Onuh Amarachukwu Faith, Miwa Kyoko
Graduate School of Environmental Science, Hokkaido University, Sapporo, Japan.
Front Plant Sci. 2023 Aug 17;14:1255486. doi: 10.3389/fpls.2023.1255486. eCollection 2023.
The essential plant nutrient boron is required for the crosslinking of the pectin polysaccharide, rhamnogalacturonan II (RG-II). The synthesis of the pectic polysaccharides takes place in the Golgi apparatus, acidified by proton pumps. AVP2;1/VHP2;1 is a type II proton pyrophosphatase localized in the Golgi apparatus, which possesses proton pumping activity coupled with pyrophosphate hydrolysis. Its activity and expression patterns have been previously revealed but its role in plants remains unknown. The aim of the present work therefore was to explore the physiological role of AVP2;1 in . In the screening of mutants under low boron, a mutant carrying a missense mutation in was isolated. This mutant showed increased primary root growth under low boron conditions but no significant difference under normal boron condition compared to wild type plants. T-DNA insertion caused similar growth, suggesting that reduced function of AVP2;1 was responsible. Root cell observation revealed an increase in meristematic zone length, cell number in meristem and length of matured cell in mutants compared to wild type under low boron. Calcium concentration was reduced in mutant root cell wall under low boron. RG-II specific sugars also tended to be decreased in mutant root cell wall under low and normal boron conditions. These results suggest that changes in cell wall component by mutations in may possibly explain the increased root length of mutants under low boron. This supports the idea that AVP2;1 plays a role in pH homoeostasis in Golgi apparatus for pectin synthesis.
植物必需营养元素硼是果胶多糖鼠李半乳糖醛酸聚糖II(RG-II)交联所必需的。果胶多糖的合成发生在由质子泵酸化的高尔基体中。AVP2;1/VHP2;1是一种定位于高尔基体的II型质子焦磷酸酶,它具有与焦磷酸水解偶联的质子泵活性。其活性和表达模式此前已被揭示,但其在植物中的作用仍不清楚。因此,本研究的目的是探索AVP2;1在……中的生理作用。在低硼条件下筛选突变体时,分离出一个在……中携带错义突变的突变体。与野生型植株相比,该突变体在低硼条件下主根生长增加,但在正常硼条件下无显著差异。T-DNA插入导致了类似的生长情况,表明AVP2;1功能降低是原因所在。根细胞观察显示,与野生型相比,在低硼条件下,突变体的分生区长度、分生组织中的细胞数量和成熟细胞长度增加。在低硼条件下,突变体根细胞壁中的钙浓度降低。在低硼和正常硼条件下,突变体根细胞壁中RG-II特异性糖也有减少的趋势。这些结果表明,……突变导致细胞壁成分的变化可能解释了突变体在低硼条件下根长增加的现象。这支持了AVP2;1在高尔基体中参与果胶合成的pH稳态调节的观点。