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Tissue-specific volatile-mediated defense regulation in maize leaves and roots

van Doan, C.; Zuest, T.; Maurer, C.; Zhang, X.; Machado, R. A. R.; Mateo, P.; Ye, M.; Schimmel, B. C. J.; Glauser, G.; Robert, C. A.

2020-02-23 plant biology
10.1101/2020.02.21.959437 bioRxiv
Show abstract

O_LIPlant leaves that are exposed to herbivore induced plant volatiles (HIPVs) respond by increasing their defenses. Whether this phenomenon also occurs in the roots is unknown. C_LIO_LIUsing maize (Zea mays), whose leaves respond strongly to leaf HIPVs, we measured the impact of root HIPVs, emanating from plants infested by the banded cucumber beetle (Diabrotica balteata), on constitutive and herbivore-induced levels of root soluble sugars, starch, total soluble proteins, free amino acids, volatile and non-volatile secondary metabolites, defense gene expression, growth and root herbivore resistance of neighboring plants. C_LIO_LIHIPV exposure did not alter constitutive or induced levels of any of the measured root traits. Furthermore, HIPV exposure did not reduce the performance and survival of banded cucumber beetle larvae on maize or teosinte. Cross-exposure experiments revealed that maize roots, in contrast to maize leaves, neither emit nor respond strongly to defense-regulating HIPVs. C_LIO_LITogether, these results demonstrate that volatile-mediated defense regulation is restricted to the leaves of maize and teosinte, a finding which is in line with the lower diffusibility of volatiles in the soil and the availability of other, potentially more efficient information conduits below ground. C_LI

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