Saha Haymanti, Kaloterakis Nikolaos, Harvey Jeffrey A, Van der Putten Wim H, Biere Arjen
Department of Terrestrial Ecology, Netherlands Institute of Ecology (NIOO-KNAW), Droevendaalsesteeg 10, 6708 PB Wageningen, The Netherlands.
Soil Biology Group, Wageningen University and Research, Droevendaalsesteeg 2, 6708 PB Wageningen, The Netherlands.
Plants (Basel). 2022 Mar 24;11(7):861. doi: 10.3390/plants11070861.
Beneficial soil microbes can enhance plant growth and defense, but the extent to which this occurs depends on the availability of resources, such as water and nutrients. However, relatively little is known about the role of light quality, which is altered during shading, resulting a low red: far-red ratio (R:FR) of light. We examined how low R:FR light influences arbuscular mycorrhizal fungus (AMF)-mediated changes in plant growth and defense using (tomato) and the insect herbivore . We also examined effects on third trophic level interactions with the parasitoid . Under low R:FR light, non-mycorrhizal plants activated the shade avoidance syndrome (SAS), resulting in enhanced biomass production. However, mycorrhizal inoculation decreased stem elongation in shaded plants, thus counteracting the plant's SAS response to shading. Unexpectedly, activation of SAS under low R:FR light did not increase plant susceptibility to the herbivore in either non-mycorrhizal or mycorrhizal plants. AMF did not significantly affect survival or growth of caterpillars and parasitoids but suppressed herbivore-induced expression of jasmonic acid-signaled defenses genes under low R:FR light. These results highlight the context-dependency of AMF effects on plant growth and defense and the potentially adverse effects of AMF under shading.
有益的土壤微生物可以促进植物生长并增强其防御能力,但这种情况发生的程度取决于水和养分等资源的可利用性。然而,对于在遮荫过程中发生变化的光质的作用,人们了解得相对较少,遮荫会导致光的红:远红比例(R:FR)降低。我们使用番茄和食草昆虫研究了低R:FR光如何影响丛枝菌根真菌(AMF)介导的植物生长和防御变化。我们还研究了对与寄生蜂的第三营养级相互作用的影响。在低R:FR光下,非菌根植物激活了避荫综合征(SAS),导致生物量产量增加。然而,菌根接种降低了遮荫植物的茎伸长,从而抵消了植物对遮荫的SAS反应。出乎意料的是,在低R:FR光下SAS的激活并没有增加非菌根或菌根植物对食草动物的易感性。AMF对毛虫和寄生蜂的存活或生长没有显著影响,但在低R:FR光下抑制了食草动物诱导的茉莉酸信号防御基因的表达。这些结果突出了AMF对植物生长和防御影响的背景依赖性以及遮荫条件下AMF的潜在不利影响。