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1.
本工作研究了豆科植物紫云英的叶片及叶肉原生质体的培养。叶片培养实验表明,诱导愈伤组织的最适培养基为MS加1.0-2.0毫克/升2,4-D和0.25毫克/升KT;诱导根分化需加1.0—5.0毫克/升NAA和0.5毫克/升BA;而苗分化则以0—0.5毫克/升IAA和0.5毫克/升BA为好。高浓度的NAA有利于根分化而抑制茎芽形成;高浓度的IAA对根和芽分化都有抑制作用。叶肉原生质体分离和培养试验表明,紫云英叶肉原生质体的释放及其培养活力受叶龄、植株生理状态和酶浓度的影响。叶肉原生质体在改良的KM8P培养基中能分裂。用改良KM8细胞培养基定期稀释,可使分裂持续进行而得到细胞团。BA和2,4-D为诱导紫云英叶肉原生质体分裂所必需。其最佳组合激素为BA 0.21毫克/升和2,4-D 1.13毫克/升。葡萄糖作为渗透压稳定剂时,其浓度明显影响原生质体的存活率。弱光条件下培养比黑暗培养有利于叶肉原生质体分裂。由叶肉原生质体形成的愈伤组织能形成瘤状结构和根。  相似文献   

2.
从龙葵叶肉细胞原生质体再生植株   总被引:1,自引:0,他引:1  
用自制的纤维素酶从龙葵(Solanum nigrum L.)叶肉细胞制备了大量有活力的原生质体。用悬滴和浅层培养法,龙葵原生质体生长、分裂、形成愈伤组织,并再生成完整的植株。比较了在 NT 培养基中不同肌醇含量对原生质体的影响;每升培养基中加250毫克的肌醇能促进龙葵叶肉原生质体的生长和分裂。  相似文献   

3.
细叶黄芪叶肉原生质体植株再生   总被引:1,自引:0,他引:1  
从细叶黄芪(Astragalus tenuis)外植体愈伤组织分化出的再生苗叶片分离原生质体。原生质体培养在改良 K8p 培养基中形成了愈伤组织。增殖后的愈伤组织转入分化培养基中分化出苗。幼苗在生根培养基中长出不定根,再生成为完整植株。再生苗叶肉原生质体在 AY培养基中,种子无菌苗叶肉原生质体在改良 K8p 或 AY 培养基中均不能形成愈伤组织。较低的2,4-D 浓度有利于原生质体愈伤组织的形成和分化,过高的2,4-D 浓度对愈伤组织的形成和分化有不利的影响。  相似文献   

4.
以马铃薯抗青枯病二倍体材料ED13和CE171、炸片颜色好的二倍体材料HS66以及优良性状双单体材料DH401和DH405为供体材料,对马铃薯叶肉原生质体培养进行研究。叶片悬浮黑暗预处理和试管苗黑暗预处理两种预处理方式对原生质体活力无显著影响。以0.5 mol/L甘露醇为渗透调节剂,25℃酶解12 h条件下,适宜CE171和DH401纤维酶浓度略高于ED13、HS66和DH405,分别为0.3%和0.4%。ED13和DH401原生质体在VKM液体培养基中培养3~4周,经愈伤组织生长培养基培养2周,转至芽诱导培养基培养,2~3个月后形成具根茎叶的完整植株。HS66和CE171原生质体培养6~8周也能形3~4 mm愈伤组织,但没有分化出芽;DH405的原生质体不分裂。  相似文献   

5.
应用自制的纤维素酶从三个烟草品种的叶肉组织获得大量完整的有活力的原生质体,阐述了影响原生质体活力的某些因素。详细叙述了烟草原生质体的培养过程和方法,由于培养技术的改进,试验所用三个烟草品种的叶肉原生质体已经生长分裂形成愈伤组织,并分化成再生植株。此外,观察到“金星”的双倍体与单倍体叶肉原生质体在同一培养基上生长的差异。并对自制纤维素酶与日本纤维素酶(Onozuka)进行了比较。讨论了烟草原生质体从体积增大到细胞分裂形成愈伤组织过程中必须移贴的原因。  相似文献   

6.
用自制的纤维素酶(EA3-867)从花烟草(Nicotiana alata)叶肉细胞制备大量有活力的原生质体。在NT培养基(内含2,4-D2,KT0.25毫克/升)上观察到原生质体长大,分裂,形成愈伤组织。愈伤组织悬浮在含有2,4-D2mg/升的MS培养基上诱导出球形胚,移入MS(BA2,IAA 0.2 mg/l)培养基上出苗。小苗移植土壤中正常生长、开花、结实。  相似文献   

7.
土人参原生质体培养再生植株   总被引:6,自引:1,他引:5  
分别由土人参(Talinum paniculatum (Jaeq.) Gaertn.)组织培养再生苗的叶片和幼茎诱导的愈伤组织游离出原生质体.叶肉原生质体在培养中未能进行正常分裂,存活不过1 周.愈伤组织原生质体在P4 培养基中(K8p+ 2,4-D 0.2 m g/L+ NAA 1.0 m g/L+ ZT 0.5 m g/L+椰乳50 m L/L+ 葡萄糖0.5 m ol/L)培养3 d 开始第一次分裂,培养7 d 时分裂频率为36.7% . 愈伤组织再生率在液体培养中为0.31% ,在双层培养中为0.34% . 愈伤组织在含有较低浓度的6-BA 的分化培养基上分化出不定芽. 幼苗生根后移栽到花盆中继续生长,2~3个月后开花结实,长出粗壮的肉质根. 再生小植株在试管中继代培养2~3 个月开花结实. 研究结果还表明∶(1)愈伤组织在液体培养基或增殖培养基中培养时间过长,或继代次数过多均不利于分化.(2)较低浓度的6-BA (0.5~0.7 m g/L)对愈伤组织的分化是合适的.(3)GA3 对幼苗的发育有促进作用. (4)多效唑(MET)对土人参试管苗有明显的壮苗和壮根作用  相似文献   

8.
基因组对芸苔属作物原生质体培养及植株再生的影响   总被引:5,自引:0,他引:5  
李世君  孟征 《遗传学报》1994,21(3):222-226
本文以包心菜、芜菁油菜、浙油601的无菌苗叶肉原生质体为材料,经不同液体培养基浅层培养,细胞分裂并形成愈伤组织。愈伤组织经增殖后,转到分化培养基上诱导分化,均获得了再生植株。本文着重研究了植物基因组对原生质体分裂频率及植株再生的影响。研究结果表明:(1)植物基因组对原生质体分裂频率的影响随原生质体培养基的不同而异;(2)植物基因组对原生质体再生植株影响显著,芜菁油菜的A基因组不利于原生质体再生植株  相似文献   

9.
小麦原生质体分离过程中生理状态的变化   总被引:7,自引:0,他引:7  
酶解处理使小麦叶肉原生质体膜流动性降低,膜脂过氧化产物丙二醛积累,说明脱壁过程对细胞有伤害作用,损伤位点可能发生在膜上,胚性愈伤组织的具有分裂能力的原生质体,不表现上述变化,酶解脱壁还使超氧化物歧化酶和过氧化氢酶活性上升,过氧化物酶在叶肉原同体中活性下降,过氧化物酶在叶肉原同体中活性下降,在胚性愈伤组织来源的原生质体中活性上升,以上结果表明,在原生质体分离过程中,细胞的生理特性发生了变化;膜损伤的  相似文献   

10.
马铃薯无菌苗叶肉原生质体再生植株   总被引:14,自引:1,他引:13  
商用马铃薯叶肉原生质体,在不同的液体培养基中浅层培养,耳生细胞分裂,并获得愈伤组织。将愈伤组织转到固体培养基上诱导分化,已从克新四号和68—62两个马铃薯品种的原生质体得到再生的完整植株。再生细胞的分裂频率受原生质体培养密度的影响。细胞团的生氏对液体培养基中的蔗糖浓度敏感。不同的原生质体培养基对愈伤组织的分化频率的影响非常显著。在分比培养基中加入3%的甘露醇,能提高愈伤组织的分化频率,并缩短分化期。  相似文献   

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It has now been over twenty years since a novel herpesviral genome was identified in Kaposi's sarcoma biopsies. Since then, the cumulative research effort by molecular biologists, virologists, clinicians, and epidemiologists alike has led to the extensive characterization of this tumor virus, Kaposi's sarcoma-associated herpesvirus(KSHV; also known as human herpesvirus 8(HHV-8)), and its associated diseases. Here we review the current knowledge of KSHV biology and pathogenesis, with a particular emphasis on new and exciting advances in the field of epigenetics. We also discuss the development and practicality of various cell culture and animal model systems to study KSHV replication and pathogenesis.  相似文献   

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Comprises species occurring mostly in subtidal habitats in tropical, subtropical and warm-temperate areas of the world. An analysis of the type species, V. spiralis (Sonder) Lamouroux ex J. Agardh, a species from Australia, establishes basic characters for distinguishing species in the genus. These characters are (1) branching patterns of thalli, (2) flat blades that may be spiralled on their axis, (3) width of the blade, (4) primary or secondary derivation of sterile and fertile branchlets and (5) position of sterile and fertile branchlets on the thalli. Application of the latter two characters provides an important basic method for separation of species into three major groups. Osmundaria , a genus known only in southern Australia, was studied in relation to Vidalia , and its separation from the Vidalia assemblage is not accepted. Species of Vidalia therefore are transferred to the older genus name, Osmundaria. Two new species, Osmundaria papenfussii and Osmundaria oliveae are described from Natal. Confusion in the usage of the epithet, Vidalia fimbriala Brown ex Turner has been clarified, and Vidalia gregaria Falkenberg, described as an epiphyte on Osmundaria pro/ifera Lamouroux, is revealed to be young branches of the host, Osmundaria prolifera.  相似文献   

17.
Fifteen chromosome counts of six Artemisia taxa and one species of each of the genera Brachanthemum, Hippolytia, Kaschgaria, Lepidolopsis and Turaniphytum are reported from Kazakhstan. Three of them are new reports, two are not consistent with previous counts and the remainder are confirmations of very scarce (one to four) earlier records. All the populations studied have the same basic chromosome number, x = 9, with ploidy levels ranging from 2x to 6x. Some correlations between ploidy level, morphological characters and distribution are noted.  相似文献   

18.
肝癌中HBV和HCV基因和抗原的分布及意义   总被引:1,自引:0,他引:1  
采用原位分子杂交方法检测HCV RNA及HBV X基因;采用免疫组织化学方法研究HCV核心抗原,非结构区C33c抗原及HBxAg在肝细胞肝癌中的定位及分布.结果表明(1)HCV RNA、HBV X基因在肝细胞肝癌组织检出率分别为40%(55/136)和82%(112/136).HCV RNA定位于癌细胞的胞浆内,阳性细胞呈散在、灶状及弥漫分布三种形式;HBV X基因在肝癌细胞中的分布呈胞浆型、核型及核浆型,阳性细胞也呈上述三种分布形式;(2)HCV C33c抗原、核心抗原在肝细胞肝癌中的阳性率为81%(133/164)及86%(141/164).C33c抗原定位于癌细胞及肝细胞的胞浆内;核心抗原既定位于癌细胞核中,又可定位于胞浆中.C33c抗原阳性细胞以灶状分布为主;而核心抗原阳性细  相似文献   

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For a plant selection model with frequency-independent viabilities, fertilities and selfing rates, it is shown that apart from global fixation, for certain parameter combinations a protected polymorphism and facultative fixation (either allele may become fixed according to initial frequencies) may both occur. Facultative fixation requires different selling rates for the dominant and recessive type. Protection of the polymorphism requires resource allocation for male and female function. In this connection the problem of purely genetically caused population extinction is discussed.
For general frequency dependence and regular segregation, the chances for establishment of a completely recessive gene are compared to those of a completely dominant gene. It is proven that the process of establishment of the recessive gene, despite a fitness advantage, may be considerably endangered by drift effects if random mating prevails. The recessive gene may reach the same effectivity in establishment as a dominant gene, only if the recessive homozygote mates exclusively with its own type during the period of establishment.  相似文献   

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