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초록
The plant cell division cycle, a highly coordinated process, is continually regulated during the growth and development of plants. In this report, we demonstrate how two cell-cycle regulators act together to control cell proliferation in transgenic Arabidopsis. To identify potential cyclin dependent kinase regulators from Arabidopsis, we employed an two-hybrid screening system to isolate genes encoding G1 specific cyclin-interacting proteins. One of these, p22(ack1), which encodes a novel 22 kDa protein, binds to cyclin D1. Overexpression of p22(ack1) in transgenic Arabidopsis resulted in growth retardation due to a strong inhibition of cell division in the leaf primordial and meristematic tissue. The leaf shape of p22(ack1) transgenic Arabidopsis was altered from oval in wild-type to dentate. Wild-type phenotype was successfully restored in F1 hybrids by cross-hybridizing the p22(ack1) Arabidopsis mutants with cyclin D1. Taken together, these results suggest that p22(ack1) and cyclin D1, which act antagonistically, are major rate-limiting factors for cell division in the leaf meristem. (C) 2004 Elsevier Inc. All rights reserved.
키워드
- 제목
- Cyclin D1 and p22<SUP>ack1</SUP> play opposite roles in plant growth and development
- 저자
- Cho, JW; Park, SC; Shin, EA; Kim, CK; Han, W; Sohn, SI; Song, PS; Wang, MH
- 발행일
- 2004-11-05
- 유형
- Article
- 권
- 324
- 호
- 1
- 페이지
- 52 ~ 57