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NADPH oxidase-dependent reactive oxygen species formation required for root hair growth depends on ROP GTPase

机译:根毛生长所需NADPH氧化酶依赖性活性氧的形成取决于ROP GTPase

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摘要

Reactive oxygen species (ROS) production by an NADPH oxidase (NOX) encoded by AtrbohC/RHD2 is required for root hair growth in Arabidopsis thaliana. ROP (RHO of plants) GTPases are also required for normal root hair growth and have been proposed to regulate ROS production in plants. Therefore, the role of ROP GTPase in NOX-dependent ROS formation by root hairs was investigated. Plants overexpressing wild-type ROP2 (ROP2 OX), constitutively active (CA-rop2), or dominant negative (DN-rop2) rop2 mutant proteins were used. Superoxide formation by root hairs was detected by superoxide dismutase-sensitive nitroblue tetrazolium reduction, and ROS production in the root hair differentiation zone was detected by dihydrofluorescein diacetate oxidation. Both probes showed that ROS production was increased in ROP2 OX and CA-rop2 plants, and decreased in DN-rop2 plants, relative to wild-type plants. When CA-rop2 was expressed in the NOX loss-of-function rhd2-1 mutant, ROS formation and root hair growth were impaired, suggesting that RHD2 is required for this ROP2-dependent ROS formation.
机译:拟南芥根毛的生长需要由AtrbohC / RHD2编码的NADPH氧化酶(NOX)产生活性氧(ROS)。正常的根毛生长也需要ROP(植物的RHO)GTP酶,并已提出要调节植物中ROS的产生。因此,研究了ROP GTPase在根毛中NOX依赖性ROS形成中的作用。使用过表达野生型ROP2(ROP2 OX),组成型活性(CA-rop2)或显性负性(DN-rop2)rop2突变蛋白的植物。通过对超氧化物歧化酶敏感的硝基蓝四唑还原,检测到根毛形成的超氧化物,通过二乙酸二氢荧光素氧化,检测了在根毛分化区中的ROS生成。两种探针均显示,相对于野生型植物,ROP2 OX和CA-rop2植物中的ROS产量增加,而DN-rop2植物中的ROS产量减少。当CA-rop2在NOX功能丧失的rhd2-1突变体中表达时,ROS形成和根毛生长受到损害,这表明RHD2是该ROP2依赖性ROS形成所必需的。

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