Drobnitch Sarah Tepler, Comas Louise H, Flynn Nora, Ibarra Caballero Jorge, Barton Ryan W, Wenz Joshua, Person Taylor, Bushey Julie, Jahn Courtney E, Gleason Sean M
Department of Soil and Crop Sciences, Colorado State University, Fort Collins, CO, United States.
Water Management Research Unit, Agricultural Research Service, USDA, Ft. Collins, CO, United States.
Front Plant Sci. 2021 Feb 3;12:571072. doi: 10.3389/fpls.2021.571072. eCollection 2021.
Root pressure, also manifested as profusive sap flowing from cut stems, is a phenomenon in some species that has perplexed biologists for much of the last century. It is associated with increased crop production under drought, but its function and regulation remain largely unknown. In this study, we investigated the initiation, mechanisms, and possible adaptive function of root pressure in six genotypes of during a drought experiment in the greenhouse. We observed that root pressure was induced in plants exposed to drought followed by re-watering but possibly inhibited by 100% re-watering in some genotypes. We found that root pressure in drought stressed and re-watered plants was associated with greater ratio of fine: coarse root length and shoot biomass production, indicating a possible role of root allocation in creating root pressure and adaptive benefit of root pressure for shoot biomass production. Using RNA-Seq, we identified gene transcripts that were up- and down-regulated in plants with root pressure expression, focusing on genes for aquaporins, membrane transporters, and ATPases that could regulate inter- and intra-cellular transport of water and ions to generate positive xylem pressure in root tissue.
根压,也表现为从被切断的茎中大量流出汁液,是某些物种中一种在上个世纪的大部分时间里一直困扰着生物学家的现象。它与干旱条件下作物产量的增加有关,但其功能和调节机制在很大程度上仍然未知。在本研究中,我们在温室干旱实验期间,对六种基因型的[具体植物名称未给出]的根压启动、机制及可能的适应功能进行了研究。我们观察到,暴露于干旱后再浇水的植物会诱导产生根压,但在某些基因型中,100%再浇水可能会抑制根压。我们发现,干旱胁迫后再浇水的植物的根压与细根:粗根长度的更大比例以及地上部生物量生产相关,这表明根系分配在产生根压中可能发挥作用,并且根压对地上部生物量生产具有适应性益处。使用RNA测序,我们鉴定了在具有根压表达的植物中上调和下调的基因转录本,重点关注水通道蛋白、膜转运蛋白和ATP酶等基因,这些基因可调节水和离子的细胞间和细胞内运输,从而在根组织中产生正向木质部压力。