Li Ke, Kamiya Takehiro, Fujiwara Toru
Department of Applied Biological Chemistry, Graduate School of Agricultural and Life Sciences, The University of Tokyo, Tokyo, 113-8657 Japan.
Department of Applied Biological Chemistry, Graduate School of Agricultural and Life Sciences, The University of Tokyo, Tokyo, 113-8657 Japan
Plant Cell Physiol. 2015 Jun;56(6):1205-14. doi: 10.1093/pcp/pcv047. Epub 2015 Mar 25.
Boron (B) is an essential element for plants; its deficiency causes rapid cessation of root elongation. In addition, B influences auxin accumulation in plants. To assess the importance of auxin transport in B-dependent root elongation, Arabidopsis thaliana pin1-pin4 mutants were grown under low-B conditions. Among them, only the pin2/eir1-1 mutant showed a significantly shorter root under low-B conditions than under control conditions. Moreover, the root meristem size of pin2/eir1-1 was reduced under low-B conditions. Among the PIN-FORMED (PIN) family, PIN1 and PIN2 are important for root meristem growth/maintenance under normal conditions. To investigate the differential response of pin1 and pin2 mutants under low-B conditions, the effect of low-B on PIN1-green fluorescent protein (GFP) and PIN2-GFP accumulation and localization was examined. Low-B did not affect PIN2-GFP, while it reduced the accumulation of PIN1-GFP. Moreover, no signal from DII-VENUS, an auxin sensor, was detected under the low-B condition in the stele of wild-type root meristems. Taken together, these results indicate that under low-B conditions PIN1 is down-regulated and PIN2 plays an important role in root meristem maintenance.
硼(B)是植物必需的元素;硼缺乏会导致根伸长迅速停止。此外,硼会影响植物中生长素的积累。为了评估生长素运输在硼依赖的根伸长中的重要性,在低硼条件下培养拟南芥pin1-pin4突变体。其中,只有pin2/eir1-1突变体在低硼条件下的根比在对照条件下明显短。此外,在低硼条件下pin2/eir1-1的根分生组织大小减小。在PIN形成(PIN)家族中,PIN1和PIN2在正常条件下对根分生组织的生长/维持很重要。为了研究pin1和pin2突变体在低硼条件下的差异反应,检测了低硼对PIN1-绿色荧光蛋白(GFP)和PIN2-GFP积累及定位的影响。低硼不影响PIN2-GFP,但会减少PIN1-GFP的积累。此外,在低硼条件下,野生型根分生组织的中柱中未检测到生长素传感器DII-VENUS的信号。综上所述,这些结果表明,在低硼条件下,PIN1被下调,而PIN2在根分生组织维持中起重要作用。