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DRL1 Regulates Adaxial Leaf Patterning and Shoot Apical Meristem Activity in Arabidopsis
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  • DRL1 Regulates Adaxial Leaf Patterning and Shoot Apical Meristem Activity in Arabidopsis
  • DRL1 Regulates Adaxial Leaf Patterning and Shoot Apical Meristem Activity in Arabidopsis
저자명
Cho. Kiu-Hyung,Choi. Hoon-Sung,Seki. Motoaki,Jun. Sang-Eun,Yi. Young-Byung,Shinozaki. Kazuo,Tsukaya. Hirokazu,Kim. Gyung-Tae
간행물명
Journal of plant biology
권/호정보
2007년|50권 4호|pp.467-474 (8 pages)
발행정보
한국식물학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

Leaf shape is controlled early on by initiation at the shoot apical meristem (SAM), as well as by changes in the rates and planes of cell division and the polarity-dependent differentiation of leaf cells. To elucidate the regulation of this differentiation by signal(s) from the SAM, we screened for mutations in genes that might be involved in these early processes. A novel recessive mutant, 356-2 [identified as a new allele of the $underline{d}eformed;underline{r}oot;and;underline{l}eaf1$ (drl1) mutant], was isolated from a collection of Ds transposon insertion lines. The 356-2/drl1-101 mutant produces narrow, filamentous leaves and defective meristems. Its palisade cells have a spongy cell-like structure and are fewer in number, indicating that the leaves are abaxialized. Interestingly, some of those filament-like leaves have no vascular tissues inside their blades. DRL1 encodes a protein similar to the yeast elongator-associated protein (EAP) KTl12. The amino acid sequence of DRL1 is universally conserved in prokaryotes and eukaryotes. These facts suggest that DRL1 might positively regulate leaf polarity and SAM activity by controlling cell proliferation and differentiation.