4.7 Article

High-throughput phenotyping reveals differential transpiration behaviour within the banana wild relatives highlighting diversity in drought tolerance

期刊

PLANT CELL AND ENVIRONMENT
卷 45, 期 6, 页码 1647-1663

出版社

WILEY
DOI: 10.1111/pce.14310

关键词

drought; stomata

资金

  1. Global TRUST foundation
  2. Consortium of International Agricultural Research Centers
  3. European Cooperation in Science and Technology
  4. Belgisch Ontwikkelingsagentschap

向作者/读者索取更多资源

This study evaluated genotype-dependent transpiration responses in banana wild relatives and found that they contain useful drought tolerance traits. The research highlights the importance of conserving these wild relatives and their potential for use in breeding programs.
Crop wild relatives, the closely related species of crops, may harbour potentially important sources of new allelic diversity for (a)biotic tolerance or resistance. However, to date, wild diversity is only poorly characterized and evaluated. Banana has a large wild diversity but only a narrow proportion is currently used in breeding programmes. The main objective of this study was to evaluate genotype-dependent transpiration responses in relation to the environment. By applying continuous high-throughput phenotyping, we were able to construct genotype-specific transpiration response models in relation to light, VPD and soil water potential. We characterized and evaluated six (sub)species and discerned four phenotypic clusters. Significant differences were observed in leaf area, cumulative transpiration and transpiration efficiency. We confirmed a general stomatal-driven 'isohydric' drought avoidance behaviour, but discovered genotypic differences in the onset and intensity of stomatal closure. We pinpointed crucial genotype-specific soil water potentials when drought avoidance mechanisms were initiated and when stress kicked in. Differences between (sub)species were dependent on environmental conditions, illustrating the need for high-throughput dynamic phenotyping, modelling and validation. We conclude that the banana wild relatives contain useful drought tolerance traits, emphasising the importance of their conservation and potential for use in breeding programmes.

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