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Auxin Induced Expression of Expansin is Alered in a New Aux1 Allele that Shows Severe Defect in Gravitropic Response
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  • Auxin Induced Expression of Expansin is Alered in a New Aux1 Allele that Shows Severe Defect in Gravitropic Response
  • Auxin Induced Expression of Expansin is Alered in a New Aux1 Allele that Shows Severe Defect in Gravitropic Response
저자명
Jeong. Hae-Jun,Kwon. Ye-Rim,Oh. Jee-Eun,Kim. Ki-Deok,Lee. Sung-Joon,Hong. Suk-Whan,Lee. Ho-Joung
간행물명
Agricultural chemistry & biotechnology
권/호정보
2006년|49권 4호|pp.148-153 (6 pages)
발행정보
한국응용생명화학회
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정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

While the underlying molecular mechanism remains to be elucidated, recent studies suggest that polar auxin transport is a key controlling factor in triggering differential growth responses to gravity. Identification of regulatory components in auxin-mediated differential cell expansion would improve our understanding of the gravitropic response. In this study, we identify a mutant designated aux1-like(later changed to aux1), an allele of the aux1 mutant that exhibits a severely disrupted root gravitropic response, but no defects in developmental processes. In Arabidopsis, AUX1 encodes an auxin influx carrier. Since in-depth characterization of the gravitropic response caused by mutations in this gene has been performed previously, we focused on identifying the downstream genes that were differentially expressed compared to wild-type plants. Consistent with the mutant phenotype, the transcription of the auxin-responsive genes IAA17 and GH3 were altered in aux1 plants treated with IAA, 2, 4-D and NAA. In addition, we identified two expansin genes EXP10 and EXPL3 that exhibited different expression in wild-type and mutant plants.