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1.
对可育系和雄性不育系万寿菊的大、小孢子发生及雌、雄配子体发育过程进行了系统地比较观察。结果表明:可育系和不育系万寿菊雌蕊的发育基本相同,二者的雌蕊为二心皮一室,每室1胚珠,单珠被,薄珠心,倒生型胚珠。大孢子母细胞经减数分裂形成线形排列的4个大孢子,合点端为功能大孢子。胚囊发育类型为蓼型。可育系小孢子母细胞经过减数分裂形成四面体形的四分体,成熟花粉是二细胞型,表面有刺。其花药为四室,药壁发育属双子叶型,腺质绒毡层。雄性不育系万寿菊特化小花在花芽分化时即没有产生雄蕊原基,因而不具雄蕊结构,为结构型雄性不育。  相似文献   

2.
王艳杰  申家恒 《植物学报》2007,24(3):425-432
以柴胡(Bupleurum chinense)为研究对象, 运用石蜡切片技术对其大、小孢子发生及雌、雄配子体发育进行了研究。结果表明: 柴胡花药具4个药室, 花药壁由表皮、药室内壁、中层和绒毡层4层细胞构成, 花药壁发育为双子叶型, 腺质绒毡层。小孢子母细胞减数分裂的胞质分裂为同时型, 产生正四面体型小孢子。成熟花粉三细胞型。胚珠倒生型, 单珠被, 薄珠心。大孢子母细胞常为一个雌性孢原直接发育而成, 大孢子四分体呈线型或T型排列, 多数情况为合点端一个大孢子分化为功能大孢子, 由功能大孢子发育为蓼型成熟胚囊。在胚囊发育过程中, 珠被内表皮细胞特化成珠被绒毡层。同一朵花中, 雄蕊先熟, 记 录了花蕾大小及雌、雄配子体发育的对应关系。  相似文献   

3.
刺五加大、小孢子发生和雌、雄配子体发育的观察   总被引:11,自引:0,他引:11  
刺五加Eleutherococcus senticosus(Rupr.et Maxim.)Maxim.雄株的小孢子发生和雄配子体发育过 程正常,大孢子发生和雌配子体发育过程多不正常。雄花具5个花药,花药4室,药壁发育属双子叶型, 腺质绒毡层,绒毡层细胞多具2核。小孢子母细胞经减数分裂形成四面体形四分体,其胞质分裂为同时 型。成熟花粉为3细胞型。子房下位,5室;每室有上胚珠和下胚珠,上胚珠退化,下胚珠倒生、具单珠 被、厚珠心;大孢子母细胞经减数分裂形成线形或“T”形四分体,偶尔有2个并列或串联的四分体或在 四分体之上又出现孢原细胞。其功能大孢子位置不确定。雌配子体发育中异常现象较多。开花时,雌 配子体主要为反足细胞退化后的四细胞胚囊。刺五加雌株的小孢子母细胞不能进行减数分裂或减数分 裂不正常,不能形成四分体。开花时,药室空瘪,无花粉形成。其大孢子发生和雌配子体发育过程正常, 大孢子母细胞减数分裂形成线形或“T”形四分体,合点端大孢子为功能大孢子,胚囊发育属蓼型。开花 时,雌配子体主要为七细胞八核或七细胞七核胚囊,其卵器尚未发育成熟。刺五加两性株的小孢子发生 过程无异常,但雄配子体发育过程有部分异常;开花时,药室内有或多或少的空花粉,且花粉粒大小悬 殊,大的直径达35μm,小的仅15~18 μm。两性株的雌蕊发育大部分正常,也有一些异常胚囊形成。开 花时,雌配子体主要是七细胞八核胚囊、七细胞七核胚囊和反足细胞退化后的四细胞胚囊,其卵器也未发育成熟。  相似文献   

4.
采用石蜡切片法对黄金树大、小孢子发生及雌、雄配子体发育的过程进行了详细的细胞学观察。结果表明:黄金树子房两室,中轴胎座,胚珠多数,倒生。单珠被,薄珠心,孢原细胞直接发育成大孢子母细胞。单孢原蓼型胚囊。黄金树雄蕊五枚,三枚退化,二枚可育。花药二室,腺质绒毡层,小孢子四分体排列方式为正四面体型,成熟花粉粒为四合花粉。  相似文献   

5.
柴胡大、小孢子发生及雌、雄配子体发育   总被引:6,自引:0,他引:6  
以柴胡(Bupleurum chinense)为研究对象,运用石蜡切片技术对其大、小孢子发生及雌、雄配子体发育进行了研究。结果表明:柴胡花药具4个药室,花药壁由表皮、药室内壁、中层和绒毡层4层细胞构成,花药壁发育为双子叶型,腺质绒毡层。小孢子母细胞减数分裂的胞质分裂为同时型,产生正四面体型小孢子。成熟花粉三细胞型。胚珠倒生型,单珠被,薄珠心。大孢子母细胞常为一个雌性孢原直接发育而成,大孢子四分体呈线型或T型排列,多数情况为合点端一个大孢子分化为功能大孢子,由功能大孢子发育为蓼型成熟胚囊。在胚囊发育过程中,珠被内表皮细胞特化成珠被绒毡层。同一朵花中,雄蕊先熟,记录了花蕾大小及雌、雄配子体发育的对应关系。  相似文献   

6.
沙葱大小孢子发生及雌雄配子体发育研究   总被引:1,自引:0,他引:1  
采用常规石蜡切片技术,对沙葱大、小孢子的发生及雌、雄配子体的发育进行了研究.结果表明:(1)沙葱为两性花,其雄蕊发育早于雌蕊,但在开花后雌雄蕊发育趋于同步,当胚囊发育成熟,柱头可以接受花粉时,雌雄蕊发育达到同步.(2)沙葱小孢子母细胞减数分裂过程中的胞质分裂为连续型,其四分体多为左右对称型,少数为四面体型.(3)成熟的花粉为2-细胞型,花药壁由外向内分化为表皮、药室内壁、中层和绒毡层.(4)沙葱雌蕊为子房上位,中轴胎座,3心皮,3室,胚珠倒生,薄珠心,珠心表皮下的雌性孢原直接发育为大孢子母细胞.减数分裂产生二分体,合点端大孢子发育为功能大孢子,其雌配子体发育为葱型.  相似文献   

7.
楸树大小孢子发生与雌雄配子体发育的研究   总被引:1,自引:0,他引:1  
运用石蜡切片法和整体透明法对楸树(Catalpa bungei C.A.Meyer)大、小孢子发生及雌、雄配子体发育过程进行了研究.结果表明:楸树可育雄蕊2枚,花药4室,药壁发育属双子叶型,腺质异型绒毡层.小孢子母细胞减数分裂为同时型,四分体后小孢子不分离形成正四面体型四合花粉,偶有左右对称型和十字交叉型.成熟花粉为二细胞型,无萌发孔.子房上位,2室,中轴胎座,胚珠多数,倒生,单珠被,薄珠心,具珠被绒毡层.单孢原直接发育为大孢子母细胞,四分体线形排列,合点端大孢子发育为功能大孢子,胚囊发育为蓼型.雄蕊发育早于雌蕊,花开后雌、雄蕊趋于同熟.研究认为:虽然楸树雌、雄蕊发育过程中均存在一定比例的败育,但其花而不实"并非雄性或雌性不育所致.推测与其授粉受精和胚后发育有关.  相似文献   

8.
巨龙竹生殖器官形态结构及雌、雄配子体的发育   总被引:2,自引:0,他引:2  
通过石蜡切片的方法对巨龙竹生殖器官结构、大小孢子的发生和雌、雄配子体的发育过程进行了观察研究。 巨龙竹为一心皮组成的单室单子房,子房内具有一个胚珠,倒生、双珠被、厚珠心。大孢子母细胞减数分裂形成线形排列的4个大孢子,合点端大孢子具功能。胚囊的发育为蓼型,具多个反足细胞。巨龙竹的花药壁由4层结构组成,包括表皮、药室内壁、中层、绒毡层;花药壁发育为单子叶型,绒毡层为腺质型。小孢子母细胞减数分裂中的胞质分裂为连续型,四分孢子为四面体型;成熟花粉粒为2细胞型,具1个萌发孔。小穗发育雌雄异熟,雌蕊的发育早于雄蕊的发育。  相似文献   

9.
羊草大、小孢子发生与雌、雄配子体发育的观察   总被引:5,自引:0,他引:5  
卫星  申家恒 《西北植物学报》2003,23(12):2058-2065
利用常规石蜡制片技术研究了羊草大、小孢子发生及雌、雄配子体发育过程。主要结果是:(1)花药壁由4层结构组成,最外层为表皮,其次为药室内壁,1层中层,最内层绒毡层为分泌型;(2)小孢子母细胞减数分裂过程中的胞质分裂为连续型,四分孢子为左右对称型;(3)成熟花粉粒为3细胞型,具单萌发孔;(4)羊草为单子房、单胚珠,双珠被、薄珠心、倒生型胚珠,大孢子母细胞减数分裂形成线型或T型排列的4个大孢子;合点端大孢子具功能;(5)具有双孢原,双大孢子母细胞、双大孢子四分体和双胚囊的情况;(6)胚囊发育为蓼型,反足细胞经无丝分裂形成4~6个细胞的反足细胞群;(7)同一朵花中,前期雄蕊的发育早于雌蕊的发育,后期当花粉成熟时,雌配子体也达到成熟,雌雄蕊发育趋于同步。  相似文献   

10.
北柴胡大小孢子发生和雌雄配子体发育的研究   总被引:1,自引:0,他引:1  
用石蜡切片法对北柴胡的大、小孢子发生和雌、雄配子体发育过程进行观察研究.结果显示,北柴胡的胚珠为倒生型,单珠被,薄珠心.孢原细胞不经分裂直接发育成大孢子母细胞;四分体线性,多数情况下合点端的大孢子为功能大孢子,少数情况下亚合点端的大孢子也可发育为功能大孢子,蓼型胚囊;八核胚囊时期,珠心基部和两侧的一些珠心细胞保持自己的细胞质和形状,留存较久,成为珠心座细胞,珠被内表皮细胞发育为珠被绒毡层;花药壁发育类型为基本型,绒毡层为腺质绒毡层.小孢子母细胞减数分裂的胞质分裂为同时型,产生正四面体型四分体.成熟花粉为3细胞型.  相似文献   

11.
This paper describes megasporogenesis, microsporogenesis, and development of female and male gametophytes in Eleutherococcus senticosus. The main results are as follows: Flowers of E. senticosus are epigynous, pentamerous. Anthers are 4 -microsporangiate. An ovary has 5 loculi. Each ovary loculus has 2 ovules: the upper ovule and the lower ovule. The upper one is orthotropous and degenerates after the formation of archesporial cell, while the lower one is anatropous, unitegmic and crassinucellar, and able to continue developing. In male plants, microsporogenesis and development of male gametophytes took place in regular way, but a series of abnormal phenomena were found in megasporogenesis and development of female gametophytes. The microspore mother cells gave rise to tetrahedral tetrads by meiosis. Cytokinesis was of the simultaneous type. The mature pollen was 3-celled and shed singly. The anther wall formation belonged to the dicotyledonous type. At the stage of microspore mother cell, the anther wall consisted of four layers, i.e. epidermis, endothecium, middle layer, and tapetum. The tapetum was of glandular type and its most cells were binucleate. When microspores were at the uninucleate stage, the tapetum began to degenerate in situ. When microspores developed into 3-celled pollen grains, the tapetum had fully degenerates. In the lower ovule of male flower, the megaspore mother cell gave rise to a linear or “T” -shaped tetrad. In some cases, a new archesporial cell over the tetrad or two tetrads parallel or in a series were observed. Furthermore, the position of functional megaspore was variable; any one or two megaspores might be functional, or one megaspore gave rise to a uninucleate embryo sac, but two other megaspores also had a potentiality of developing into the embryo sac. In generally, on the day when flowers opened, female gametophytes contained only 4 cells: a central cell, two irregular synergids and one unusual egg cell. In female plants, microspore mother cells and secondary sporogenous cells were observed. But at the stage of secondary sporogenous cell, the newly differentiated tapetum took the appearance of degeneration. Later, during the whole stage of meiosis, the trace of degenerative tapetum could be seen. At last, the microsporangium degenerated and no tetrad formed. On the blossom day, all anthers shriveled without pollen grains. In female flowers, megasporogenesis and development of female gametophytes were normal: the tetrad of megaspores was linear or “T”-shaped; the chalazal megaspore was usually functional; the development of embryo sac was of the Polygonum type. On the blossom day, most embryo sacs consisted of 7 cells with 8 nuclei or 7 cells with 7 nuclei; but the egg apparatus was not fully developed. In hermaphroditic plants, microsporogenesis was normal but the development of male gametophytes was partially abnormal. When the hermaphroditic flowers blossomed, there were more or less empty pollen grains in the microsporangium and these pollen grains were quite different in size. The development of most gynoecia was normal but numerous abnormal embryo sacs could be seen. On the blossom day, female gametophytes were mainly 7-celled with 8-nuclei or with 7-nuclei or 4-celled with antipodal cells degenerated; the egg apparatus wasnot fully developed either.  相似文献   

12.
珍稀濒危植物巴东木莲胚胎学研究   总被引:1,自引:0,他引:1  
对巴东木莲(Manglietia patungensis Hu)的花发育以及胚胎发育过程进行了系统研究。巴东木莲花顶生,花器官头年年底开始分化到第二年3月分化出花被、雌雄蕊群直至6月发育成熟。雌蕊成熟时胚珠倒生,双珠被,厚珠心,大孢子四分体线形排列,合点端发育成功能大孢子,珠孔端的3个退化,大孢子为单孢子发生型,胚囊发育方式属蓼型;雄蕊花药外侧壁玫瑰红色,内侧有4个白色花粉囊,绒毡层有1层多核细胞,小孢子四分体排列方式多为左右对称形和交叉形,四面体形,偶为T字形和线形,成熟花粉粒为二细胞型。在巴东木莲花发育和大、小孢子发生以及雌、雄配子体形成过程中未见异常现象,因此笔者认为该物种的花器官发育以及雌、雄配子体发育并不构成导致该物种濒危的因素。  相似文献   

13.
用石蜡切片法对不同发育时期的大花紫薇(Lagerstroemia speciosa)花朵进行解剖研究,探讨其大小孢子的发生及雌雄配子体的发育过程,结果发现:大花紫薇花药4室,花药壁由表皮、药室内壁、中层和腺质绒毡层构成,发育类型为双子叶型;小孢子四分体多为四面体型,偶见十字交叉型,胞质分裂为同时型;成熟花粉粒属于2-细胞型,具3孔沟,偶见败育现象;大花紫薇雌蕊具6~7心皮,子房6~7室,每室具多枚倒生胚珠,双珠被,厚珠心,大孢子4分体呈直线排列,近合点端大孢子发育为蓼型胚囊,成熟胚囊为7细胞8核。花粉及胚囊发育多数正常,大花紫薇可以作为优良的杂交母本;同时可以根据开花物候不同阶段花的形态特征,初步判断大花紫薇大、小孢子发生和雌、雄配子体的发育进程。  相似文献   

14.
选用石蜡切片法观察了彩色马蹄莲品种‘Majestic Red’的大小孢子发生及雌雄配子体发育的过程。研究结果表明:彩色马蹄莲的胚珠为倒生,具双珠被、厚珠心和珠被绒毡层。大孢子母细胞的减数分裂后形成的四分体为直线型或T型排列,合点端的大孢子发育成为功能大孢子,其余3个大孢子则退化,表明胚囊发育方式为单孢子发生的蓼型胚囊。观察到每个雄花花药多数,花粉囊呈蝶形,每侧有2个小孢子囊。花药壁由外到内分别为表皮、药室内壁、中层和绒毡层,其中绒毡层为变形绒毡层类型。在小孢子形成时,胞质分裂属于连续型,小孢子排列成十字形的四分体,成熟花粉则为二胞花粉粒。  相似文献   

15.
囊果草(Leontice incerta Pall.)为生长于天山北坡荒漠和低山山坡的小檗科(Berberidaceae)多年生早春开花植物,具有较高的观赏价值、饲用价值和生态价值,为探究该物种的有性生殖特征,并为后续进行栽培育种等工作提供理论依据,作者利用光学显微镜和石蜡制片技术,对该物种大/小孢子发生和雌/雄配子体发育进行了观察。结果表明,(1)花药具4室,药壁由5层细胞组成,发育为基本型。药室内壁在发育后期具纤维状加厚现象;腺质型绒毡层具2核或多核现象。(2)小孢子母细胞减数分裂时胞质分裂为同时型;小孢子四分体为四面体型,被胼胝质壁所包围,游离小孢子形成后胼胝质壁逐渐消失。成熟花粉多为2细胞型,偶见3细胞型。(3)雌蕊由1心皮组成,子房1室,倒生胚珠,具双珠被,厚珠心。大孢子四分体呈线形排列,最终发育为7细胞8核的蓼型胚囊,助细胞具发达的漏斗形丝状器。这些特点说明,囊果草大/小孢子发生和雌/雄配子体发育正常,未见败育现象,表现出较原始的发育特征。研究结果丰富了小檗科植物的胚胎学资料,为该物种及其近缘物种的生殖生物学研究积累了理论基础。  相似文献   

16.
In this study anther wall, meiosis, sporogenesis and the development of female gametophytes of Bellevalia edirnensis were examined cytologically and histologically. The young anther wall consists of an epidermis, a single layered fibrous endothecium, 1-2 middle layers which disappear early, and a single-layered tapetum. In the glandular tapetum; normal mitosis, the "sticky" type of division and secondary nucleus divisions were observed. In most microspore mother cells the course of meiosis is regular. In some cells irregularities were observed including chromosome bridges and univalents. Cytokinesis is of the successive type and the tetrads are isobilateral. The ovules are anatrapous, bitegmic and crassinucellate. The micropyle is formed by the inner integument. The female archesporium is unicelled and directly functions as the megaspore mother cell. The female gametophyte formed by the functioning chalazal megaspore is monosporic, of the Polygonum type.  相似文献   

17.
The pathways of micro- and megagametophyte development in Agave fourcroydes (henequén) and A. angustifolia were studied. We used histology and light microscopy to observe anther ontogeny and ovary differentiation in relation to flower bud size. Both species have the same sexual reproductive strategies and gametophyte development that may be divided into three phases: (1) premeiotic, which includes the establishment of the megaspore mother cell and the pollen mother cell; (2) meiotic, the formation of mature microspores and functional megaspores; (3) postmeiotic, which encompasses the development of mature pollen grains and the formation of the embryo sac. A successive type microsporogenesis was found in both species with formation of T-shaped tetrads and binuclear pollen grains. In vitro germination tests revealed very low pollen fertility. The female gametophyte is formed from two micropylar megaspore cells after the first meiotic division (bisporic type). Male and female gametogenesis occur asynchronously with microsporogenesis finishing before macrosporogenesis. The results so far show that the formation of male and female gametophytes in henequén is affected at different stages and that these alterations might be responsible for the low fertility shown by this species.  相似文献   

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