4.2 Review

The complexity of the Sclerotinia sclerotiorum pathosystem in soybean: virulence factors, resistance mechanisms, and their exploitation to control Sclerotinia stem rot

Journal

TROPICAL PLANT PATHOLOGY
Volume 44, Issue 1, Pages 12-22

Publisher

SPRINGER
DOI: 10.1007/s40858-018-0259-4

Keywords

Sclerotinia sclerotiorum; Soybean; Resistance; Oxalic acid; Virulence factors; Control

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Funding

  1. Wisconsin Soybean Marketing Board (WSMB)
  2. North Central Soybean Research Program (NCSRP)
  3. SciMed at the University of Wisconsin-Madison
  4. Department of Plant Pathology at University of Wisconsin-Madison

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Sclerotinia stem rot (SSR), caused by Sclerotinia sclerotiorum, is a globally important, yield limiting disease of soybean. Progress has been made in our understanding of this pathosystem at the plant level, such as the key role of oxalic acid in disease development and the importance of cell wall-degrading enzymes and other secreted proteins. Unfortunately, advances have largely focused on the fungal side of this interaction and only provide glimpses into the plant mechanisms governing resistance to this pathogen. With the absence of commercially available resistant soybeans, chemical and cultural solutions are being used by farmers to manage SSR with limited success. Additional research is needed to identify S. sclerotiorum resistance mechanisms that can be exploited to improve genetic resistance in soybean and decrease reliance on spray regimes. Technologies such as transgenics and RNAi could be exploited to improve the level of resistance to S. sclerotiorum in soybean. This review offers insight into the hurdles of managing SSR at the plant level and potential solutions that might be adopted in the future.

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