Plant growth depends on growth regulators, nutrient availability, and amino acid levels, all of which influence cell wall formation and cell expansion. Cell wall integrity and structures are surveyed and modified by a complex array of cell wall integrity sensors, including leucine-rich repeat (LRR)-extensins (LRXs) that bind RALF (rapid alkalinization factor) peptides with high affinity and help to compact cell walls. Expressing the Arabidopsis root hair-specific LRX1 without the extensin domain, which anchors the protein to the cell wall (LRX1ÎE14), has a negative effect on root hair development. The mechanism of this negative effect was investigated by a suppressor screen, which led to the identification of a sune (suppressor of dominant-negative LRX1ÎE14) mutant collection. The sune82 mutant was identified as an allele of HISN2, which encodes an enzyme essential for histidine biosynthesis. This mutation leads to reduced accumulation of histidine and an increase in several amino acids, which appears to have an effect on the TOR (target of rapamycin) network, a major controller of eukaryotic cell growth. It also represents an excellent tool to study the effects of reduced histidine levels on plant development, as it is a rare example of a viable partial loss-of-function allele in an essential biosynthetic pathway.
Histidine limitation alters plant development and influences the TOR network.
组氨酸限制会改变植物发育并影响TOR网络
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作者:Guérin Amandine, Levasseur Caroline, Herger Aline, Renggli Dominik, Sotiropoulos Alexandros Georgios, Kadler Gabor, Hou Xiaoyu, Schaufelberger Myriam, Meyer Christian, Wicker Thomas, Bigler Laurent, Ringli Christoph
| 期刊: | Journal of Experimental Botany | 影响因子: | 5.700 |
| 时间: | 2025 | 起止号: | 2025 Feb 25; 76(4):1085-1098 |
| doi: | 10.1093/jxb/erae479 | 研究方向: | 发育与干细胞 |
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