Injured and uninjured leaf photosynthetic responses after mechanical injury on Nerium oleander leaves, and Danaus plexippus herbivory on Asclepias curassavica leaves

被引:28
作者
Delaney, Kevin J. [1 ,2 ]
机构
[1] Montana State Univ, Dept Land Resource & Environm Sci, Bozeman, MT 59717 USA
[2] Xavier Univ Louisiana, Dept Biol, New Orleans, LA 70125 USA
关键词
Defoliation; Herbivory; Photosynthesis; Plant-insect interactions; Biotic stress;
D O I
10.1007/s11258-008-9423-0
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Insect herbivory has variable effects on plant physiology; so greater understanding is needed about how injury alters photosynthesis on individual injured and uninjured leaves. Gas exchange and light-adapted leaf chlorophyll fluorescence measurements were collected from uninjured and mechanical partial leaf defoliation in two experiments with Nerium oleander (Apocynaceae) leaves, and one experiment with Danaus plexippus herbivory on Asclepias curassavica (Asclepiadaceae) leaves. Gas exchange impairment (lower photosynthetic rate (P-n ), stomatal conductance (g(s))) indicates water stress in a leaf, suggests stomatal limitations causing injury P-n impairment. The same pattern of gas exchange impairment also occurred on uninjured leaves opposite from injured leaves in both N. oleander experiments. This is an interesting result because photosynthetic impairment is rarely reported on injured leaves near injured leaves. No photosynthetic changes occurred in uninjured A. curassavica leaves opposite from D. plexippus-fed leaves. Partially defoliated leaves that had P-n and g(s) reductions lacked any significant changes in intercellular leaf [CO2], C-i. These results neither support, nor are sufficient to reject, stomatal limitations to photosynthesis. Manually imposed midrib vein severance in N. oleander experiment #1 significantly increased leaf C-i, indicating mesophyll limitations to photosynthesis. Maximal light-adapted leaf photochemical efficiency (F-V'/F-M') and also non-photochemical quenching (q(N)) were reduced by mechanical or insect herbivory to both study species, suggesting leaf trouble handling excess light energy not used for photochemistry. Midrib injury on N. oleander leaves and D. plexippus herbivory on A. curassavica leaves also reduced effective quantum yield (Phi PSII) and photochemical quenching (q(P)); so reduced plastoquinone pools could lead to additional PSII reaction center closure.
引用
收藏
页码:187 / 200
页数:14
相关论文
共 52 条
  • [1] Comparison of photosynthetic damage from arthropod herbivory and pathogen infection in understory hardwood saplings
    Aldea, Mihai
    Hamilton, Jason G.
    Resti, Joseph P.
    Zangerl, Arthur R.
    Berenbaum, May R.
    Frank, Thomas D.
    DeLucia, Evan H.
    [J]. OECOLOGIA, 2006, 149 (02) : 221 - 232
  • [2] PLASTICITY AND OVERCOMPENSATION IN GRASS RESPONSES TO HERBIVORY
    ALWARD, RD
    JOERN, A
    [J]. OECOLOGIA, 1993, 95 (03) : 358 - 364
  • [3] Anten NPR, 2001, FUNCT ECOL, V15, P252, DOI 10.1046/j.1365-2435.2001.00517.x
  • [4] COORDINATION OF PHOTOSYNTHETIC AND ALKALOIDAL RESPONSES TO DAMAGE IN UNINDUCIBLE AND INDUCIBLE NICOTIANA-SYLVESTRIS
    BALDWIN, IT
    OHNMEISS, TE
    [J]. ECOLOGY, 1994, 75 (04) : 1003 - 1014
  • [5] Bjorkman O, 1995, ECOPHYSIOLOGY PHOTOS
  • [6] CANDOLFIVASCONCELOS MC, 1994, AM J ENOL VITICULT, V45, P173
  • [7] CHIARELLO NR, 1991, RESPONSE PLANTS MULT
  • [8] Herbivory and plant defenses in tropical forests
    Coley, PD
    Barone, JA
    [J]. ANNUAL REVIEW OF ECOLOGY AND SYSTEMATICS, 1996, 27 : 305 - 335
  • [9] DELANEY KD, 2001, BIOTIC STRESS YIELD
  • [10] An insect countermeasure impacts plant physiology: midrib vein cutting, defoliation and leaf photosynthesis
    Delaney, Kevin J.
    Higley, Leon G.
    [J]. PLANT CELL AND ENVIRONMENT, 2006, 29 (07) : 1245 - 1258