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1.
低温预处理影响水稻花药培养效率的机理初探   总被引:3,自引:0,他引:3  
低温预处理延缓药壁中层和绒毡层的降解,促进表皮层和药室内壁层的发育,延缓花药过氧化物酶同工酶活性的增强。处理期间花药可溶性蛋白质、淀粉酶同工酶潜带发生明显变化。处理期间花药的~3H-TdR渗入和花粉的发育、分裂,表明花粉存在合成和充实活动。绒毡层和花粉间存在囊泡,表皮层和药室内壁层之间存在多泡体的穿壁运动,说明低温处理中药壁向花粉输送雄核发育所需的物质。在进入正常培养初期,经过低温处理的花药药壁仍有表皮层和药室内壁层的发育,多细胞花粉出现提早、数量增加,花粉退化延缓。而未经处理的花药药壁各层均迅速降解,花粉大量退化。  相似文献   

2.
该研究利用石蜡切片技术观察并描述了兰科单型属竹叶兰属的花粉团发育过程,包括花形态解剖特征、8个花粉团的形成机制、花药壁发育模式、小孢子发生及雄配子体发育等特征,为该属复杂的系统亲缘关系提供胚胎学证据。结果表明:(1)成熟花药有两个药室,每个药室有4个一簇金色的花粉团,被白色花药帽;早期花药原基分化出的一对并列侧生药室,每个药室中央的小孢子囊在极面观方向分化出两条十字交叉的纵向不育隔膜组织,将其沿花药室纵轴方向深切为4个不等大的棒状次生孢子囊,最后发育为4个花粉团。(2)花药成熟时,靠花药开裂处的隔膜组织比近药隔膜组织的降解速度快且彻底,因此每个药室内的4个花粉团在花药开裂处粘合成一簇。(3)发育完好的花药壁共有6~7层,由外到内为表皮、3~4层药室内壁、中层和双核绒毡层,符合多层型花药壁的发育模式;花药成熟时,表皮退化,纤维性加厚发生在3~4层药室内壁,中层和绒毡层彻底降解。(4)小孢子母细胞通过同时型胞质分裂产生了正四面体型、左右对称、十字交叉型排列的小孢子四分体;小孢子四分体继续保持在同一胼胝质内完成了雄配子体发育,形成了2-细胞型的四合花粉;四合花粉两两或松散或紧密排列,构成了粉质花粉团。在前人的研究基础上,本文证实、补充并分析了竹叶兰属的花粉团发育特征,为该属的亲缘关系提供了胚胎学证据。  相似文献   

3.
用光镜和电镜观察羽叶薰衣草(Lavandula pinnata L.)雄性不育小孢子发育过程的细胞形态学特征.结果表明:羽叶薰衣草花药4枚,每枚花药通常具4个小孢子囊.花药壁发育为双子叶型,从外向内分为表皮、药室内壁、中层和绒毡层4层细胞.减数分裂形成的四分体为四面体及十字交叉型.小孢子的发育过程可分为造孢细胞期、减数分裂时期、小孢子发育早期、小孢子发育晚期.未观察到二胞花粉期和成熟花粉期.羽叶薰衣草花粉败育主要发生在单核花粉时期,细胞内物质解体并逐渐消失变成空壳花粉或花粉皱缩变形成为各种畸形的败育花粉.在此之前小孢子的发育正常.羽叶薰衣草小孢子不育机制体现在绒毡层过早解体、四分体时期以后各细胞中线粒体结构不正常、胼胝质壁与小孢子母细胞脱离、花药壁细胞中淀粉出现时间异常等. 壁发育为双子叶型,从外向内分为表皮、药室内壁、中层和绒毡层4层细胞.减数分裂形成的四分体为四面体及十字交叉型.小孢子的发育过程可分为造孢细胞期、减数分裂时期、小孢子发育早期、小孢子发育晚期.未观察到二胞花粉期和成熟花粉期.羽叶薰衣草花粉败育主要发生在单核花粉时期,细胞内物质解体并逐渐消失变成空壳花粉或花粉皱缩变形成为各种畸形的败育花粉.在此 前小孢子的发育正常.羽叶薰衣草小孢子不育机制体现在绒毡层过早解体、四分体时期以后各细胞中线粒体结构不正常、胼胝质壁与小孢子母细胞脱离、花药壁细胞中淀粉出现时间异常等. 壁发育为双子叶型,从外向内分为表皮、药室内壁、中层和绒毡层4层细胞.减数分裂形成的四分体为四  相似文献   

4.
万代兰属的属间界限划定及其亲缘关系重建是兰科分类系统中的难解之谜。该研究采用常规石蜡切片技术观察了珍稀濒危植物大花万代兰的一对深裂花粉团的形成机制、花药壁发育模式、小孢子发生及雄配子体发育等的胚胎学特征。结果表明:(1)大花万代兰早期的花药原基分化出一对侧生药室,每个药室的小孢子囊中央分化出一条在花药成熟时会降解的不育隔膜组织,形成两个不等深裂的花粉团。(2)发育完整的花药壁有5~9层,包括2~6层药室内壁,符合多层型花药壁发育类型;绒毡层细胞为单核,腺质型,在花药成熟时,表皮、中层和绒毡层皆降解,仅留下2~6层纤维性加厚的药室内壁。(3)小孢子母细胞经过连续型胞质分裂形成正四面体和左右对称的小孢子四分体,小孢子四分体继续保持在同一个胼胝质内,完成有丝分裂形成了2 细胞型的四合花粉;四合花粉两两紧密排列,且由于隔膜组织的降解,最终发育为一对深裂的花粉团。根据现有兰花花药发育资料,分析了大花万代兰花粉团发育的胚胎学特征的分类学意义,为万代兰属错综复杂的系统分类提供了新资料。  相似文献   

5.
在光学显微镜和透射电镜下观察了毛钩藤(Uncaria hirsuta Havil.)的小孢子发生和雄配子体发育过程.结果表明,毛钩藤花两性,具5枚雄蕊,花药4室,花药壁由表皮、药室内壁、中层和绒毡层组成,花药开裂时,药室内壁高度纤维化带状加厚.花药壁的发育方式属于双子叶型,小孢子母细胞减数分裂的胞质分裂为同时型.小孢子在四分体时期开始沉积花粉外壁,小孢子大液泡化时期开始沉积花粉内壁.成熟花粉为2-细胞型.毛钩藤的花粉发育特征和茜草科植物基本一致.毛钩藤绒毡层属于分泌型,双重起源,分别起源于次生周缘层和药隔细胞.小孢子发育早期绒毡层开始降解并分泌形成大量乌氏体,花药开裂时绒毡层完全消失,剩下少量乌氏体.小孢子早期内壁加厚突出形成,小孢子细胞核分裂以后内壁加厚开始脱落,花药开裂时,只剩下少量的内壁加厚突出.初步推测,内壁加厚突出与乌氏体共同作用为雄配子体的发育提供营养物质.  相似文献   

6.
巾唇兰属是我国新记录属,近十余年来先后在我国南方发现了两种,包括在云南发现的新种——巾唇兰(Pennilabium yunnanense)。利用解剖镜和石蜡切片技术观察了巾唇兰具有分类学意义的花形态特征和花粉团发育的胚胎学特征,结果如下。成熟花的合蕊柱短,无蕊柱足;花粉块由2个球形花粉团、粘盘和粘盘柄组成。在花药发育早期,花药原基分化出一对侧生并列药室;在小孢子母细胞时期,每个小孢子囊在两个药室相邻的内花药壁处分化出一段不贯穿药室的不育隔膜组织。在花药发育过程中,该隔膜组织逐渐被吸收降解,到花粉成熟时形成2个开口朝内的孔裂花粉团。发育成熟的花药壁共有4层,发育类型为单子叶型,绒毡层为单核、腺质型。在小孢子母细胞进入减数分裂阶段,表皮细胞变窄出现了降解,中层和绒毡层细胞也逐渐被吸收和降解;花药成熟时,花药壁仅剩下残缺的表皮和纤维状加厚明显的药室内壁。小孢子母细胞通过同时型胞质减数分裂形成小孢子四分体,其排列方式主要为正四面体形和左右对称,成熟花粉为2细胞型。本文从形态发育角度澄清了巾唇兰花粉团特征的描述,讨论了其花粉团发育特征的分类学意义,为兰科花药发育多样性提供了新资料。  相似文献   

7.
低温预处理影响籼稻花药培养效率的研究   总被引:5,自引:0,他引:5  
低温预处理使籼稻花药在培养初期退化花粉百分率低于对照;多核花粉百分率明显高于对照。经过低温预处理的花药来见新的可溶性蛋白谱带出现;淀粉酶同工酶谱带少和弱于对照,过氧化物酶同工酶中碱性区活性初期弱而后期强于对照。低温处理使药壁组织衰退进程有所延缓,但未能制止衰退,也未出现如粳稻中所见的药壁细胞充实发育的现象。低温预处理只能稍微延缓籼稻药壁组织的衰退进程,有限度地促进籼稻花药培养效率。  相似文献   

8.
被子植物中部分类群的花药开裂方式为孔裂,人们对此类花药的发育与散粉孔的形成及散粉机制了解甚少。杜鹃属(Rhododendron)植物的花药普遍为顶孔开裂,为探究其花药的发育和散粉孔的形成及散粉机制,该研究对锦绣杜鹃(Rhododendron×pulchrum)进行了解剖观察和石蜡切片。结果表明:(1)锦绣杜鹃花药顶端成孔区与花药主体具有不同的组织构成,成孔区由薄壁组织构成,起源于雄蕊原基顶端的分生组织,花粉成熟时薄壁细胞分解成为散粉孔;花药的主体由孢原细胞发育而来,孢原细胞经多次分裂分化成为具多层花药壁的花粉囊。(2)锦绣杜鹃的花药壁在小孢子母细胞至小孢子四分体时期发育完全,有6~7层细胞,包括1层表皮、2~3层药室内壁、1~2层中层和1层绒毡层,中层在小孢子四分体形成后即分解,绒毡层在花粉完全成熟前分解消失,花药壁在花粉成熟时有表皮和2~3层药室内壁。(3)与纵裂型花药不同,锦绣杜鹃的药室内壁在花粉成熟时不发生纤维化,但因积累多糖而增厚,具有韧性和弹性。(4)锦绣杜鹃花粉发育过程中小孢子母细胞产生的4个小孢子不分离,成熟花粉为四合花粉,花粉间具有粘丝。推测锦绣杜鹃具多层药室内壁且加厚...  相似文献   

9.
黄瓜花器形态发生、小孢子发育与花药培养   总被引:27,自引:0,他引:27  
孢子发育时期与花蕾形态特征、花药颜色具有相关性。本试验目的是确定黄瓜花药的最佳培养时期,并确定对应的选蕾标准。对基因型、预处理等花药培养主要影响因素研究结果表明:不同基因型小孢子单核中后期花蕾长度不同,形态上没有差异;同一基因型的小孢子发育不同时期的花器特征和诱导率均有差异,单核中后期花药诱导率最高;低温预处理有利于保持小孢子的活力;花药培养中以黑暗中4℃、48~72h低温预处理最有助于愈伤发生。实验结果表明,黄瓜花药培养中小孢子最佳培养时期为单核中后期,取蕾标准为:花蕾长度0.90~1.50cm,绿色,瓣尖未张开,花药白绿色或淡绿色。  相似文献   

10.
楸树(Catalpa bungei C.A.Meyer.)属紫葳科(Bignoniaceae)梓树属(Catalpa),落叶乔木,是我国特有的珍贵优质用材树种。本文用石蜡切片法对可育株和雄性不育株楸树的大、小孢子发生及雌、雄配子体发育过程进行了详细地比较观察。结果表明:可育株和不育株楸树雌蕊的发育基本相同,胚珠倒生,薄珠心,单珠被,胚囊发育为蓼型。可育株雄蕊花药四室,药隔薄壁组织发达;异型绒粘层,由药壁绒粘层和药隔绒粘层组成;花药壁表皮细胞在小孢子母细胞减数分裂前后开始径向伸长加厚,直到花药开裂并不降解,这可能与花药开裂有关;成熟花粉为四合花粉。雄性不育株花药的早期发育到次生造胞细胞时期与可育雄蕊的相同,小孢子母细胞减数分裂前绒毡层发育不充分;四分体时期,绒毡层细胞高度液泡化,细胞质稀薄,已提前降解,小孢子四分体因绒毡层结构和功能异常而不能正常发育,因此楸树雄性不育为结构型雄性不育。  相似文献   

11.
不同基因型小麦花药培养过程中药壁变化的研究   总被引:3,自引:0,他引:3  
在相同的培养条件下 ,比较了不同基因型小麦花药培养过程中药壁变化的差异。组织切片观察表明 :易诱导材料花药培养过程中 ,药壁细胞发育充实 ,活力强 ,降解衰退较难诱导材料有所延缓 ;两种材料的花药刚离体时绒毡层就存在着明显的差异  相似文献   

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13.
The effects of anther tissues were studied systematically on microspores forming multicellular units and furthermore on pollen callus formation in the anther culture of Hordeum vulgare (cv. Sabarlis). Anther productivity was found to be greatly enhanced by use of medium previously conditioned by anthers. In 15 experiments observed, anthers produced 26 times on average more calli in the conditioned medium than in control, in a few cases, even more than 80 times more calli formed. According to this, the authors supposed that cultured anthers released some components, anther factor (s) (AF), which is important to androgenesis in the culture. To achieve high yields of callus, culture was restricted to anthers which had been subpected to cold pretreatment. The temperature stress could not be replaced by the AF. However, for conditioning medium, anthers at binuclear stage were found to be more effective than the test anthers either with or without the pretreatment. Anthers from other 8 barley varieties were also effective for conditioning, as the difference of anther productivity still existed in the culture with conditioned medium between various genotypes tested. Anther response and callus yield were increased in both the culture of anthers at mid and late-uninuclear stage by use of conditioned medium. AF interacted synergistically with m-inositol. Cytological observation showed that AF increased apparently the formation of MPGs, while m-inositol mainly stimulated callus formation from MPGs. To some extent, the effect of exogenous hormone(s) could be replaced by AF. The anther response and pollen callus yield could be much enhanced by increasing anther inoculation density, which also raised the AF level in the culture. Thus, by use of the temperature stress prior to anther culture and culture of test anthers in conditioned medium with m-inositol, or at higher inoculation density, a very high production of pollen callus could be obtained in barley anther culture. For meeting the more specialized requirements of less responsive species or genopypes, the principles given here may be provide some basic information.  相似文献   

14.
Anther wall formation was studied in 32 species belonging to 27 genera of Solanaceae. Dicotyledonous and basic types of wall formation were observed, as well as several deviations due to subsequent periclinal divisions in the layers formed (middle layers and sometimes the endothecium). One type of wall formation was observed in each species. Some genera are uniform in their type of wall formation, while others are heterogeneous; a similar situation was observed at the tribal level. Summarizing all reported information on anther wall formation in the Solanaceae, 64 % of species show the basic type, while the remaining 36 % show the dicotyledonous type. Thus, neither type predominates, and no single type characterizes genera, tribes or the entire family.  相似文献   

15.
C. Clément  J. C. Audran 《Protoplasma》1995,187(1-4):172-181
Summary Anthers ofLilium were for the first time investigated at the ultrastructural level in order to appreciate the possible ways of sugar transport in the microsporangium. Our results have shown that the cells of the outer anther wall layers and the cell of the connective were interconnected by plasmodesmata, thus allowing assimilates to travel through the symplasmic pathway from the vascular bundle to the most internal middle layer (ML 1). ML 1 was devoid of cell communication throughout pollen development. Tapetal cells were also lacking plasmodesmata on their external face towards ML 1, but adjacent tapetal cells developed lateral junctions: the tapetum could represent a syncytium. Sugars destinated to pollen in the loculus have then to cross the ML 1 and the tapetal layers by the apoplasmic pathway; it is suggested that these two envelopes could be involved in the control of sugar transport from the outer anther wall layers to the locular fluid. Before microspore mitosis, the tapetum degenerated but ML 1 remained structurally unchanged. During pollen development, the guard cells of stomata were lacking cell communication, and preserved their starch content, which could be the sign of photosynthesis within the anther wall. In order to check whether these structural disconnections in anther tissues corresponded to physiological barriers, isolated pollen and stamens were cultivated during the anther maturation phase, on a medium containing increasing concentrations of sucrose (0 M, 1/6 M, 1/2 M, 1 M). After 7 days of culture, isolated pollen was engorged with starch grains and was unable to germinate, whereas in cultivated stamens, pollen did not contain any starch grain: sporophytic tissues, however, accumulated abnormal amylaceous reserves. These results strongly suggest that the anther wall layers, in particular ML 1, starve pollen with sugars during its maturation. They are acting as a physiological buffer storing nutriment surplus in starch grains.Abbreviations ML 1 middle layer 1 - ML 2 middle layer 2 - PAS periodic acid Schiff - PATAg periodic acid thiosemicarbazide silver nitrate  相似文献   

16.
17.
探讨菘蓝花药处于单核晚期的形态指标,并以适宜发育时期的花药为外植体,进行花药培养及单倍体诱导。实验结果表明,4℃低温处理2d后,在含有6-BA0.5mg·L-1和NAA1.0mg·L-1。的Ms培养基上,花药愈伤组织的诱导率为23.35%;将其转接到Ms附加6.BA1.0mg·L-1,NAA0.5mg·L-1的分化培养基上,80.00%以上的愈伤组织可以诱导产生不定芽;再将分化出的试管苗转接到1/2MS+NAA1.0mg·L-1的生根培养基上,3d左右即可获得完整植株。经叶边缘压片检查染色体数目,花药培养所得的弱小绿苗为单倍体植株。  相似文献   

18.
林木花药培养研究进展及展望   总被引:15,自引:0,他引:15  
多数林木在遗传上高度杂合,给育种和遗传研究带来很多不便。与农作物相比,林木花药培养的意义更为重大。对国内外林木花药培养的现状及影响花药培养的主要因素进行了概述,讨论了其在21世纪分子生物技术时代的应用前景,旨在促进林木花药培养技术的完善并开拓其应用领域。  相似文献   

19.
石刁柏花粉植株诱导及其起源鉴定的研究   总被引:3,自引:0,他引:3  
陆朝福  周维燕 《遗传学报》1993,20(6):531-535
采用高渗蔗糖溶液预处理石刁柏花药可以显著抑制花药体细胞分裂和提高花粉愈伤组织诱导率。愈伤组织在转入含低浓度激素的培养基中分化得到了花粉植株。其中单倍体、二倍体、四倍体和非整洁体分别占4.3%、64.5%、17.2%和14.0%。单倍体的频率随愈伤组织培养时间延长而下降,石刁柏幼茎中莽草酸脱氢酶同工酶的多态性表现稳定,用其作为遗传标记结合细胞学方法可以鉴定花粉植株的起源。  相似文献   

20.
Pollen development is a critical step in plant development that is needed for successful breeding and seed formation.Manipulation of male fertility has proved a useful trait for hybrid breeding and increased crop yield.However,although there is a good understanding developing of the molecular mechanisms of anther and pollen anther development in model species,such as Arabidopsis and rice,little is known about the equivalent processes in important crops.Nevertheless the onset of increased genomic information and genetic tools is facilitating translation of information from the models to crops,such as barley and wheat;this will enable increased understanding and manipulation of these pathways for agricultural improvement.  相似文献   

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