![]() Not many spores survive that, although those that are darkly pigmented may have a better chance. "Spores in these high-elevation air masses are exposed to temperature extremes and to UV radiation. And the chances are lower still if you consider what it's like for spores to survive in high-elevation air currents. In other words, the chances of spores making it out of the canopy and picked up by updrafts for long-distance movement might be lower than assumed. "If you think of the airspace beyond the field, the dilution factor is huge." There is a lot of variation in the number of spores in that air space," Hartman says. "I think the study gives a good idea of rust spore counts in the atmosphere in and above the soybean canopy and a distance away from an infected field. The study explains short-distance transport, but how do the results inform predictions of long-distance movement? But then the fungus just forms new spores that are ready for transport on a dry and windy day." When it rains, it washes the spores out of the leaf lesions, so they're not available for long-distance transport. "Those are good conditions for fungal infection and production of spores. "What really drives local infection is humidity and moisture," Hartman says. ![]() Using a statistical approach known as machine learning, the team found that spores went farther in hot and windy conditions, and stayed closer to the canopy in humid, wet conditions. Hartman's study also identifies environmental factors that favor or impede short-distance movement of rust spores. In an average summer, Hartman says, soybean rust rolls up from the south at a rate of about 30 miles a day. From there, it jumps again, moving incrementally to the north. Considering how much kudzu is spread around the south, it's a good bet another soybean field is within a couple hundred feet. Rust might spread within a field, then jump to a nearby patch of its alternative host, kudzu. These numbers explain how short-distance spread of this disease typically works. Spores moved laterally away from the field, too, but most stayed within 50 feet, with about half as many moving out to 200 feet. The majority of spores stayed within the canopy, but a proportion (one-third to one-half) floated above. The team also measured environmental data, including air temperature, relative humidity, wind speed and direction, precipitation, and leaf wetness. So, in a recent study, Hartman and his colleagues placed two kinds of spore-collecting traps in, around, and above rust-infected soybean fields in Alabama, Georgia, and Florida. Without knowing the number of rust spores that actually escape from the canopy and the conditions that favor spore dispersal, long-distance spread models could be inaccurate. It is this short-distance movement that intrigues Hartman he says predictions of long-distance spread haven't taken real-world spore movement into account. Hartman thinks this short-distance movement has been occurring as usual this season and, barring any unusual fallout from Hurricane Harvey, he expects to see rust showing up in Illinois soybean fields late in the 2017 season. After all, hurricanes have been responsible for long-distance movement of rust spores in the past scientists think Hurricane Ivan brought soybean rust to the United States from Colombia in 2004.Īlthough long-distance movement can and does happen, short-distance spore movement has been responsible for most of the annual northward spread of the disease since 2005. This could be happening right now as the storm system that created Hurricane Harvey moves north, according to Glen Hartman, a USDA Agricultural Research Service plant pathologist and professor in the Department of Crop Sciences at the University of Illinois. Studies suggest that air masses moving from the south could sweep up rust spores from infected plants (kudzu or soybean) and transport them hundreds of miles north earlier in the season, potentially endangering the Midwestern soybean crop. ![]() Research shows there is a possibility the disease could jump much longer distances and reach the Midwestern soybean crop earlier in the growing season.
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