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首页> 外文期刊>Plant and cell physiology >High CO2 Triggers Preferential Root Growth of Arabidopsis thaliana Via Two Distinct Systems Under Low pH and Low N Stresses
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High CO2 Triggers Preferential Root Growth of Arabidopsis thaliana Via Two Distinct Systems Under Low pH and Low N Stresses

机译:高二氧化碳通过低pH值和低氮胁迫下的两个不同系统触发拟南芥的优先根生长

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Biomass allocation between shoots and roots is an important strategy used by plants to optimize growth in various environments. Root to shoot mass ratios typically increase in response to high CO2, a trend particularly evident under abiotic stress. We investigated this preferential root growth (PRG) in Arabidopsis thaliana plants cultivated under low pH/high CO2 or low nitrogen (N)/high CO2 conditions. Previous studies have suggested that changes in plant hormone, carbon (C) and N status may be related to PRG. We therefore examined the mechanisms underlying PRG by genetically modifying cytokinin (CK) levels, C and N status, and sugar signaling, performing sugar application experiments and determining primary metabolites, plant hormones and expression of related genes. Both low pH/high CO2 and low N/high CO2 stresses induced increases in lateral root (LR) number and led to high C/N ratios; however, under low pH/high CO2 conditions, large quantities of C were accumulated, whereas under low N/high CO2 conditions, N was severely depleted. Analyses of a CK-deficient mutant and a starchless mutant, in conjunction with sugar application experiments, revealed that these stresses induce PRG via different mechanisms. Metabolite and hormone profile analysis indicated that under low pH/high CO2 conditions, excess C accumulation may enhance LR number through the dual actions of increased auxin and decreased CKs.
机译:茎和根之间的生物量分配是植物用来优化各种环境中生长的重要策略。根与茎的质量比通常随高CO2的增加而增加,这种趋势在非生物胁迫下尤其明显。我们调查了在低pH /高CO2或低氮(N)/高CO2条件下种植的拟南芥植物的这种优先根生长(PRG)。先前的研究表明,植物激素,碳(C)和氮素状态的变化可能与PRG有关。因此,我们通过遗传修饰细胞分裂素(CK)水平,C和N状态以及糖信号传递,进行糖应用实验以及确定主要代谢产物,植物激素和相关基因的表达来检查PRG的潜在机制。低pH /高CO2和低N /高CO2胁迫均引起侧根(LR)数增加,并导致高C / N比。然而,在低pH /高CO2条件下,大量C积累,而在低N /高CO2条件下,N严重耗尽。 CK缺乏突变体和无淀粉突变体的分析,结合糖的应用实验,表明这些压力通过不同的机制诱导PRG。代谢物和激素谱分析表明,在低pH /高CO2条件下,过量的C积累可能通过生长素增加和CKs减少的双重作用而增加LR数。

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