Krochko J E, Pramanik S K, Bewley J D
Department of Botany, University of Guelph, Guelph, Ontario N1G2W1 Canada.
Plant Physiol. 1992 May;99(1):46-53. doi: 10.1104/pp.99.1.46.
During development on hormone-free media, somatic embryos pass through distinct morphological stages that superficially resemble those of zygotic embryo development (globular, heart, torpedo, cotyledonary stages). Despite these similarities, they differ from zygotic embryos in the extent of cotyledonary development and the patterns of synthesis and quantitative expression of seed-specific storage proteins (7S, 11S, and 2S proteins). Alfin (7S) is the first storage protein synthesized in developing zygotic embryos (stage IV). The 11S (medicagin) and 2S (Low Molecular Weight, LMW) storage proteins are not detectable until the following stage of development (stage V), although all three are present before the completion of embryo enlargement. Likewise, the 7S storage protein is the first to be synthesized in developing somatic embryos (day 5). Medicagin is evident by day 7 and the LMW protein by day 10. In contrast to zygotic embryos, alfin remains the predominant storage protein in somatic embryos throughout development. Not only are the relative amounts of medicagin and the LMW protein reduced in somatic embryos but the LMW protein is accumulated much later than the other proteins. Quantification of the storage protein mRNAs (7S, 11S, and 2S) by northern blot analysis confirms that there are substantial differences in the patterns of message accumulation in zygotic and somatic embryos of alfalfa (Medicago sativa). In zygotic embryos, the 7S, 11S, and 2S storage protein mRNAs are abundant during maturation and, in particular, during the stages of maximum protein synthesis (alfin, stages VI and VII; medicagin, stage VII; LMW, stage VII). In somatic embryos, the predominance of the 7S storage protein is correlated with increased accumulation of its mRNA, whereas the limited synthesis of the 11S storage protein is associated with much lower steady-state levels of its message. The mRNA for the LMW protein is present already by 3 days after transfer to hormone-free media, yet that protein is not evident on stained gels until day 10. Thus, both transcriptional and posttranscriptional events appear to be important in determining the protein complement of these seed tissues. On the basis of storage protein and mRNA accumulation, mature (14 days) somatic embryos most closely resemble stage VI zygotic embryos. The results of the developmental comparison also suggest that the patterns of synthesis of the individual storage proteins (7S, 11S, or 2S) are regulated independently of each other during embryogenesis in alfalfa.
在无激素培养基上发育期间,体细胞胚会经历不同的形态阶段,这些阶段表面上类似于合子胚发育阶段(球形、心形、鱼雷形、子叶形阶段)。尽管存在这些相似之处,但它们在子叶发育程度以及种子特异性贮藏蛋白(7S、11S和2S蛋白)的合成模式和定量表达方面与合子胚不同。Alfin(7S)是发育中的合子胚(IV期)合成的第一种贮藏蛋白。11S(苜蓿素)和2S(低分子量,LMW)贮藏蛋白直到发育的下一阶段(V期)才检测到,尽管在胚体增大完成之前这三种蛋白都已存在。同样,7S贮藏蛋白是发育中的体细胞胚(第5天)首先合成的。苜蓿素在第7天出现,LMW蛋白在第10天出现。与合子胚相反,Alfin在体细胞胚整个发育过程中仍然是主要的贮藏蛋白。不仅苜蓿素和LMW蛋白在体细胞胚中的相对含量降低,而且LMW蛋白的积累比其他蛋白晚得多。通过Northern印迹分析对贮藏蛋白mRNA(7S、11S和2S)进行定量,证实苜蓿(紫花苜蓿)合子胚和体细胞胚中信息积累模式存在显著差异。在合子胚中,7S、11S和2S贮藏蛋白mRNA在成熟期间,特别是在蛋白质合成最多的阶段(Alfin,VI和VII期;苜蓿素,VII期;LMW,VII期)含量丰富。在体细胞胚中,7S贮藏蛋白的优势与其mRNA积累增加相关,而11S贮藏蛋白的有限合成与其信息的低稳态水平相关。LMW蛋白的mRNA在转移到无激素培养基后3天就已存在,但在染色凝胶上直到第10天才可见该蛋白。因此,转录和转录后事件在决定这些种子组织的蛋白质组成方面似乎都很重要。根据贮藏蛋白和mRNA积累情况,成熟(14天)体细胞胚最类似于VI期合子胚。发育比较结果还表明,在苜蓿胚胎发生过程中,单个贮藏蛋白(7S、11S或2S)的合成模式相互独立调节。