College of Resources and Environmental Sciences, China Agricultural University, Beijing, China.
Institute of Plant Protection, Jiangsu Academy of Agricultural Sciences, Nanjing, China.
Pest Manag Sci. 2017 Nov;73(11):2310-2317. doi: 10.1002/ps.4617. Epub 2017 Jul 24.
Despite increasing knowledge of allelopathic rice interference with barnyardgrass, relatively little is known about its action on herbicide-resistant barnyardgrass. The incidence of herbicide-resistant barnyardgrass is escalating in paddy fields. Knowledge of the interference of allelopathic rice with herbicide-resistant barnyardgrass and the potential mechanisms involved is warranted.
Penoxsulam-resistant and -susceptible barnyardgrass biotypes were identified and segregated from a putative penoxsulam-resistant population occurring in paddy fields in China. Allelopathic rice inhibited the growth of barnyardgrass roots more than shoots, regardless of biotype. In particular, there was a stronger inhibition for resistant barnyardgrass than for susceptible barnyardgrass. Allelopathic rice significantly reduced total root length, total root area, maximum root amplitude and maximum root depth in barnyardgrass. Furthermore, the rice allelochemicals tricin and momilactone B inhibited the growth of both resistant and susceptible barnyardgrass. Compared with root contact, root segregation significantly increased inhibition of barnyardgrass with an increase in rice allelochemicals. Root exudates from barnyardgrass induced the production of rice allelochemicals, but the effect of susceptible barnyardgrass was much stronger than that of resistant barnyardgrass.
Allelopathic rice can interfere with the growth of penoxsulam-resistant barnyardgrass through allelochemical-mediated root interactions. This type of allelopathic interference may provide a non-herbicidal alternative for herbicide-resistant weed management in paddy systems. © 2017 Society of Chemical Industry.
尽管人们对化感水稻干扰稗草的了解越来越多,但对其作用于抗除草剂稗草的了解相对较少。稻田中抗除草剂稗草的发生率正在上升。有必要了解化感水稻对稗草的干扰及其潜在的作用机制。
从中国稻田中出现的疑似抗吡嘧磺隆稗草群体中分离出了抗吡嘧磺隆和敏感稗草生物型。化感水稻对稗草根的抑制作用大于茎叶,与生物型无关。特别是,对抗性稗草的抑制作用强于敏感稗草。化感水稻显著降低了稗草根的总根长、总根面积、最大根振幅和最大根深度。此外,水稻化感物质荞麦碱和乳香内酯 B 抑制了抗性和敏感稗草的生长。与根接触相比,根分离显著增加了水稻化感物质对稗草的抑制作用。稗草根分泌物诱导水稻化感物质的产生,但敏感稗草的作用比抗性稗草强得多。
化感水稻可以通过化感物质介导的根相互作用来干扰吡嘧磺隆抗性稗草的生长。这种化感干扰可能为稻田杂草的抗除草剂管理提供一种非除草剂替代方法。© 2017 化学工业协会。