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王伟青  程红焱 《植物学报》2006,23(6):625-633
种子的休眠和萌发是一个复杂的过程, 至今尚未能清楚阐明其调控机制。目前已从拟南芥突变体中鉴定了一些与种子萌发和休眠相关的基因, 有助于阐明种子休眠和萌发的分子机制。本文综述了拟南芥突变体种子休眠与萌发方面的研究进展。赤霉素是促进种子萌发的主要因素之一, RGL、SPY、GCR、SLY和GAR等基因的表达参与赤霉素对种子萌发的调控。脱落酸与种子休眠有关, ABI1、ABI2、ABI3、ABI4、ABI5、FUS3、LEC、MARD和CIPK等基因参与了脱落酸的调控过程。对3类乙烯反应的突变体 (ein、etr和ctr) 以及油菜素内酯突变体 (det和bri) 的研究表明乙烯和油菜素内酯是通过拮抗脱落酸而促进种子萌发的。光对种子萌发的调节, 是通过具有Ser/Thr蛋白激酶活性的光敏色素PhyA、PhyB、 PhyC、PhyD和PhyE, 以磷酸化/去磷酸化方式调节其它与萌发相关基因的表达。含氮化合物对种子萌发的促进, 可能是以一种依赖一氧化氮的方式解除种子休眠。  相似文献   

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Arabinans are found in the pectic network of many cell walls, where, along with galactan, they are present as side chains of Rhamnogalacturonan I. Whilst arabinans have been reported to be abundant polymers in the cell walls of seeds from a range of plant species, their proposed role as a storage reserve has not been thoroughly investigated. In the cell walls of Arabidopsis seeds, arabinose accounts for approximately 40% of the monosaccharide composition of non- cellulosic polysaccharides of embryos. Arabinose levels decline to -15% during seedling establishment, indicating that cell wall arabinans may be mobilized during germination. Immunolocalization of arabinan in embryos, seeds, and seedlings reveals that arabinans accumulate in developing and mature embryos, but disappear during germination and seedling establishment. Experiments using 14C-arabinose show that it is readily incorporated and metabolized in growing seedlings, indicating an active catabolic pathway for this sugar. We found that depleting arabinans in seeds using a fungal arabinanase causes delayed seedling growth, lending support to the hypothesis that these polymers may help fuel early seedling growth.  相似文献   

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拟南芥突变体种子休眠与萌发的研究进展   总被引:8,自引:2,他引:8  
种子的休眠和萌发是一个复杂的过程,至今尚未能清楚阐明其调控机制。目前已从拟南芥突变体中鉴定了一些与种子萌发和休眠相关的基因,有助于阐明种子休眠和萌发的分子机制。本文综述了拟南芥突变体种子休眠与萌发方面的研究进展。赤霉素是促进种子萌发的主要因素之一,RGL、SPY、GCR、SLY和GAR等基因的表达参与赤霉素对种子萌发的调控。脱落酸与种子休眠有关,ABI1、ABI2、ABI3、ABI4、ABI5、FUS3、LEC、MARD和CIPK等基因参与了脱落酸的调控过程。对3类乙烯反应的突变体(ein、etr和ctr)以及油菜素内酯突变体(det和bri)的研究表明乙烯和油菜素内酯是通过拮抗脱落酸而促进种子萌发的。光对种子萌发的调节,是通过具有Ser/Thr蛋白激酶活性的光敏色素PhyA、PhyB、PhyC、PhyD和PhyE,以磷酸化/去磷酸化方式调节其它与萌发相关基因的表达。含氮化合物对种子萌发的促进,可能是以一种依赖一氧化氮的方式解除种子休眠。  相似文献   

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Yan  Zongyun  Jing  Meng  Zhang  Bangyue  Shi  Huiying  Jin  Xu  Yan  Xiaoyuan  Gao  Tiao  Han  Yuzhen 《Journal of Plant Growth Regulation》2023,42(3):1775-1788

Members of La-related protein (LARP) 1 family spread widely in various species, and they are involved in regulating many important biological processes in mammal, yeast, and fruit fly. However, functional research of LARP1s in plants is limited so far. In Arabidopsis, there are three members in LARP1 family, LARP1a, 1b, and 1c. Here, we found that the mutation of LARP1 genes delayed seed germination, implying that LARP1 proteins might be positive factors of seed germination in Arabidopsis. Moreover, the larp1 mutants showed more sensitive to abscisic acid (ABA) and paclobutrazol (PAC), as larp1 mutants displayed low rate of germination in medium contained ABA or PAC. Temporal and spatial expression analyses revealed that LARP1s were more abundant in seeds, especially in imbibed seeds. Subcellular localization analysis revealed that all LARP1 proteins could localize to the P-bodies, suggesting that LARP1s might play a role in RNA processes. Taken together, our results unravel new conserved functions of LARP1s in the regulation of Arabidopsis seed germination.

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通过检测分析不同蓝光条件下,拟南芥野生型和蓝光受体突变体的种子萌发率发现,蓝光诱导拟南芥种子萌发,隐花素主要介导蓝光诱导拟南芥种子的早期(蓝光培养1—3d)萌发,并且与光照强度有关。施用GA生物合成抑制剂多效唑或嘧啶醇的研究结果表明,相同浓度的抑制剂对crylcry2突变体种子萌发的抑制作用比野生型强,并且解除抑制剂对crylcry2突变体种子萌发所需的外源有生物活性的GA,量也较野生型多。这些实验结果初步证实了隐花素介导蓝光诱导种子萌发,并且可能与蓝光下种子萌发过程中有生物活性的GA合成增加有关。  相似文献   

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Germination is the first and maybe the foremost growth stage in the life cycle of a plant. Herein, we report that initiation of germination in the Arabidopsis Columbia ecotype was accompanied by a sharp decrease in the amount of extractable total RNA. At the beginning of our germination experiment, we were usually able to obtain 35-40 IJg total RNA from 100 mg dry seeds. However, after 3 d of cold stratification, we could only obtain less than 5 μg total RNA from the same amount of starting material. Young seedlings contained approximately 100 μg total RNA per 100 mg fresh tissue. Further studies showed that inhibition of de novo RNA synthesis by actinomycin D prevented the degradation of parental RNA and, in the meantime, significantly delayed the germination process. Several ribonuclease-like genes that were highly expressed in dry seeds, and especially during the cold stratification period, were discovered. We propose that these enzymes are involved in the regulation of parental RNA degradation. These results indicate that parental RNA metabolism may be an important process for Arabidopsis seed germination.  相似文献   

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UV-B辐射对拟南芥种子萌发和幼苗生长的影响   总被引:1,自引:0,他引:1  
以哥伦比亚生态型(Columbia-0)拟南芥(Arabidopsis thaliana)为实验材料, 人工模拟UV-B辐照处理拟南芥种子, 统计其发芽势和发芽率, 测定根长、株高、叶绿素、可溶性糖、可溶性蛋白以及丙二醛(MDA)含量, 研究UV-B辐照处理对拟南芥种子萌发和幼苗生长的影响。研究结果表明, 低剂量的UV-B辐照可以促进拟南芥种子萌发和幼苗生长, 并且最佳辐照剂量为1.0 kJ·m–2(P<0.05), 此时的发芽势、发芽率、根长、株高、叶绿素、可溶性糖及可溶性蛋白的含量均达到最大, 而丙二醛的含量变化则不明显(P>0.05)。当辐照剂量大于1.0 kJ·m–2时, 促进作用逐渐变小, 并且随着辐照剂量的增加, 表现出了抑制作用。实验结果表明, 适当剂量的UV-B辐照在一定程度上可以促进拟南芥种子萌发和幼苗生长, 而过高剂量的辐照则对其产生抑制或损伤作用。  相似文献   

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Experiments were carried out to explore the involvement of gibberellins(GAs) in the light-induced germination of Arabidopsis thaliana(L.) Heynh, using wild type (WT) and phytochrome-deficient mutants(phyA, phyB and phyAphyB deficient in phytochrome A, B and Aplus B, respectively). Seed germination of WT and phytochrome-deficientmutants was inhibited by uniconazole (an inhibitor of an earlystep in biosynthesis of GA, the oxidation of ent-kaurene) andprohexadione (an inhibitor of late steps, namely, 2rß-and 3rß-hydroxylation). This inhibition was overcomeby simultaneous application of 10-5 M GA4. The relative activityof GAs for promoting germination of uniconazole-treated seedswas GA4>GA1=GA9>GA20. The wild type and the phyA and phyBmutants had an increased response to a red light pulse in thepresence of GA1, GA4, GA9, GA20 and GA24 but there were no significantdifferences in activity of each GA between the mutants. Therefore,neither phytochrome A nor hytochrome B appears to regulate GAbiosynthesis from GA12 to GA4 during seed germination, sincethe conversion of GA12 to GA9 is regulated by one enzyme (GA20-oxidase). However, GA responsiveness appears to be regulatedby phytochromes other than phytochromes A and B, since the phyAphyBdouble mutant retains the photoreversible increased responseto GAs after a red light pulse. (Received February 13, 1995; Accepted July 11, 1995)  相似文献   

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