Pérez-Zavala Francisco Gabriel, Atriztán-Hernández Karina, Martínez-Irastorza Paulina, Oropeza-Aburto Araceli, López-Arredondo Damar, Herrera-Estrella Luis
Unidad de Genómica Avanzada/Langebio, Centro de Investigación y de Estudios Avanzados, Irapuato, Mexico.
Intitute of Genomics for Crop Abiotic Stress Tolerance, Department of Plant and Soil Science, Texas Tech University, Lubbock, TX, United States.
Front Plant Sci. 2022 Nov 1;13:994523. doi: 10.3389/fpls.2022.994523. eCollection 2022.
Titanium is a ubiquitous element with a wide variety of beneficial effects in plants, including enhanced nutrient uptake and resistance to pathogens and abiotic stresses. While there is numerous evidence supporting the beneficial effects that Ti fertilization give to plants, there is little information on which genetic signaling pathways the Ti application activate in plant tissues. In this study, we utilize RNA-seq and ionomics technologies to unravel the molecular signals that Arabidopsis plants unleash when treated with Ti. RNA-seq analysis showed that Ti activates abscisic acid and salicylic acid signaling pathways and the expression of NUCLEOTIDE BINDING SITE-LEUCINE RICH REPEAT receptors likely by acting as a chemical priming molecule. This activation results in enhanced resistance to drought, high salinity, and infection with in Arabidopsis. Ti also grants an enhanced nutritional state, even at suboptimal phosphate concentrations by upregulating the expression of multiple nutrient and membrane transporters and by modifying or increasing the production root exudates. Our results suggest that Ti might act similarly to the beneficial element Silicon in other plant species.
钛是一种普遍存在的元素,对植物具有多种有益作用,包括增强养分吸收以及对病原体和非生物胁迫的抗性。虽然有大量证据支持施钛对植物的有益作用,但关于施钛在植物组织中激活哪些遗传信号通路的信息却很少。在本研究中,我们利用RNA测序和离子组学技术来揭示拟南芥植株在接受钛处理时所释放的分子信号。RNA测序分析表明,钛可能通过作为一种化学引发分子,激活脱落酸和水杨酸信号通路以及核苷酸结合位点-富含亮氨酸重复序列受体的表达。这种激活导致拟南芥对干旱、高盐度和感染的抗性增强。即使在磷酸盐浓度次优的情况下,钛还通过上调多种养分和膜转运蛋白的表达以及通过改变或增加根系分泌物的产生,赋予植物增强的营养状态。我们的结果表明,钛在其他植物物种中的作用可能与有益元素硅类似。