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Disruption of a Guard Cell–Expressed Protein Phosphatase 2A Regulatory Subunit, RCN1, Confers Abscisic Acid Insensitivity in Arabidopsis

机译:保卫细胞表达的蛋白磷酸酶2A调节亚基,RCN1的破坏使拟南芥中的脱落酸不敏感

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摘要

Pharmacological studies have led to a model in which the phytohormone abscisic acid (ABA) may be positively transduced via protein phosphatases of the type 1 (PP1) or type 2A (PP2A) families. However, pharmacological evidence also exists that PP1s or PP2As may function as negative regulators of ABA signaling. Furthermore, recessive disruption mutants in protein phosphatases that function in ABA signal transduction have not yet been identified. A guard cell–expressed PP2A gene, RCN1, which had been characterized previously as a molecular component affecting auxin transport and gravity response, was isolated. A T-DNA disruption mutation in RCN1 confers recessive ABA insensitivity to Arabidopsis. The rcn1 mutation impairs ABA-induced stomatal closing and ABA activation of slow anion channels. Calcium imaging analyses show a reduced sensitivity of ABA-induced cytosolic calcium increases in rcn1, whereas mechanisms downstream of cytosolic calcium increases show wild-type responses, suggesting that RCN1 functions in ABA signal transduction upstream of cytosolic Ca2+ increases. Furthermore, rcn1 shows ABA insensitivity in ABA inhibition of seed germination and ABA-induced gene expression. The PP1 and PP2A inhibitor okadaic acid phenocopies the rcn1 phenotype in wild-type plants both in ABA-induced cytosolic calcium increases and in seed germination, and the wild-type RCN1 genomic DNA complements rcn1 phenotypes. These data show that RCN1 functions as a general positive transducer of early ABA signaling.
机译:药理学研究已经建立了一个模型,其中植物激素脱落酸(ABA)可以通过1型(PP1)或2A型(PP2A)家族的蛋白磷酸酶阳性转导。但是,也有药理学证据表明PP1s或PP2A可能充当ABA信号的负调节剂。此外,尚未鉴定出在ABA信号转导中起作用的蛋白质磷酸酶中的隐性破坏突变体。分离出一个保卫细胞表达的PP2A基因RCN1,该基因以前被表征为影响生长素运输和重力反应的分子成分。 RCN1中的T-DNA破坏突变使ABA对拟南芥隐性不敏感。 rcn1突变削弱了ABA诱导的气孔关闭和慢速阴离子通道的ABA激活。钙成像分析显示rcn1中ABA诱导的胞质钙增加的敏感性降低,而胞质钙增加的下游机制显示为野生型响应,表明RCN1在胞质Ca2 +上游的ABA信号转导中起作用。此外,rcn1在ABA抑制种子发芽和ABA诱导的基因表达中显示ABA不敏感。 PP1和PP2A抑制剂冈田酸表型在ABA诱导的胞质钙增加和种子发芽的野生型植物中复制rcn1表型,而野生型RCN1基因组DNA补充了rcn1表型。这些数据表明,RCN1可以作为早期ABA信号转导的一般阳性信号。

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