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脱落酸通过生长素和乙烯的活性调控拟南芥的根伸长。

Abscisic acid regulates root elongation through the activities of auxin and ethylene in Arabidopsis thaliana.

作者信息

Thole Julie M, Beisner Erin R, Liu James, Venkova Savina V, Strader Lucia C

机构信息

Department of Biology, Washington University in St. Louis, St. Louis, Missouri 63130.

Department of Biochemistry and Cell Biology, Rice University, Houston, Texas 77005.

出版信息

G3 (Bethesda). 2014 May 15;4(7):1259-74. doi: 10.1534/g3.114.011080.

Abstract

Abscisic acid (ABA) regulates many aspects of plant growth and development, including inhibition of root elongation and seed germination. We performed an ABA resistance screen to identify factors required for ABA response in root elongation inhibition. We identified two classes of Arabidopsis thaliana AR mutants that displayed ABA-resistant root elongation: those that displayed resistance to ABA in both root elongation and seed germination and those that displayed resistance to ABA in root elongation but not in seed germination. We used PCR-based genotyping to identify a mutation in ABA INSENSITIVE2 (ABI2), positional information to identify mutations in AUXIN RESISTANT1 (AUX1) and ETHYLENE INSENSITIVE2 (EIN2), and whole genome sequencing to identify mutations in AUX1, AUXIN RESISTANT4 (AXR4), and ETHYLENE INSENSITIVE ROOT1/PIN-FORMED2 (EIR1/PIN2). Identification of auxin and ethylene response mutants among our isolates suggested that auxin and ethylene responsiveness were required for ABA inhibition of root elongation. To further our understanding of auxin/ethylene/ABA crosstalk, we examined ABA responsiveness of double mutants of ethylene overproducer1 (eto1) or ein2 combined with auxin-resistant mutants and found that auxin and ethylene likely operate in a linear pathway to affect ABA-responsive inhibition of root elongation, whereas these two hormones likely act independently to affect ABA-responsive inhibition of seed germination.

摘要

脱落酸(ABA)调控植物生长和发育的多个方面,包括抑制根伸长和种子萌发。我们进行了一项ABA抗性筛选,以鉴定根伸长抑制中ABA响应所需的因子。我们鉴定出两类拟南芥AR突变体,它们表现出对ABA的根伸长抗性:一类在根伸长和种子萌发中均表现出对ABA的抗性,另一类在根伸长中表现出对ABA的抗性,但在种子萌发中不表现出抗性。我们使用基于PCR的基因分型来鉴定ABA不敏感2(ABI2)中的突变,利用位置信息来鉴定生长素抗性1(AUX1)和乙烯不敏感2(EIN2)中的突变,并通过全基因组测序来鉴定AUX1、生长素抗性4(AXR4)和乙烯不敏感根1/生长素输出载体2(EIR1/PIN2)中的突变。在我们分离出的突变体中鉴定出生长素和乙烯响应突变体,这表明生长素和乙烯响应是ABA抑制根伸长所必需的。为了进一步了解生长素/乙烯/ABA信号转导途径之间的相互作用,我们检测了乙烯过量产生1(eto1)或ein2与生长素抗性突变体组合的双突变体的ABA响应,发现生长素和乙烯可能以线性途径发挥作用,影响ABA对根伸长的响应抑制,而这两种激素可能独立发挥作用,影响ABA对种子萌发的响应抑制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f131/4455775/69f93473f1d2/1259f1.jpg

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