RIKEN Center for Sustainable Resource Science, Yokohama, 230-0045, Japan.
Division of Materials Science, Graduate School of Science and Technology, Nara Institute of Science and Technology, Ikoma, 630-0192, Japan.
New Phytol. 2022 Aug;235(4):1426-1441. doi: 10.1111/nph.18255. Epub 2022 Jun 17.
Root hair growth is tuned in response to the environment surrounding plants. While most previous studies focused on the enhancement of root hair growth during nutrient starvation, few studies investigated the root hair response in the presence of excess nutrients. We report that the post-embryonic growth of wild-type Arabidopsis plants is strongly suppressed with increasing nutrient availability, particularly in the case of root hair growth. We further used gene expression profiling to analyze how excess nutrient availability affects root hair growth, and found that RHD6 subfamily genes, which are positive regulators of root hair growth, are downregulated in this condition. However, defects in GTL1 and DF1, which are negative regulators of root hair growth, cause frail and swollen root hairs to form when excess nutrients are supplied. Additionally, we observed that the RHD6 subfamily genes are mis-expressed in gtl1-1 df1-1. Furthermore, overexpression of RSL4, an RHD6 subfamily gene, induces swollen root hairs in the face of a nutrient overload, while mutation of RSL4 in gtl1-1 df1-1 restore root hair swelling phenotype. In conclusion, our data suggest that GTL1 and DF1 prevent unnecessary root hair formation by repressing RSL4 under excess nutrient conditions.
根毛的生长是对植物周围环境的一种响应。虽然之前的大多数研究都集中在营养饥饿时增强根毛生长上,但很少有研究调查过量养分存在时根毛的反应。我们报告说,随着营养供应的增加,野生型拟南芥植物的后生生长受到强烈抑制,特别是在根毛生长方面。我们进一步利用基因表达谱分析来研究过量养分供应如何影响根毛生长,发现 RHD6 亚家族基因,作为根毛生长的正调控因子,在这种情况下下调。然而,当过量养分供应时,GTL1 和 DF1 的缺陷会导致脆弱和肿胀的根毛形成,GTL1 和 DF1 是根毛生长的负调控因子。此外,我们观察到 RHD6 亚家族基因在 gtl1-1 df1-1 中异常表达。此外,RSL4 的过表达在营养过剩的情况下会诱导肿胀的根毛,而 gtl1-1 df1-1 中 RSL4 的突变则恢复了根毛肿胀的表型。总之,我们的数据表明,GTL1 和 DF1 通过在过量养分条件下抑制 RSL4 来防止不必要的根毛形成。