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光对绿豆(Vigna radiata L.)幼苗中生长素诱导的1-氨基环丙烷-1-羧酸合酶基因家族的两个成员的表达有不同的调节作用。

Light differentially regulates the expression of two members of the auxin-induced 1-aminocyclopropane-1-carboxylate synthase gene family in mung bean (Vigna radiata L.) seedlings.

作者信息

Joo Sunjoo, Park Ky Young, Kim Woo Taek

机构信息

Department of Biology, College of Science, Yonsei University, 120-749 Seoul, Korea.

出版信息

Planta. 2004 Apr;218(6):976-88. doi: 10.1007/s00425-003-1183-4. Epub 2004 Jan 16.

DOI:10.1007/s00425-003-1183-4
PMID:14727113
Abstract

Auxin induces the expression of the two ethylene-biosynthetic genes VR-ACS6 and VR-ACS7 in etiolated mung bean hypocotyls. However, while it also enhances VR-ACS6 expression in light-grown tissues, it does not up-regulate VR-ACS7 expression in these tissues. Here we show that transfer of 3-day-old etiolated seedlings into light quickly reduced the auxin-induced expression of both genes. However, while auxin-induced VR-ACS6 expression recovered after 24 h of light, VR-ACS7 transcription continued to reduce and was almost completely absent at 36 h. Thus, light differentially modulates the expression of the auxin-inducible VR-ACS genes. In hormone-treated etiolated seedlings, VR-ACS7 was primarily induced in the rapidly elongating zones of hypocotyl and epicotyl tissues, while auxin-induced VR-ACS6 mRNA was evenly distributed throughout the whole seedling. VR-ACS7 promoter-driven beta-glucuronidase (GUS) activity in auxin-treated etiolated transgenic Arabidopsis seedlings was observed in the highly elongating zones of the hypocotyl. During de-etiolation, the GUS activity gradually declined to become confined to the uppermost region of hypocotyls. In situ mRNA localization studies showed that in etiolated mung bean hypocotyls, the auxin-dependent VR-ACS7 transcript was predominantly present in the epidermis, which is the driving site for auxin-mediated elongation. Thus, it appears that the modulation by light of auxin-induced VR-ACS7 expression may correlate closely with the elongation growth response in early seedling development.

摘要

生长素诱导黄化绿豆下胚轴中两个乙烯生物合成基因VR-ACS6和VR-ACS7的表达。然而,虽然它也增强了在光照下生长的组织中VR-ACS6的表达,但它并没有上调这些组织中VR-ACS7的表达。在这里,我们表明将3天大的黄化幼苗转移到光照下会迅速降低生长素诱导的这两个基因的表达。然而,虽然生长素诱导的VR-ACS6表达在光照24小时后恢复,但VR-ACS7转录继续降低,在36小时时几乎完全消失。因此,光照对生长素诱导的VR-ACS基因的表达有不同的调节作用。在激素处理的黄化幼苗中,VR-ACS7主要在胚轴和上胚轴组织的快速伸长区诱导表达,而生长素诱导的VR-ACS6 mRNA在整个幼苗中均匀分布。在生长素处理的黄化转基因拟南芥幼苗中,观察到VR-ACS7启动子驱动的β-葡萄糖醛酸酶(GUS)活性出现在胚轴的高度伸长区。在去黄化过程中,GUS活性逐渐下降,局限于胚轴的最上部区域。原位mRNA定位研究表明,在黄化绿豆下胚轴中,生长素依赖性VR-ACS7转录本主要存在于表皮中,表皮是生长素介导伸长的驱动部位。因此,似乎光照对生长素诱导的VR-ACS7表达的调节可能与幼苗早期发育中的伸长生长反应密切相关。

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