Plant roots sense soil compaction through restricted ethylene diffusion

Publication date

2021-01-15

Authors

Pandey, Bipin K.
Huang, Guoqiang
Bhosale, Rahul
Hartman, SjonORCID 0000-0002-6709-6436ISNI 0000000492529146
Sturrock, Craig J.
Jose, Lottie
Martin, Olivier C.
Karady, Michal
Voesenek, Laurentius A C JISNI 0000000393162721
Ljung, Karin

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Article
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taverne

Abstract

Soil compaction represents a major challenge for modern agriculture. Compaction is intuitively thought to reduce root growth by limiting the ability of roots to penetrate harder soils. We report that root growth in compacted soil is instead actively suppressed by the volatile hormone ethylene. We found that mutant Arabidopsis and rice roots that were insensitive to ethylene penetrated compacted soil more effectively than did wild-type roots. Our results indicate that soil compaction lowers gas diffusion through a reduction in air-filled pores, thereby causing ethylene to accumulate in root tissues and trigger hormone responses that restrict growth. We propose that ethylene acts as an early warning signal for roots to avoid compacted soils, which would be relevant to research into the breeding of crops resilient to soil compaction.

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Citation

Pandey, B K, Huang, G, Bhosale, R, Hartman, S, Sturrock, C J, Jose, L, Martin, O C, Karady, M, Voesenek, L A C J, Ljung, K, Lynch, J P, Brown, K M, Whalley, W R, Mooney, S J, Zhang, D & Bennett, M J 2021, 'Plant roots sense soil compaction through restricted ethylene diffusion', Science, vol. 371, no. 6526, pp. 276-280. https://doi.org/10.1126/science.abf3013