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蚕豆种子早期萌发时的液泡生物发生与水通道蛋白表达

Vacuolar biogenesis and aquaporin expression at early germination of broad bean seeds.

作者信息

Novikova Galina V, Tournaire-Roux Colette, Sinkevich Irina A, Lityagina Snejana V, Maurel Christophe, Obroucheva Natalie

机构信息

Institute of Plant Physiology of Russian Academy of Sciences, Botanicheskaya str. 35, Moscow 127276, Russia.

INRA Montpellier SupAgro, F-34060 Montpellier, Cedex 2, France.

出版信息

Plant Physiol Biochem. 2014 Sep;82:123-32. doi: 10.1016/j.plaphy.2014.05.014. Epub 2014 Jun 3.

Abstract

A key event in seed germination is water uptake-mediated growth initiation in embryonic axes. Vicia faba var. minor (broad bean) seeds were used for studying cell growth, vacuolar biogenesis, expression and function of tonoplast water channel proteins (aquaporins) in embryonic axes during seed imbibition, radicle emergence and growth. Hypocotyl and radicle basal cells showed vacuole restoration from protein storage vacuoles, whereas de novo vacuole formation from provacuoles was observed in cells newly produced by root meristem. cDNA fragments of seven novel aquaporin isoforms including five Tonoplast Intrinsic Proteins (TIP) from three sub-types were amplified by PCR. The expression was probed using q-RT-PCR and when possible with isoform-specific antibodies. Decreased expression of TIP3s was associated to the transformation of protein storage vacuoles to vacuoles, whereas enhanced expression of a TIP2 homologue was closely linked to the fast cell elongation. Water channel functioning checked by inhibitory test with mercuric chloride showed closed water channels prior to growth initiation and active water transport into elongating cells. The data point to a crucial role of tonoplast aquaporins during germination, especially during growth of embryonic axes, due to accelerated water uptake and vacuole enlargement resulting in rapid cell elongation.

摘要

种子萌发中的一个关键事件是胚轴中水分吸收介导的生长启动。本研究使用蚕豆种子来研究种子吸胀、胚根出现和生长过程中胚轴细胞生长、液泡生物发生、液泡膜水通道蛋白(水孔蛋白)的表达及功能。下胚轴和胚根基部细胞的蛋白储存液泡恢复形成液泡,而根分生组织新产生的细胞中则观察到前液泡重新形成液泡。通过PCR扩增了7种新的水孔蛋白亚型的cDNA片段,其中包括来自三个亚型的5种液泡膜内在蛋白(TIP)。使用q-RT-PCR进行表达检测,并尽可能使用亚型特异性抗体。TIP3s表达的降低与蛋白储存液泡向液泡的转变有关,而一种TIP2同源物的表达增强与细胞快速伸长密切相关。用氯化汞抑制试验检测水通道功能,结果显示在生长启动前水通道关闭,而在伸长细胞中有活跃的水分运输。这些数据表明,液泡膜水孔蛋白在种子萌发过程中,尤其是在胚轴生长过程中起着关键作用,这是由于水分吸收加速和液泡增大导致细胞快速伸长。

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