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1.
2,4-D诱导的花生体细胞胚发生的组织学研究   总被引:14,自引:0,他引:14  
花生成熟胚胚叶在MS附加 2 0mg/L 2 ,4_D的培养基上诱导 2 0d后 ,转移至无激素培养基MS0 继续培养 ,可获高频体细胞胚发生。组织学观察表明 ,体细胞胚起源于胚叶上表皮及表皮下数层细胞 ,这些细胞脱分化形成细胞质浓厚、细胞核大的胚性细胞团 ,胚性细胞团继续分裂形成体细胞胚。体细胞胚的发育过程经历球形胚、心形胚、鱼雷胚、子叶胚四个时期  相似文献   

2.
花生成熟胚胚叶在佃附加20mg/L 2,4-D的培养基上诱导20d后,转移至无激素培养基MS0继续培养,可获高频体细胞胚发生。组织学观察表明,体细胞胚起源于胚叶上表皮及表皮下数层细胞,这些细胞脱分化形成细胞质浓厚、细胞核大的胚性细胞团,胚性细胞团继续分裂形成体细胞胚。体细胞胚的发育过程经历球形胚、心形胚、鱼雷胚、子叶胚四个时期。  相似文献   

3.
文冠果的体细胞胚胎发生   总被引:23,自引:1,他引:22  
文冠果种子在MS 6-BA 1.0 mg·L-1 2,4-D 1.0 mg·L-1 NAA 1.0 mg·L-1 3%蔗糖的固体培养基上暗培养,形成愈伤组织,愈伤组织在B5 6-BA0.5mg·L-1 NAA0.5mg·L-1 2%蔗糖的培养基中弱光悬浮培养形成体细胞胚.在蔗糖为1%时,子叶状胚萌发形成完整小植株.细胞学观察表明,文冠果体细胞胚源于胚性愈伤组织的外层细胞,此区域细胞富含淀粉粒.  相似文献   

4.
石防风试管苗的根经2,4-D诱导可形成具有发生体细胞胚潜能的愈伤组织,用愈伤组织制备悬浮细胞。细胞及组织学的观察表明,体细胞胚发生经历了单细胞、丝状体、细胞团、愈伤组织及胚性细胞团的出现及类胚体的各个发育阶段。丝状体可以经过不同的分裂途径发育为细胞团。愈伤组织表面或者内部的某些细胞演变为胚性细胞,它们不断分裂形成了体细胞胚,一个愈伤组织可形成一个或几个体细胞胚。  相似文献   

5.
栓皮栎体细胞胚胎发生的细胞组织学观察   总被引:1,自引:0,他引:1  
以栓皮栎未成熟合子胚为外植体,在添加0.25mg/L 2,4-D和0.5mg/L 6-BA的MS培养基上6周可诱导产生2种类型的胚性愈伤组织,一种表面具光泽、白色;另一种表面光滑湿润具光泽,色泽淡黄或无色透明。组织切片表明,胚性愈伤组织的细胞体积小,细胞核大,细胞质浓,细胞排列紧密;非胚性愈伤组织细胞的体积大,细胞核小,细胞质稀薄。胚性细胞团培养在不含激素的培养基上可诱导产生体细胞胚。体细胞胚直接起源于胚性细胞团表皮或近表皮的单细胞,经历与合子胚相似的球形胚、心形胚、鱼雷胚和子叶胚发育阶段。所有发育时期的体细胞胚的胚轴、子叶均产生次生体胚,它们起源于细胞质较浓的表皮单细胞。  相似文献   

6.
福禄考叶片直接和间接地由单细胞形成体细胞胚。直接形成的体细胞胚来自叶表皮细胞、紧邻表皮的第一层栅栏细胞及维管束鞘内部和外部的薄壁细胞。间接形成的体细胞胚来自愈伤组织的表层或较深层细胞。体细胞胚有典型胚柄、多细胞胚柄和无胚柄3种,均经类似于合子胚的发育过程形成无根小植株。  相似文献   

7.
石刁柏组织培养中体细胞胚发生的组织细胞学观察   总被引:2,自引:0,他引:2  
以石刁柏(Asparagus officinalis)无菌苗的嫩茎切段为外植体,在含有1 mg/LNAA+0.5 mg/L BA的MS培养基上可100%地被诱导形成愈伤组织,在此条件下可长期继代,将继代的愈伤组织转入含有2 mg/L 2,4-D 0.5mg/L NAA的MS培养基上后,约有70%的愈伤组织块转变为胚性愈伤组织,这些胚性愈伤组织在3,4-D浓度进一步降低为0.5mg/L的条件下发育形成体细胞胚。切片观察表明:这些胚性愈伤组织是从愈伤组织的表层或近表层产生的。这些细胞核大,多核仁,细胞质浓、染色深的胚性细胞中的一些单个细胞处于与邻近细胞隔离状态,细胞壁也明显加厚。这些单细胞开始分裂,第一次分裂多为不均等分裂,形成一个大的基细胞和一个小的顶细胞,进一步分裂形成三细胞、四细胞、五细胞和具胚柄的多细胞原胚。原胚发育形成球形胚、梨形胚、香蕉形胚,由于在胚的一侧细胞分裂旺盛形成单子叶突起,最后形成子叶胚。其发育过程类似于单子叶植物合子胚的发育过程。  相似文献   

8.
福录考体细胞胚胎发生的观察   总被引:1,自引:0,他引:1  
福录考(PhloxdrummondiiHook)体细胞胚胎发生的方式有两种:一是由叶外植体具有一定功能的特化细胞脱化为胚性细胞,如叶表皮细胞,维管束鞘及韬皮薄壁细胞均可发生脱分化进行分裂,形成胚性细胞或分细胞团;二是叶外植体先脱分化形成愈伤组织。  相似文献   

9.
通过检测细胞系增值率及细胞分裂指数确定细胞系分裂最旺盛时期,利用秋水仙素和氨磺灵诱导落叶松多倍体体细胞胚胎的发生,揭示了两种抗微管物质对落叶松体细胞胚胎发生的影响.秋水仙素在浓度为500 mg·L-1,浸泡处理36 h时能使多倍体体细胞胚胎发生的比例达到85.2%,体细胞胚发生率达到351.1个/g;氨磺灵在1~5 mg·L-1的浓度下处理后的细胞系几乎失去体细胞胚分化能力,无法大量获得多倍体体细胞胚.通过细胞压片及去壁-低渗涂片对比观察发现氨磺灵诱导后的细胞系除了染色体数目加倍外还有部分细胞发生程序性死亡.该研究初步证明了秋水仙素较适合落叶松多倍体体细胞胚的诱导,氨磺灵对落叶松毒害明显,不适合其多倍体的诱导.  相似文献   

10.
为了进一步优化普通油茶再生体系并了解外植体生理变化特点,选择普通油茶‘长林53号’不同时期的胚作为体胚再生体系的外植体,进行多因素多水平正交试验,同时测定和分析不同胚龄的胚生理生化指标。结果表明:7、8月份为茶果的快速生长期,此时胚中可溶性蛋白、果糖和蔗糖含量逐渐上升,可溶性总糖含量呈双峰曲线变化,7月27日,幼胚中ABA含量(110.13ng·g-1)及ABA与ZR含量比值(13.47)都达到最高;体胚再生体系构建过程表明,2,4-D对体胚诱导影响最大,其次是胚龄;‘长林53号’油茶最佳体胚诱导方法为选择茶果快速膨大期(7月27日)的幼胚作为外植体,最佳诱导配方为MS+0.5mg·L-1 2,4-D+0.5mg·L-1 KT+0.05mg·L-1 TDZ+500mg·L-1 Gly;IAA对胚状体萌发影响最大,胚状体萌发和组培苗生长最佳配方为MS+2mg·L-1 IAA+0.5mg·L-1 6-BA+0.5mg·L-1 TDZ+500mg·L-1 CH。  相似文献   

11.
欧美杂种山杨愈伤组织再生系统的建立   总被引:6,自引:0,他引:6  
为解决欧美杂种山杨成年树种快速繁殖的问题,并为研究原生质体分离、遗传转化和体细胞变异打下基础,我们建立了愈伤组织再生系统.其愈伤组织诱导最适培养基为WPM 6-BA 1.0 mg·L-1 NAA 0.1 mg.L-1、WPM 6-BA 1.0 mg·L-1,分化培养基为wPM 6-BA 03~1.0 mg.L-1,愈伤组织诱导率和分化率分别为90.67%和92%.  相似文献   

12.
以茶树叶片为外植体.以MS培养基附加4mg·L-16-BA,2mg·L-1IAA.3mg·L-1GA3和0.2—0.3%活性碳诱导出愈伤组织和胚状体,进一步形成小植株.切片观察表明.茶叶愈伤组织胚状体的发生,起源于愈伤组织表层及其内部的单个细胞和细胞团,胚状体发育顺序与合子胚大致相似.经球形胚、心形胚、鱼雷胚和子叶胚阶段.但发育过程中常有畸形胚出现.  相似文献   

13.
An efficient method to transform five cultivars of tomato (Lycopersicon esculentum), Micro-Tom, Red Cherry, Rubion, Piedmont, and E6203 is reported. A comparison was made of leaf, cotyledon, and hypocotyl explants on 7 different regeneration media without Agrobacterium tumefaciens cocultivation and on 11 different media with cocultivation. Although all cultivars and explants formed callus and regenerated on the initial 7 media, cocultivation with A. tumefaciens significantly reduced the callus induction and regeneration. From these experiments, a transformation methodology using either hypocotyls or cotyledons cultured for one day on BA 1 mgL-1, NAA 0.1 mgL-1 and 3 days cocultivation with the Agrobacterium on this same medium followed by a transfer to a medium with zeatin 2 mgL-1 and IAA 0.1 mgL-1 for 4-6 weeks resulted in a greater than 20% transformation frequency for all five cultivars tested. In this transformation method, no feeder layers of tobacco, petunia or tomato suspension cultures were used, and the subculture media was minimal. Stable integration and transmission of the transgene in T1 generation plants were confirmed by Southern blot analysis. This procedure represents a simple, efficient and general means of transforming tomato.  相似文献   

14.
Embryogenic calli were initiated from embryonic explants of Pinus roxburghii using female gametophytes containing immature pre-cotyledonary embryos. Zygotic embryos were collected at different developmental stages and cultured on various media. Initiation of embryogenic calli was achieved in pre-cotyledonary zygotic embryos of a 0.1-mm to 1.2-mm embryonal head on Douglus fir cotyledon revised medium (DCR) medium supplemented with 2,4-D or NAA and BA. Embryogenic callus development was initiated from the suspensor region of immature embryos. The method of immature embryo culture was significant as rapid embryogenic callus development occurred in megagametophytes where the suspensor was stretched onto the medium from the cut micropylar end. Sixty embryogenic lines were established from 2500 explants cultured during one season. A pro-embryo with six to eight meristematic cells and suspensor of six to ten long, vacuolated cells dominated the early phase of the callus development. Cleavage polyembryony occurred in proliferating callus, constituting a method of multiplication of these somatic embryos. Somatic embryos developed to stage-I and stage-II embryos on DCR medium supplemented with 5 μM 2,4-D or 10 μM NAA. Received: 30 June 1999 / Revision received: 15 November 1999 / Accepted: 3 December 1999  相似文献   

15.
Scanning electron microscopy has been used to investigate the morphological changes occurring during the development of alfalfa somatic embryos. Embryos were initiated from callus, transferred to suspension culture and matured on solid agar medium. This developmental pattern was compared to that of zygotic embryos developing in ovulo. Somatic embryos begin as distinct pro-embryos within the callus tissue pieces placed in suspension culture. They become globular and heart-shaped while on solid agar medium and then undergo cotyledon elongation and maturation. Somatic embryos develop comparatively slower at early stages of development and faster at the later stages than zygotic embryos. They lack a well-defined suspensor and have a very rough, poorly-differentiated epidermis, the first layer of which is lost after pro-embryo formation. The cotyledons of somatic embryos are multiple and poorlydeveloped; there appears to be a correlation between the amount of surface roughness of the developing embryo and the extent to which polycotyledony occurs.  相似文献   

16.
南方红豆杉(Taxus chinensis var.mairei)为第三纪孑遗树种,也是我国Ⅰ级保护植物。本文通过对其大孢子发生及雌配子发育过程进行细胞学观察发现,南方红豆杉胚珠多为直立单生,偶见1个苞片内着生2个胚珠;大孢子母细胞减数分裂形成4个大孢子,其中3个退化,仅位于合点端的大孢子发育为功能性大孢子;功能性大孢子经过有丝分裂形成256个游离核;颈卵器单生,2~6个;从传粉到受精约2个月;有16个原胚自由核,原胚为标准型;简单多胚和裂生多胚并存,胚发育不同步。因南方红豆杉胚珠直立单生、游离核数目、传粉到受精间隔期、原胚游离核数目等特征与松科差异较大,而与广义柏科具有许多相似之处,故我们支持将红豆杉科置于广义柏科之下的观点。此外,本研究结果还表明,南方红豆杉大孢子发生与雌配子体发育正常,不是致其濒危的主要原因。  相似文献   

17.
In the new Brassica napus microspore culture system, wherein embryos with suspensors are formed, ab initio mimics zygotic embryogenesis. The system provides a powerful in vitro tool for studying the diverse developmental processes that take place during early stages of plant embryogenesis. Here, we studied in this new culture system both the temporal and spatial distribution of nuclear DNA synthesis places and the organization of the microtubular (MT) cytoskeleton, which were visualized with a refined whole mount immunolocalization technology and 3D confocal laser scanning microscopy. A ‘mild’ heat stress induced microspores to elongate, to rearrange their MT cytoskeleton and to re-enter the cell cycle and perform a predictable sequence of divisions. These events led to the formation of a filamentous suspensor-like structure, of which the distal tip cell gave rise to the embryo proper. Cells of the developing pro-embryo characterized endoplasmic (EMTs) and cortical microtubules (CMTs) in various configurations in the successive stages of the cell cycle. However, the most prominent changes in MT configurations and nuclear DNA replication concerned the first sporophytic division occurring within microspores and the apical cell of the pro-embryo. Microspore embryogenesis was preceded by pre-prophase band formation and DNA synthesis. The apical cell of the pro-embryo exhibited a random organization of CMTs and, in relation to this, isotropic expansion occurred, mimicking the development of the apical cell of the zygotic situation. Moreover, the apical cell entered the S phase shortly before it divided transversally at the stage that the suspensor was 3–8 celled.  相似文献   

18.
以球子蕨成熟孢子为外植体,研究了不同激素及浓度对其孢子萌发、愈伤组织诱导、丛生芽分化及生根的影响。结果表明:孢子萌发最适培养基为1/2MS+2%蔗糖,20d后萌发率达55.7%;诱导愈伤组织的最适培养基为MS+0.5mg·L-1 KT+0.5mg·L~2,4-D,诱导率达36%,愈伤组织为绿色颗粒状;颗粒状愈伤组织在不添加激素的MS培养基中即可生长出大量丛生芽,转化率可达49.3%;低浓度(0.2mg·L-1)的IAA可有效促进幼孢子体苗生根。  相似文献   

19.
 Anthocyanin pigments accumulated in a cell line derived from storage-root explants of sweet potato (Ipomoea batatas L.) cv 'Ayamurasaki'. Somatic pro-embryos were induced on the explants cultured on Murashige and Skoog medium supplemented with 1 mg/l 2,4-D. The pro-embryo structures produced callus when transferred to MS medium with 0.5 mg/l 2,4-D. A cell line was isolated from this callus which accumulated anthocyanin pigment. The color value of the pigment extracted after 27 days of culture in MS medium with 2 mg/l 2,4-D was 8.2, which was very close to that of a pigment extracted from roots, which was 8.9. Most of the pigments from the cell extract were hydrophilic and appeared on the ODS-column HPLC with a lower retention time than the main anthocyanins of the root tissues. The majority of the pigments were identical with the root anthocyanins. Cell line-specific anthocyanins were detected. Received: 8 January 1999 / Revision received: 2 March 1999 / Accepted: 30 June 1999  相似文献   

20.
网纹瓜(Cucumis melo Var.reticulatus)是名贵的优质甜瓜,为葫芦科、甜瓜属植物。我国引种后生长良好,产量高,经济效益好,每年从日本购进大量杂交种子。但由于种子不纯,基因型差异较大,植株不整齐,产量不稳定,而且价格昂贵。因此,选育适合我国种植的  相似文献   

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