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1.
硬粒小麦单倍体原生质体培养及植株再生   总被引:4,自引:1,他引:3  
由硬粒小麦(Triticum durum Desf.)×玉米(Zea maysL.)建立的单倍性胚性愈伤组织,在继代培养4 个月后置于含2.0 m g/L2,4-D、3% 蔗糖、200 m g/L水解酪蛋白、146 m g/L谷氨酰胺和300 m g/L天冬氨酸的MS液体培养基中进行悬浮培养,4 个月后形成了生长迅速、由大小不同(0.5 ~5 m m )的愈伤组织块组成的愈伤组织悬浮系。酶解试验表明,2.0% 纤维素酶RS和0.5% 的离析酶效果最好,而液体悬浮培养物和固体培养的愈伤组织(在酶解时用锋利的解剖刀片切成1 m m 左右的小块)都能释放出大量原生质体,但悬浮培养物释放出的原生质体状态较好,胞质更浓厚,用KM8p 培养基以琼脂糖包埋培养方式培养时分裂频率可达5% 左右。由原生质体再生的小愈伤组织经增殖、筛选后可获得胚性愈伤组织,将其转移至分化培养基Ⅰ(0.2 m g/L 2,4-D、1.0 m g/L BAP、0.1 m g/LNAA、3% 蔗糖、200 m g/L 水解酪蛋白、146 m g/L谷氨酰胺和300 m g/L天冬氨酸的MS固体培养基)和Ⅱ(不含2,4-D,其它成分同Ⅰ)上进行分步分化培养可再生出完整植株,分化频率约为20%  相似文献   

2.
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   

3.
杨树新品种叶肉原生质体培养和植株再生   总被引:4,自引:1,他引:3  
从1 个月龄的NL-80106 杨(Populusdeltoides×P. sim onii)无菌苗叶片分离得到大量原生质体,纯化后其原生质体产量为4×107/g fr.w t. 纯化的原生质体在含2,4-D 2 m g/L、NAA 0.5 m g/L和KT 0.5 m g/L的KM8p 和MS培养基中进行高密度液体浅层培养,渗透势为0.40 m ol/L的KM8p 培养基中原生质体分裂频率最高. 培养第5 天观察到第一次细胞分裂,培养10 d 的分裂频率为4.5% ,12 周内可形成大量的细胞团和小愈伤组织. NL-80106杨叶肉原生质体在富含有机氮并以葡萄糖为碳源的培养基中具有较高的分裂频率和植板率.小愈伤组织在gelrite 固化的NLZ1 培养基上增殖生长,3 周后形成4—6 m m 结构紧密的鲜红色愈伤组织,转至NLF分化培养基,分化成苗率为100% . 待芽伸长到3 cm 时,从基部切下转至1/2 MS培养基上诱导生根,形成完整植株  相似文献   

4.
菜心下胚轴原生质体培养和植株再生   总被引:6,自引:0,他引:6  
以萌发3—4 天(长约4 cm )的菜心(Brassica campestris var.parachinesis)无菌苗苍白下胚轴为材料,酶解分离原生质体。经纯化的原生质体,在含0.5 m g/LZT、0.5 m g/L2,4-D、1.0 m g/LNAA 和0.4 m ol/L葡萄糖的K8p 培养基中,进行微滴培养。在起始培养14—18小时,原生质体再生新的细胞壁。36 小时再生细胞开始第一次分裂。第三天分裂细胞频率可达35% 。培养第8—9 天,可见含8—16个细胞的小细胞团,植板率为15% —18% 。3 周后将发育成直径为2 m m 的白色小愈伤组织,转到含0.3 m g/L 2,4-D并用gelrite半固化的培养基上,增殖成4—5 m m 直径的愈伤组织。在MS+ 3.2(或1.6) m g/L BA+ 1.6(或0.8) m g/LZT+ 0.01 m g/L NAA+ 0.1 m g/LGA3 和0.2% 蔗糖的分化培养基上,获得芽的分化。切下约2 cm 长的芽苗,转移到含0.2 m g/LIAA 和2% 蔗糖的培养基上,生根形成完整植株  相似文献   

5.
苹果原生质体培养及植株再生   总被引:20,自引:0,他引:20  
用苹果(Malus pum ila Mill)胚珠诱导愈伤组织并建立悬浮细胞系。用2% 纤维素酶、0.5% 果胶酶的混合酶液分离悬浮培养物,可得到5.4×106 个/g fr. w t有活性的原生质体。这些原生质体在改良的MS、K8p、D2 培养基中均可发育成细胞团,在含2.0 m g/LIAA、2.0m g/LNAA、0.1 m g/LBA 的MS固体培养基上形成愈伤组织,更换几次不同的培养基后,在分化培养基上分化出不定芽,在生根培养基上生根形成完整植株。  相似文献   

6.
石斛离体培养中ABA对诱导花芽形成的影响   总被引:25,自引:0,他引:25  
由兰科植物铁皮石斛(Dendrobium candidum Wall.ex Lindl.)种子诱导形成的愈伤组织,在光照下置于MS附加0.3 m g/LNAA 的培养基上繁殖,可以形成原球茎。将原球茎转入MS含2 m g/L 6-BA 和0.5 m g/LNAA 的培养基上,花芽形成频率为27.0% 。原球茎先在0.5 m g/LABA的培养基上预培养15 d,再转入含2 m g/L6-BA 的MS培养基上培养,花芽形成频率明显提高,可达84.4% ,而且每株植株花的数目增加;但是在仅有ABA 的MS培养基上培养的原球茎再生的植株未见花芽形成  相似文献   

7.
大叶紫花苜蓿愈伤组织原生质体再生植株   总被引:15,自引:0,他引:15  
大叶紫花苜蓿下胚轴诱导的愈伤组织在继代培养基上生长快速,易于分散。继代第12d的愈伤组织原生质体的得率为6.5×107/g鲜重。原生质体培养基为SH基本培养基,含有1.0mg/L2,4-0、0.5mg/LBA、2.0g/LCH、2%蔗糖、6%葡萄糖、5mmol/LMES,培养密度为1.0×105/mL。培养至第12d时的原生质体再生细胞植板率为3.7%。由原生质体形成的小愈伤组织在含2.0mg/L2,4-D的MS固体培养基上大量增殖。增殖的愈伤组织转移至2.0mg/L2-ip+0.1mg/LNAA的B5培养基上,形成体细胞胚并发育成完整植株。  相似文献   

8.
虎头、克4和Favorita3个马铃薯品种的根、茎、叶外植体在附加NAA和BA各1mg/L的MS培养基上诱导出愈伤组织。在附加0.2mg/LNAA和1mg/LBA的MS培养荐,愈伤组织上分化产生不定芽。1.5-2.5cm高的不定芽在MS+0.05mg/LNAA培养基上生根形成再生完整植株。3个马铃薯品种中,虎头茎的愈伤组织诱导频率最高,达98%。Favorita叶愈伤组织的不定芽分化频率和不定芽生  相似文献   

9.
从甘蔗(Saccharum officinarum L.)嫩叶外植体诱导愈伤组织,经继代培养后,挑选胚性愈伤组织,转入MS3 液体培养基,进行悬浮培养。当培养物分离出小粒状的细胞团,细胞变得小而圆时,用于分离原生质体。原生质体以琼脂糖固化的培养方式培养于MRP1 培养基中。由原生质体再生的愈伤组织有两种类型。挑选粒状、坚实的再生愈伤组织转移到N6 分化培养基上,“新台糖1 号”再生的愈伤组织,在含有KT 0.5 m g/L的培养基中,分化出绿芽并长成完整的植株。而“粤糖57-423”和“US66-56-9”再生的愈伤组织,在加有0.1% 的活性炭的培养基中,前者分化出白化苗,后者分化出根  相似文献   

10.
在1/3海水培养基上筛选豆瓣菜耐盐变异体   总被引:6,自引:1,他引:6  
系统地研究了豆瓣菜(NasturtiumofficainaleR.Br)茎段外植体对6-BA,NAA和2,4-D的反应,确定了MS培养基附加6-BA2.0mg/L,2,4-D0.2mg/L为豆瓣菜愈伤组织诱导,继代培养基;MS培养基附加6-BA4.0mg/L为芽再生培养基;MS基本培养基为植株的生根的扦插繁殖培养基,将325个豆瓣菜茎切段外植体接种到含1/3海水的愈伤组织诱导培养基上,17块外植体  相似文献   

11.
Newly extended leaves of in vitro seedling of Actinidia eriantha Benth. were used for protoplast isolation. Protoplasts were cultured in liquid MS medium (devoid of NH4NO3) supplemented with 1.0 mg/L 2, 4-D and 0.4 mol/L glucose. The plating efficiency after 3 weeks of culture was about 19.4 %. Protoplasts-derived cells divided sustainably and developed into calli of 2 mm in size in the original protoplast-culture-medium without adding fresh medium so to decrease the osmotic pressure. These calli regenerated shoots when being transfered to MS medium with 0. 5 mg/L zeatin and 0. 1 mg/L IAA. Regenerated shoots were rooted by immersion in 20 ppm IBA solution before culturing on half-strength MS medium devoid of growth regulators.  相似文献   

12.
利用茎用芥菜细胞质雄性不育系原生质体培养获得了再生植株,并研究了影响原生质体培养的因素.结果表明,子叶是茎用芥菜原生质体培养最佳的外植体,10 d苗龄的子叶原生质体在改良MS培养基上培养3 d后发生第1次细胞分裂,6 d后发生第2次分裂,3周后形成细胞团,5周后形成肉眼可见的小愈伤.培养基中缺少NAA或2,4-D都会降低愈伤组织的再生能力.在含一定浓度的NAA(0.25 mg/L)和2,4-D(0.25 mg/L)培养基上诱导的愈伤组织质地致密且有光泽,芽的分化能力高;在MS+BA l mg/L+NAA 0.2 mg/L的培养基上芽的分化频率高达近29%,再生芽在1/2MS+NAA0.1 mg/L培养基上生根,形成完整植株.  相似文献   

13.
利用茎用芥菜细胞质雄性不育系原生质体培养获得了再生植株,并研究了影响原生质体培养的因素.结果表明,子叶是茎用芥菜原生质体培养最佳的外植体,10 d苗龄的子叶原生质体在改良MS培养基上培养3 d后发生第1次细胞分裂,6 d后发生第2次分裂,3周后形成细胞团,5周后形成肉眼可见的小愈伤.培养基中缺少NAA或2,4-D都会降低愈伤组织的再生能力.在含一定浓度的NAA(0.25 mg/L)和2,4-D(0.25 mg/L)培养基上诱导的愈伤组织质地致密且有光泽,芽的分化能力高;在MS+BA l mg/L+NAA 0.2 mg/L的培养基上芽的分化频率高达近29%,再生芽在1/2MS+NAA0.1 mg/L培养基上生根,形成完整植株.  相似文献   

14.
Protoplasts were isolated and cultured from hypocotyl embryogenic callus tissue of Gossypium hirsutum L. cv. "Lumian 6". The highest yields of viable protoplasts were obtained from a vigorous embryogenic callus 7 to 9 d old subcultured on MS medium supplemented with 2 mg/L IAA and 1 mg/L KT using a solution of 1% cellulase Onozuka R-10, 1% pectinase, 0.7 mmol/L KH2PO4, 2.5 mmol/L Ca2+ , and 0.5 mol/L osmoticum (mannitol), at pH 5.8 and at a temperature of 30 ℃. After separation and purification (in 21% sucrose floatation medium), the protoplasts were laid up in a quiet liquid protoplast culture medium containing K3 salts, NT vitamins with 0.1 mg/L 2,4-D, 0.2 mg/L KT and 0.45 mol/L glucose for 10 to 15 min. The protoplasts were fractioned into an upper and a lower layer in the centrifugal tube. Most of the protoplasts in the lower layer were smaller, round and rich in cytoplasts in which contain many granular substances. When this kind of protoplasts were cultured in the thin liquid protoplast culture medium with a density of 1 x l0s to 5 x los protoplasts/mL, the division and the callus formation of the regenerated cells were easily observed. The first divisions occurred in 3 days and small cell clusters could be seen after 2 to 3 weeks in the culture. At this moment, the addition of the protoplast culture medium with decreased osmoticum once or twice is needed for the continuous protoplasts division to form calli. Regenerated calli, 3 to 5 mm in diameter, were transferred in succession on MS medium with 2 mg/L IAA and 1 mg/L KT for the initiation of embryogenesis. The embryoids germinated on the hormonefree MS medium and a number of plantlets were obtained. It seems that using vigorous embryogenic callus and decreasing osmoticum are the two critical factors for plant regeneration of cotton protoplasts.  相似文献   

15.
Immature cotyledons of cowpea (Vigna sinensis Endlo) were used for protoplast isolation. Enzyme solution for protoplast isolation contained 40% cellulase Onozuka R-10,0.30% Macerozyme R-10 and 2% hemicellulase. The purified protoplasts were cultured in Bs,MS or KM8p liquid medium in dark (25℃) at a density of 1 × 105–5 × 105/ml. The protoplasts started cell division in 3–5 days . Sustained cell divisions resulted ill formation of cell clusters and small calli,with cell division frequency reaching 23%–28% in MS medium . Calli of 2 mm in size were transferred onto MSB (MS salts+B5 vitamins) medium with 2 mg/L 2,4-D, 0. 5mg /L BA forfurther growth. Embryogenic calli appeared on this medium. After passage to fresh medium with the same composition, the embryogenic calli were transferred into MSB liquid medium to establish suspension culture. When the suspended calli were transferred back onto MSB agar medium with 0. 1 mg /L IAA, 0.5mg/L KT, 5% mannitol (cultured in light,2000 lx,12h/d), a lot of adventitious roots formed in 7–10 days, and then somatic embryos formed from the protoplast derived calli. But only a few embryoids developed further into the cotyledonary stage ,and the others died at globular, heart-shaped, or torpeto stage . Finally, some cotyledonary embryoids germinated and developed into plantlets or shoots with leaves.  相似文献   

16.
本文研究了中国木薯栽培种四种外植体通过器官发生再生植株的条件。结果表明:在MS附加0.05mg/L TIBA,1mg/L BA的培养基上“NZ 188”初步的萌发胚状体“切头”后切口处可直接产生丛芽,出芽率为43%。“SC201”胚状体子叶块在MS附加0.5 mg/L NAA,0.5mg/L BA的培养基上可直接出芽,出芽率为42%,在MS附加0.5mg/L IBA,1.5mg/L BA培养基上·出芽率为31%,AgNO_3和ABA单独使用或配合使用均不利于芽的再生。“NZ188”胚状体下胚轴在MS附加0.5mg/LNAA,0.5mg/L BA的培养基上形成的愈伤组织转入MS附加1mg/L NAA,2mg/L BA的培养基上,3周后大多数愈伤组织有绿点出现、仅4.4%外植体分化出芽。“HZ188”无菌苗茎段接种在MS附加0.05mg/L TIBA,2mg/LBA的固体培养基上,2周后形成大量愈伤组织,4周后仅见一块愈伤组织分化出芽。  相似文献   

17.
光棘豆悬浮细胞原生质体培养再生小植株(简报)   总被引:1,自引:0,他引:1  
迄今为止,药用植物原生质体培养再生植株的报道还不多。光棘豆(Oxytropis leptophylla)是多年生豆科植物,可饲用,是一种常用的野生中草药。全株入药有清热解毒功能,用于治疗痈疤肿毒。已有研究表明,光棘豆具有离体培养时愈伤组织增殖快、植株再生频率高的特点。进行原生质体培养再生植株的研究将有助于光棘豆的改良和驯化,为其开发利用提供基础。本文首次报道了光棘豆悬浮细胞原生质培养再生小植株的结果。  相似文献   

18.
Embryogenic cell line was established from hypocotyl segments of Codonopsis pilosula (Franch.)Nannf. 4--8 day old embryogenic callus was used to isolate protoplasts in an enzyme solution containing 1.5 % cellulase Onozuka R-10 and 3 % pectinase. Protoplasts were cultured in MS,C81V,DPD and KMSp basal medium supplemented with 1.2 mg/L 2,4-D, 0.2 mg/L NAA, 0. 2 mg/L BAP, 0. 1 mg/L ZT,and different combinations of glucose and mannitol . Protoplast-derived cells underwent sustained divisions in KM8p medium. As an osmoticum, glucose was more beneficial to protoplast division. A combination of 0. 30 mol/L glucose with 0.10 mol/L mannitol gave the best result. Under proper conditions , protoplasts underwent the first division on the 3rd day of culture,formed colonies within 30 days , and developed into microcalli in 6 weeks. Plantlets were regenerated from protoplast-derived calli through somatic embryogenesis. 0.2 % activated charcoal promoted embryoid formation and root development.  相似文献   

19.
Calll with many embryogenic cell colonies were produced from segments of seedlling of Peucedanum terebinthaceum (Fisch.) Fisch. ex Turcz. which were cultured on the 1/2MS agar medium (with half quantity of macronutrients) containing 1 mg/l 2,4-D. Cell suspension culture with high percentage of embryogenic cell colonies was established from the calli shaking in liquid medium. The cell suspension culture was used for protoplast preparation. Protoplasts were obtained with the enzyme mixture containing 1.5% Onozuka R-10, 0.3% Macerozyme R-10, 0.5% Snailase, 5 mmol/l CeCl2, 1 mmol/l KH2PO4, 0.6 mol/l mannital at pH 5.8 and 25℃. Cultured in a modified MS liquid medium containing 1 mg/l 2,4-D+ 0.5 mg/l zeatin, the protoplasts emered division after four days, and formed cell colonies of 0.5–1mm after about forty days. When transfered to 1/2 MS liquid medium supplemented with zeatin (0.5 mg/l), the cell colonies differentiated in to embryoids, then developed into plantlets with many green leaves and roots on the 1/2 MS agar medium devoid of phytohormones.  相似文献   

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