Department of Applied Biological Science, Faculty of Agriculture, Kagawa University, Miki, Kagawa, Japan.
Plant Signal Behav. 2011 Aug;6(8):1207-9. doi: 10.4161/psb.6.8.15869. Epub 2011 Aug 1.
The chemical cross talk between rice and barnyardgrass which is one of the most noxious weeds in rice cultivation was investigated. Allelopathic activity of rice was increased by the presence of barnyardgrass seedlings or barnyardgrass root exudates. Rice allelochemical, momilactone B, concentration in rice seedlings and momilactone B secretion level from rice were also increased by the presence of barnyardgrass seedlings or barnyardgrass root exudates. As momilactone B possesses strong growth inhibitory activity and acts as an allelochemical, barnyardgrass-induced rice allelopathy may be due to the increased momilactone B secretion. These results suggest that rice may response to the presence of neighboring barnyardgrass by sensing the chemical components in barnyardgrass root exudates and increase allelopathic activity by elevated production and secretion levels of momilactone B. Thus, rice allelopathy may be one of the inducible defense mechanisms by chemical-mediated plant interaction between rice and barnyardgrass and the induced-allelopathy may provide a competitive advantage for rice through suppression of the growth of barnyardgrass.
研究了水稻与稗草(稻田中最有害的杂草之一)之间的化学相互作用。稗草幼苗或稗草根分泌物的存在会增加水稻的化感活性。稗草幼苗或稗草根分泌物的存在也会增加水稻幼苗中的 momilactone B 浓度和水稻中 momilactone B 的分泌水平。由于 momilactone B 具有很强的生长抑制活性并作为化感物质起作用,因此稗草诱导的水稻化感作用可能是由于 momilactone B 的分泌增加所致。这些结果表明,水稻可能通过感知稗草根分泌物中的化学成分来对邻近稗草的存在做出反应,并通过增加 momilactone B 的产生和分泌水平来提高化感活性。因此,水稻化感作用可能是水稻与稗草之间化学介导的植物相互作用的一种诱导防御机制,而诱导化感作用可能通过抑制稗草的生长为水稻提供竞争优势。