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1.
短柄五加胚和胚乳发育的研究   总被引:6,自引:0,他引:6  
短柄五加胚发育属茄型,棒形胚后期胚柄最为发达,球形胚胚柄开始退化,心形胚期胚柄解体。胚乳发育属核型,当胚乳游离核为200 ̄300个时,以自由生长细胞壁的方式进行胚乳细胞化。胚乳细胞进一步增殖以有丝分裂方式进行,球形胚时,胚乳细胞最外层细胞特化为分泌层,胚乳细胞贮藏蛋白质和脂类物质。在胚乳游离核为32 ̄64个时,单珠被的内表皮层分化为珠被绒毡层。合子分裂后,珠被绒毡层发育最为充分;棒形胚后期,珠被绒  相似文献   

2.
柽柳胚和胚乳发育的观察   总被引:1,自引:0,他引:1  
利用常规石蜡制片技术,对柽柳(Tamarix chinensis Lour.)胚和胚乳的发育过程进行了观察。结果表明,胚发育属茄型,其基细胞先行纵裂。胚柄基部发育迅速,具吸器作用,球形胚期胚柄最为发达,其细胞质丰富,贮藏淀粉类物质,至晚心形胚期胚柄依然存在。助细胞被受精产生多胚现象。胚乳发育属核型,初生胚乳核常常晚于合子分裂,胚乳核的分裂速度慢于胚体细胞的分裂速度。当胚乳游离核为 32个时,以自由生长细胞壁的方式进行胚乳细胞化。胚乳细胞进一步增殖极少。珠心细胞只有两层,细胞核大,胞质丰富,内含贮藏物质,至心形胚期逐渐解体。  相似文献   

3.
利用石蜡切片技术对百合科植物黄花油点草[Tricyrtis maculata(D.Don)Machride]双受精、胚及胚乳发育进行了研究,以明确其胚胎发育的特征,为百合科植物的系统研究提供生殖生物学资料。结果表明:(1)黄花油点草为珠孔受精;进入胚囊的2枚精子分别与卵细胞和中央细胞进行正常的双受精,其受精作用属有丝分裂前型。(2)受精后的初生胚乳核立即分裂,其发育方式为核型胚乳;早期的游离胚乳核沿胚囊的边缘分布,胚囊中央部位主要为胚乳细胞质,随着游离胚乳核数量的增加,胚乳核慢慢充满整个胚囊;当发育至球形胚早期阶段,在各胚乳核周围产生胚乳细胞壁,形成完整的胚乳细胞。(3)合子有较长的休眠时间,胚的发育方式为茄型;合子第一次有丝分裂为横裂,分裂后形成基细胞和顶细胞;基细胞经过3次横裂,形成一列胚柄细胞;顶细胞经过分裂形成胚体,依次形成球形胚、棒状胚和盾形胚。(4)种子成熟时胚无器官分化;成熟种子由种皮、胚和胚乳三部分组成。  相似文献   

4.
甜叶菊的受精作用及胚和胚乳的早期发育   总被引:6,自引:0,他引:6  
成熟胚囊被珠被绒毡县包围,由卵器、具次生核的中央细胞以及数目为1至6个反足细胞组成。传粉后6小时左右,雌、雄性核融合。配子融合同精核与次生核的融合几乎同时发生;精核与次生核融合速度快于配子融合。甜叶菊受精作用属于有丝分裂前类型。传粉后8小时左右,初生胚乳核分裂,其分裂方向可与胚囊长轴平行或垂直,从而形成最初的两个胚乳细胞。胚乳细胞前5次分裂是同步的。心形胚阶段,胚乳细胞呈现被消化吸收的迹象。胚乳发育属细胞型。传粉后10小时左右,合子第一次分裂,为横分裂。胚胎发育属紫菀型。  相似文献   

5.
华山新麦草胚和胚乳的发育研究   总被引:4,自引:2,他引:2  
王丽  赵桂仿 《西北植物学报》2002,22(4):T005-T006
采用常规石蜡切片法,观察了华山新麦草胚和胚乳的发育过程,结果表明,华山新麦草胚和胚乳的发育过程与一般禾本科植物基本相同,胚胎发生属紫宛型,顶细胞和基都参与胚体的形成,胚胎发育经过二细胞原胚,多细胞原胚,球形原胚,梨形原胚,分化胚和成熟胚阶段,成熟胚具有胚根,胚芽,盾片,胚牙鞘,胚根鞘,外胚叶等典型禾本科植物成熟胚的结构,胚乳发育类型为核型,包括游离核阶段,细胞化阶段和生长成熟阶段,待大量游离核形成之后才形成细胞壁,紧贴胚囊的一层胚乳细胞最后形成种子的糊粉层,其余的胚乳细胞最后充满淀粉粒,其特点为:(1)有双球形原胚的现象;(2)反足细胞解体较早;(3)胚乳游离核时期和细胞时期胚乳细胞核的核仁多样。  相似文献   

6.
利用常规石蜡制片技术对北柴胡胚和胚乳的发育及对其种子萌发的影响进行了观察。结果表明北柴胡胚的发育属于茄型,基细胞进行一次横分裂后不再分裂,因而胚柄不发达,且很早解体。胚乳的发育属于核型,初生胚孔核的分裂远远早于受精卵的分裂。对果实采收时期胚发育状况进行统计发现,在被测采收期果实中有20%的果实的胚处于球形胚阶段,70%处于心形胚,只有10%处于鱼雷胚,说明北柴胡种子采收时胚处于不同的发育阶段,存在形态后熟现象,这是北柴胡种子萌发难、萌发率低且出苗不整齐的主要因素。  相似文献   

7.
谷子胚和胚乳的发育   总被引:5,自引:0,他引:5  
合子的第一次分裂为斜的横分裂,胚发育至棒状原胚后,胚顶端一侧的细胞加速分裂形成一团分生组织细胞,由这团分生组织分化盾片、胚芽鞘、胚芽生长点和胚根。胚体的其它部分参与部分盾片和胚根鞘的构成。胚柄不参与胚的组成,胚无外胚叶,胚胎发育属禾本型。核型胚乳。从胚囊壁产生的自由生长壁把胚乳游离核隔开形成一层胚乳细胞。然后这层细胞平周分裂使胚乳细胞变成二层,以后的胚乳细胞增殖以细胞有丝分裂方式进行。胚乳的最外层  相似文献   

8.
大葱胚和胚乳的发育   总被引:5,自引:0,他引:5  
观察了“章丘大葱”胚珠、胚囊的结构,胚及胚乳的发育。胚发育属紫菀型,经历球胚前的原胚、球胚、椭形胚、凹形胚、长棒形胚及弯形成熟胚等各期。宿存助细胞生存到球形胚期。胚乳发育属核型。球胚晚期,在胚褒珠孔端及合点端,胚乳开始细胞化。由于游离核之间出现了垂周壁,由一层胚乳游离核形成了一层无内切向壁的“开放细胞”。“开放细胞”行平周分裂而形成两层细胞,外层为完整细胞,内层为新的“开放细胞”。如此多次分裂,向心增生胚乳细胞,最后将中央细胞填满。初始的垂周壁来自于间期游离核之间的细胞板,非“自由生长壁”但又未见明显的成膜体。初始的平周壁是正常有丝分裂的胞质分裂的结果,与成膜体,细胞板有关。在球胚晚期,胚乳细胞化后,在中央液泡内观察到游离细胞。  相似文献   

9.
孙颖  王蕾  杨雪  王阿香  何淼 《西北植物学报》2016,36(12):2433-2439
利用石蜡切片技术对毛茛科植物侧金盏胚及胚乳发育进行了研究,以明确其胚胎发育的特征,为毛茛科植物的系统研究提供资料。结果表明:(1)侧金盏胚的发育属于柳叶菜型,胚乳发育为核型;初生胚乳核的分裂早于合子的第一次分裂。(2)种子成熟时,种胚尚未分化完全,尚处于球形胚后期或心形胚早期阶段,整个胚发育大约需要50~60d。(3)侧金盏种子存在明显的形态生理休眠现象,经后熟作用逐渐完成种胚的分化与生长,形成子叶形胚;侧金盏种子在相同处理条件下胚分化和发育的速度存在差异。  相似文献   

10.
掌叶大黄胚胎学研究   总被引:3,自引:0,他引:3  
掌叶大黄(Rheum palmatum L.)的花药4室,单或复孢原。药壁发育为单子叶型。腺质绒毡层发育后期出现双核。小孢子四分体为四面体型,胞质分裂为同时型。成熟花粉为3细胞,表面具3条沟。子房1室,单胚珠,直生,两层珠被,由内珠被形成珠孔,厚珠心。单孢原,位于珠心表皮下。直线形或T形大孢子四分体。合点端的大孢子发育为蓼型胚囊。2个极核在受精前合并为次生核。3个反足细胞宿存。胚乳发育为核型,在球形胚末期开始形成细胞。合点端的胚乳核一直不形成细胞,而为游离核的胚乳吸器。在胚乳吸器和其它部位都发现胚乳核融合现象。胚的发育属于紫菀型。胚具小胚柄。成熟胚囊时期出现承珠盘,且存留时间很长,成熟胚期尚存痕迹。  相似文献   

11.
A barley cDNA macroarray comprising 1,440 unique genes was used to analyze the spatial and temporal patterns of gene expression in embryo, scutellum and endosperm tissue during different stages of germination. Among the set of expressed genes, 69 displayed the highest mRNA level in endosperm tissue, 58 were up-regulated in both embryo and scutellum, 11 were specifically expressed in the embryo and 16 in scutellum tissue. Based on Blast X analyses, 70% of the differentially expressed genes could be assigned a putative function. One set of genes, expressed in both embryo and scutellum tissue, included functions in cell division, protein translation, nucleotide metabolism, carbohydrate metabolism and some transporters. The other set of genes expressed in endosperm encodes several metabolic pathways including carbohydrate and amino acid metabolism as well as protease inhibitors and storage proteins. As shown for a storage protein and a trypsin inhibitor, the endosperm of the germinating barley grain contains a considerable amount of residual mRNA which was produced during seed development and which is degraded during early stages of germination. Based on similar expression patterns in the endosperm tissue, we identified 29 genes which may undergo the same degradation process. Electronic Publication  相似文献   

12.
芍药胚和胚乳早期发育的研究   总被引:3,自引:0,他引:3  
本文报道芍药(Paeonia lactiflora)的胚和胚乳的早期发育,主要结论是:1,开花后4—20天,合子核反复分裂形成多核原胚。2.原胚及胚乳游离核分裂均以有丝分裂为主,晚期有无丝分裂和多倍体核;3,细胞壁形成可由纺锤丝间和自由壁两种方式进行。原胚壁形成由合点端向珠孔端进行,胚乳则由胚附近向合点端发展。我们支持 Cave 等基于多核原胚提出的 Paeonia 与裸子植物平行演化的意见,同时认为 Paeonia 的多核原胚演化趋势是原胚由珠孔端至合点端功能分区的特化。  相似文献   

13.
The present paper reports the early development of embryo and endosperm of Paeonia lactiflora. The main conclusions are as follows: 1 The zygote nucleus divides directly to form a coenocytic proembryo with different number of free nuclei. The result confirms the conclusion of Yakovlev[6] as well as Yakovlev and Yoffe[7] On the occurnce of coenocytic proembryo in Paeonia suffruticosa Andr. (P. moutan Sims), P. albiflora Pall. (P. lactiflora Pall), P. officinalis L., P. tenuifolia L., P. anomala L., P. veitchii Lynch (P. beresowskii Komarov), P. wittmanniana, also it agrees with the report of Cave et al.[4] on the occurence of the coenocytie proembryo in Paeonia californica and P. brownii. From the result of our investigation, there is no basis to support Murgai's conclusion obtained in certain species of Paeonia, i.e., the first division of zygote nucleus is accompanied by wall formation and the coenocyte is a suspensor. The primary endosperm nucleus of P. lactiflora divides often earlier than zygote nucleus, or almost at the same time or later in a few cases; 2 Both mitosis and amitosis occur in the free nuclei in the coenocytic proembryo, and mitosis is dominant. In the later stage of development the amitosis occurs at the micropylar region of the coenocytic proembryo, in the free nuclear endosperm at the chalazal region and the appressed part of the chalazal end of the coenocytic proembryo. In addition, in the region of conenocytic proembryo and endosperm polyploid nuclei, irregular nuclei are also frequently met with; 3 Cell wall formation in the coenocyte and the endosperm initiates by means of both cell plate and freely growthing walls, but in the coenocyte wall formation is earlier than in the free nuclear endosperm. At first, wall formation of the coenocytic proembryo begins at the chalazal end, and then extends toward the micropylar region, and in endosperm it begins at the part appressed to the part of the chalazal end of coenocytic proembryo, and then extends toward the chalazal end. We support Cave’s suggestion of the parallel evolution for Paeonia possessed the coenocytic proembryo has no relation to the coenocytic proembryo of the gymnosperms. Further we consider the evolution tendency of the coenocytic proembryo of Paeonia toward a functional specialization.  相似文献   

14.
 The development of the embryo and endosperm has been investigated in an intraspecific Tulipa gesneriana cross and in the incongruent cross T. gesneriana ×T. agenensis at intervals of 10 days, from 12 to 82 days after pollination (DAP). In both tulip crosses, the zygote gives rise to an apparently undifferentiated cell mass, the proembryonal cell mass, on which a suspensor then develops. Subsequently, a globular embryo is formed on top of the suspensor. This embryo finally elongates, giving rise to a spindle-shaped embryo. The cellular endosperm fills the whole embryo sac in mature seeds, except for a region immediately around the embryo. In both crosses, aberrant developments were found. In the intraspecific T. gesneriana cross, the pollen tubes did not open in a number of ovules. In other ovules, the pollen tubes seemed to have opened, but an embryo or endosperm was not found or only endosperm was observed. In the cross T. gesneriana ×T. agenensis, fewer pollen tubes entered the ovules than in the intraspecific T. gesneriana cross. The ovules with embryo and endosperm formation of the incongruent interspecific cross showed, in general, retarded development in comparison with the intraspecific T. gesneriana cross. The first globular embryos and spindle-shaped embryos were found at the later fixation dates and the relatively lower number of spindle-shaped embryos at 82 DAP had a shorter average length. The number of ovules with deformations in embryo and/or endosperm development was also higher in the cross T. gesneriana × T. agenensis in comparison with the intraspecific T. gesneriana cross. Between 87% and 100% of the ovules with embryo and endosperm development showed normal development in the intraspecific T. gesneriana cross, while in the incongruent interspecific cross, from 22 DAP, between 17% and 56% of the ovules showed normal development. Of those ovules with aberrations in embryo and/or endosperm formation, about 80% had a deformed endosperm, of which more than 50% also contained a deformed embryo. Embryos of the incongruent cross might be saved by the application of embryo rescue techniques. Received: 10 December 1996 / Revision accepted: 23 April 1997  相似文献   

15.
The endosperm is a transitory structure involved in proper embryo elongation. The cell walls of mature seed endosperm are generally composed of a uniform distribution of cellulose, unesterified homogalacturonans, and arabinans. Recent studies suggest that changes in cell wall properties during endosperm development could be related to embryo growth. The degree of methyl esterification of homogalacturonans may be involved in this endosperm tissue remodelling. The relevance of the degree of homogalacturonan methyl esterification during seed development was determined by immunohistochemical analyses using a panel of probes with specificity for homogalaturonans with different degrees of methyl esterification. Low-esterified and un-esterified homogalacturonans were abundant in endosperm cells during embryo bending and were also detected in mature embryos. BIDXII (BDX) could be involved in seed development, because bdx-1 mutants had misshapen embryos. The methyl esterification pattern described for WT seeds was different during bdx-1 seed development; un-esterified homogalacturonans were scarcely present in the cell walls of endosperm in bending embryos and mature seeds. Our results suggested that the degree of methyl esterification of homogalacturonans in the endosperm cell wall may be involved in proper embryo development.  相似文献   

16.
17.
Pre-embryonic and embryonic stages and seed developments were studied in the diploids Hylocereus monacanthus and Hylocereus undatus and the tetraploid Hylocereus megalanthus. Ovule morphology was similar among species except for micropyle entrance. H. monacanthus had the thickest and most robust suspensor. Embryo developmental time, measured from fertilization to maturity, was significantly more prolonged in H. megalanthus. Typical to Cactaceae, the seed coat was formed by one layer of sclerenchymatous cells, but was more lignified in H. megalanthus. Morphological features common to all species included (1) cellular type endosperm with independent patterns of development in the chalazal and micropylar zones, forming a haustorium layer from the chalazal zone to the embryo; (2) an endothelial layer surrounding the embryo sac almost complete; (3) a nucellar summit growing into the micropyle; and (4) a placental obturator and a funicle connecting the ovarian tissue to the ovule. Seed development was typically endospermic (exendospermic orthodox seeds). Anomalies included two egg cells in the same embryo sac, two embryos developing in the same ovule, and embryos developing from the chalazal pole region. Total seed number and seed viability were significantly lower in H. megalanthus than in the other two taxa. Embryos at different developmental stages were observed in aborted H. megalanthus seeds.  相似文献   

18.
The embryo sac formation, endosperm formation, and embryo development in all species of JapaneseMitella andM. diphylla of North America were studied. Monosporic 8-nucleate embryo sac formation of thePolygonum type was found in all the species. In endosperm formation, the Cellular type was found in all species of sect.Mitellaria, and the Helobial type inM. nuda, M. diphylla, andM. integripetala. The Helobial type inM. integripetala was somewhat aberrant and approximated to the Cellular type. In embryo development, three types were distinguishable in sect.Mitellaria: Type A (most of the species), Type B (M. acerina) and Type C (M. pauciflora andM. furusei var.furusei). Type B is an intermediate type between A and C.Mitella integripetala also shows Type A, and the types ofM. nuda andM. diphylla are similar to Type A, except for the shape of suspensor. From outgroup comparison, Type A is suggested to be primitive and Type C to be most derivative in sect.Mitellaria. The affinity of some species in sect.Mitellaria is discussed from the embryogenic data obtained.  相似文献   

19.
The development processes of embryos and endosperm of trigrain wheat were observed by using paraffin section method and intact dissection. The results were as follows: 1. Fertilization: the development and progression of embryo and endosperm were similar to those as common wheat. 2. The grain come from the primary pistil embryo developed more early among the three-grains. 3. Many abnormal structures, such as Conversion of position between the top and base, back and belly of embryos, horizontal embryos, embryos moved on top, polyembryony and endosperm deficiency etc, appeared in additional pistils. All abnormalities accounted for 88 percent in whole additional pistils.  相似文献   

20.
葡萄胚珠,胚乳及胚的发育   总被引:2,自引:0,他引:2  
本文研究了“早玫瑰”和“新玫瑰”葡萄胚珠、胚乳和胚的发育。结果表明:花后3天胚珠即开始迅速生长,其生长的最终大小依品种成熟期的不同而各异。胚乳游离核在花后33天成为细胞状态。受精后16—21天,合子才开始第一次分裂。当胚乳充满珠心组织时,胚开始迅速发育并一直持续到果实成熟.胚的发育与果实的发育无明显竞争关系。  相似文献   

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