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Regulation of Arabidopsis Early Anther Development by the Mitogen-Activated Protein Kinases, MPK3 and MPK6, and the ERECTA and Related Receptor-Like Kinases

机译:丝裂素活化的蛋白激酶,MPK3和MPK6,ERECTA和相关受体样激酶对拟南芥早期花药发育的调控

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摘要

Mitogen-activated protein kinase (MAPK) and leucine-rich repeat receptor-like kinase (LRR-RLK) signaling pathways have been shown to regulate diverse aspects of plant growth and development. In Arabidopsis, proper anther development relies on intercellular communication to coordinate cell proliferation and differentiation. Two closely related genes encoding MAPKs, MPK3 and MPK6, function redundantly in regulating stomatal patterning. Although the mpk6 mutant has reduced fertility, the function of MPK3 and MPK6 in anther development has not been characterized. Similarly, the ERECTA (ER), ERECTA-LIKE1 (ERL1) and ERL2 genes encoding LRR-RLKs function together to direct stomatal cell fate specification and the er-105 erl1-2 erl2-1 triple mutant is sterile. Because the mpk3 mpk6 double null mutant is embryo lethal, anther development was characterized in the viable mpk3/+ mpk6/– and er-105 erl1-2 erl2-1 mutants. We found that both mutant anthers usually fail to form one or more of the four anther lobes, with the er-105 erl1-2 erl2-1 triple mutant exhibiting more severe phenotypes than those of the mpk3/+ mpk6/– mutant. The somatic cell layers of the differentiated mutant lobes appeared larger and more disorganized than that of wild-type. In addition, the er-105 erl1-2 erl2-1 triple mutant has a reduced number of stamens, the majority of which possess completely undifferentiated or under-differentiated anthers. Furthermore, sometimes, the mpk3/+ mpk6/– mutant anthers do not dehisce, and the er-105 erl1-2 erl2-1 anthers were not observed to dehisce. Therefore, our results indicate that both ER/ERL1/ERL2 and MPK3/MPK6 play important roles in normal anther lobe formation and anther cell differentiation. The close functional relationship between these genes in other developmental processes and the similarities in anther developmental phenotypes of the two types of mutants reported here further suggest the possibility that these genes might also function in the same pathway to regulate anther cell division and differentiation.
机译:丝裂原激活的蛋白激酶(MAPK)和富含亮氨酸的重复受体样激酶(LRR-RLK)信号通路已显示出调节植物生长发育的各个方面。在拟南芥中,适当的花药发育依赖于细胞间的通讯来协调细胞的增殖和分化。编码MAPKs的两个密切相关的基因MPK3和MPK6在调节气孔模式方面起着多余的作用。尽管mpk6突变体的生育力降低,但尚未鉴定MPK3和MPK6在花药发育中的功能。同样,编码LRR-RLK的ERECTA(ER),ERECTA-LIKE1(ERL1)和ERL2基因共同起作用,指导气孔细胞命运的确定,而er-105 erl1-2 erl2-1三重突变体是不育的。由于mpk3 mpk6双无效突变体是致死性胚胎,因此在有活力的mpk3 / + mpk6 /-和er-105 erl1-2 erl2-1突变体中鉴定了花药发育。我们发现两个突变体花药通常无法形成四个花药裂片中的一个或多个,其中er-105 erl1-2 erl2-1三重突变体表现出比mpk3 / + mpk6 / –突变体更严重的表型。分化的突变体叶的体细胞层比野生型的体细胞层看起来更大且更混乱。此外,er-105 erl1-2 erl2-1三重突变体的雄蕊数量减少,其中大部分具有完全未分化或分化不足的花药。此外,有时,mpk3 / + mpk6 / –突变体花药不开裂,并且未观察到er-105 erl1-2 erl2-1花药开裂。因此,我们的结果表明,ER / ERL1 / ERL2和MPK3 / MPK6在正常的花药叶形成和花药细胞分化中都起着重要作用。这些基因在其他发育过程中的紧密功能关系与此处报道的两种类型突变体的花药发育表型的相似性进一步表明,这些基因也可能以相同的途径发挥作用来调节花药细胞的分裂和分化。

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  • 来源
    《Molecular Plant》 |2008年第4期|p.645-658|共14页
  • 作者单位

    aDepartment of Biology and the Huck Institutes of the Life Sciences, Pennsylvania State University, University Park, PA 16802, USA bThe Intercollege Graduate Program in Plant Biology, Pennsylvania State University, University Park, PA 16802 USA cPresent address: 3015 Quinby Dr., Columbus, OH 43232, USA dPresent address: 318 Coker Hall (CB# 3280), Department of Biology, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599-3280, USA eDepartment of Biology, University of Washington, Seattle, WA 98195, USA fPresent address: Monsanto Company, 700 Chesterfield Pkwy North, Mailzone GG4G, Chesterfield, MO 63017, USA gDepartment of Biochemistry and Bond Life Sciences Center, University of Missouri, Columbia, MO 65211, USA;

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