4000

                 3000

                 2000

                 1000

                    0
                           Pre-Senescent   Hansen Senescent   Ponds Senescent
                                           Sampling Group
Summary of Findings
• High CRH levels indicate or result in more
  rapid senescence

• HSP70 at higher levels in senescent individuals
  – Slightly higher in the more rapidly senescing
    Hansen Creek population than in Iliamna Ponds
Prospects for Future Research
• Follow up on CRH findings, directly measure
  cortisol levels

• Look at other genes that may be involved in
  rapid senescence

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Jensen FISH495

  • 1. Rapid Senescence in Sockeye Salmon (Oncorhynchus nerka)
  • 2. Rapid Senescence • Pacific salmon are semelparous and die of senescence soon after beginning reproductive behavior • Individuals go from peak health to death in a matter of days to weeks – Rates vary within populations and among populations • Loss of aggression, loss of strength and swimming ability, and physical decline
  • 3. Physical Signs of Senescence Frayed fins Loss of coloration
  • 4. Research Question: WHAT CAUSES RAPID SENESCENCE IN SOCKEYE SALMON?
  • 5. Study Site in Southwest Alaska: Hansen Creek Small tributary of Lake Aleknagik Nearly uniform top to bottom: 4m wide & 10cm deep riffles Annual spawning population of 3,000 – 20,000 sockeye salmon Stream life annually averages below 10 days (usually 7-14)
  • 6. Study Site in Southwest Alaska: Iliamna Lake Ponds Tributary of Lake Iliamna, the largest lake in Alaska (2,600 km2) Small, variable population size (~500) Larger individuals and longer reproductive lifespan (19.4 days in 2008)
  • 7.
  • 8. Salmon Entering Hansen Creek Up to 40% of individuals may strand at stream mouth in a given year Sampled for a “pre-senescent” baseline for gene expression
  • 9. Laboratory Procedures • RNA extraction and quantification of genes of interest (brain tissues) – Adrenocorticotropic hormone (ACTH) – Corticotropin-releasing hormone (CRH) – Heat shock protein (HSC71) • Protein extraction and quantification (liver tissues) – Heat shock protein: HSP70
  • 10. Why did I look at ACTH & CRH? Both are genes involved in the cortisol production and regulation pathway Cortisol = stress hormone •Suppresses immune system •Inhibits glucose uptake •Stimulates protein degredation Anterior Kidney
  • 11. Why heat shock proteins? • Heat shock proteins = stress proteins – Chaperones: move other proteins around cells – Help with protein-folding & identify incorrectly- folded proteins – Prepare old proteins to be degraded by cell • Predicted to be associated with senescence
  • 12. Gene Expression Analysis Designed primers for ACTH, CRH, and HSC71 Quantified with Real-time PCR Corrected for total RNA used by comparing 18s expression levels
  • 13. No significant differences or major trends 25 Relative Expression 20 CRH 3 ACTH Relative Expression 15 10 2 5 0 1 Pre-Senescent Hansen Ponds Senescent Senescent 0 40 Pre-Senesncent Hansen Ponds Relative Expression 35 HSC71 Senescent Senescent 30 25 20 15 10 • Large Variation & 5 0 Low Sample Sizes Pre-Senescent Hansen Ponds Senescent Senescent
  • 14. Explanations for high variation? • Factors I explored for each gene of interest: – Body size – Sex of individuals – Entry date or date of senescence – Stream life
  • 15. CRH levels lower in slower-senescing individuals 35.0 30.0 R² = 0.903 Relative Expression P = 0.0036 25.0 20.0 15.0 10.0 5.0 0.0 3 4 5 6 7 8 9 In-stream Life (Days)
  • 16. Western Blot Protein Analysis Western Blot using antibody for HSP70 Quantified total protein from each sample and HSP70 proportion
  • 17. Increased concentrations of HSP70 in senescent individuals 8000 7000 6000 Band Intensity 5000 4000 3000 2000 1000 0 Pre-Senescent Hansen Senescent Ponds Senescent Sampling Group
  • 18. Summary of Findings • High CRH levels indicate or result in more rapid senescence • HSP70 at higher levels in senescent individuals – Slightly higher in the more rapidly senescing Hansen Creek population than in Iliamna Ponds
  • 19. Prospects for Future Research • Follow up on CRH findings, directly measure cortisol levels • Look at other genes that may be involved in rapid senescence

Editor's Notes

  1. Ran proteins on SDS-PAGE to separate proteins by molecular weightProteins transferred to a nylon membrane