Water stress and insect herbivory interactively reduce crop yield while the insect pollination benefit is conserved

被引:25
|
作者
Raderschall, Chloe A. [1 ]
Vico, Giulia [2 ]
Lundin, Ola [1 ]
Taylor, Astrid R. [1 ]
Bommarco, Riccardo [1 ]
机构
[1] Swedish Univ Agr Sci, Dept Ecol, SE-75007 Uppsala, Sweden
[2] Swedish Univ Agr Sci, Dept Crop Prod Ecol, Uppsala, Sweden
关键词
climate change; drought; faba bean; herbivory; insect pollination; water stress; PLANT DROUGHT-STRESS; VICIA-FABA L; MYZUS-PERSICAE; FIELD BEANS; APHIS-FABAE; RESISTANCE; AVAILABILITY; POPULATIONS; PERFORMANCE; HYPOTHESIS;
D O I
10.1111/gcb.15386
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
Climate change is predicted to hamper crop production due to precipitation deficits and warmer temperatures inducing both water stress and increasing herbivory due to more abundant insect pests. Consequently, crop yields will be impacted simultaneously by abiotic and biotic stressors. Extensive yield losses due to such climate change stressors might, however, be mitigated by ecosystem services such as insect pollination. We examined the single and combined effects of water stress, insect herbivory and insect pollination on faba bean yield components and above- and belowground plant biomass under realistic field conditions. We used rainout shelters to simulate a scenario in line with climate change projections, with adequate water supply at sowing followed by a long period without precipitation. This induced a gradually increasing water stress, culminating around crop flowering and yield formation. We found that gradually increasing water stress combined with insect herbivory by aphids interactively shaped yield in faba beans. Individually, aphid herbivory reduced yield by 79% and water stress reduced yield by 52%. However, the combined effect of water stress and aphid herbivory reduced yield less (84%) than the sum of the individual stressor effects. In contrast, insect pollination increased yield by 68% independently of water availability and insect herbivory. Our results suggest that yield losses can be greatly reduced when both water stress and insect herbivory are reduced simultaneously. In contrast, reducing only one stressor has negligible benefits on yield as long as the crop is suffering from the other stressor. We call for further exploration of interactions among ecosystem services and biotic and abiotic stressors that simulate realistic conditions under climate change.
引用
收藏
页码:71 / 83
页数:13
相关论文
共 8 条
  • [1] Leaf traits, water stress, and insect herbivory: Is food selection a hierarchical process?
    Bisigato, Alejandro J.
    Sain, Claudia L.
    Campanella, M. Victoria
    Cheli, German H.
    ARTHROPOD-PLANT INTERACTIONS, 2015, 9 (05) : 477 - 485
  • [2] Soil compaction and insect pollination modify impacts of crop rotation on nitrogen fixation and yield
    St-Martin, Audrey
    Bommarco, Riccardo
    BASIC AND APPLIED ECOLOGY, 2016, 17 (07) : 617 - 626
  • [3] Leaf traits, water stress, and insect herbivory: Is food selection a hierarchical process?
    Alejandro J. Bisigato
    Claudia L. Saín
    M. Victoria Campanella
    Germán H. Cheli
    Arthropod-Plant Interactions, 2015, 9 : 477 - 485
  • [4] ENVIRONMENTAL CONTEXT OF ENDOPHYTE SYMBIOSES: INTERACTING EFFECTS OF WATER STRESS AND INSECT HERBIVORY
    Isabel Miranda, M.
    Omacini, Marina
    Chaneton, Enrique J.
    INTERNATIONAL JOURNAL OF PLANT SCIENCES, 2011, 172 (04) : 499 - 508
  • [5] Insect pollination reduces yield loss following heat stress in faba bean (Vicia faba L.)
    Bishop, Jacob
    Jones, Hannah Elizabeth
    Lukac, Martin
    Potts, Simon Geoffrey
    AGRICULTURE ECOSYSTEMS & ENVIRONMENT, 2016, 220 : 89 - 96
  • [6] Transgenes for insect resistance reduce herbivory and enhance fecundity in advanced generations of crop-weed hybrids of rice
    Yang, Xiao
    Xia, Hui
    Wang, Wei
    Wang, Feng
    Su, Jun
    Snow, Allison A.
    Lu, Bao-Rong
    EVOLUTIONARY APPLICATIONS, 2011, 4 (05): : 672 - 684
  • [8] Does drought stress eliminate the benefit of elevated CO2 on soybean yield? Using an improved model to link crop and soil water relations
    Sun, Wenguang
    Fleisher, David
    Timlin, Dennis
    Ray, Chittaranjan
    Wang, Zhuangji
    Sahila, Beegum
    Reddy, Vangimalla
    AGRICULTURAL AND FOREST METEOROLOGY, 2023, 343