Microtubule-Associated Proteins MAP65-1 and MAP65-2 Positively Regulate Axial Cell Growth in Etiolated Arabidopsis Hypocotyls

被引:90
作者
Lucas, Jessica R. [1 ]
Courtney, Stephanie [1 ]
Hassfurder, Mathew [1 ]
Dhingra, Sonia [1 ]
Bryant, Adam [1 ]
Shaw, Sidney L. [1 ]
机构
[1] Indiana Univ, Dept Biol, Bloomington, IN 47405 USA
基金
美国国家科学基金会;
关键词
CORTICAL ARRAY ORGANIZATION; CELLULOSE SYNTHASE; FISSION YEAST; PLASMA-MEMBRANE; EPIDERMAL-CELLS; CROSS-LINKING; GENE ENCODES; PLANT-CELLS; IN-VIVO; ELONGATION;
D O I
10.1105/tpc.111.084970
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The Arabidopsis thaliana MAP65-1 and MAP65-2 genes are members of the larger eukaryotic MAP65/ASE1/PRC gene family of microtubule-associated proteins. We created fluorescent protein fusions driven by native promoters that colocalized MAP65-1 and MAP65-2 to a subset of interphase microtubule bundles in all epidermal hypocotyl cells. MAP65-1 and MAP65-2 labeling was highly dynamic within microtubule bundles, showing episodes of linear extension and retraction coincident with microtubule growth and shortening. Dynamic colocalization of MAP65-1/2 with polymerizing microtubules provides in vivo evidence that plant cortical microtubules bundle through a microtubule-microtubule templating mechanism. Analysis of etiolated hypocotyl length in map65-1 and map65-2 mutants revealed a critical role for MAP65-2 in modulating axial cell growth. Double map65-1 map65-2 mutants showed significant growth retardation with no obvious cell swelling, twisting, or morphological defects. Surprisingly, interphase microtubules formed coaligned arrays transverse to the plant growth axis in dark-grown and GA(4)-treated light-grown map65-1 map65-2 mutant plants. We conclude that MAP65-1 and MAP65-2 play a critical role in the microtubule-dependent mechanism for specifying axial cell growth in the expanding hypocotyl, independent of any mechanical role in microtubule array organization.
引用
收藏
页码:1889 / 1903
页数:15
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