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本文以圆紫菜的绿色突变体(LT)和红色突变体(HT)进行杂交实验,证实了圆紫菜减数分裂发生的时期,并观察了圆紫菜的早期发育和形态建成过程。杂交F1叶状体中,出现了2种亲本色和2种重组色,它们分别为绿色(G,母本色)、红色(R,父本色)、野生色(W)和黄褐色(Y)。4种颜色在F1叶状体中形成了大量由2—4个色块组成的颜色嵌合体,色块出现了分离并呈线性排列。F1叶状体中嵌合体所占比例为82.9%,其中两嵌合最多,三嵌合次之,四嵌合最少。4种颜色在嵌合体的分离比为1G:0.97R:0.88W:0.69Y。上述结果证实圆紫菜的减数分裂发生在壳孢子萌发初期。减数分裂产生的四分子呈线形排列,随后继续发育成叶状体,叶状体发育至7—9个细胞时进行第一次纵向分裂,叶状体形态变宽。随后,圆紫菜梢部开始大量形成和放散单孢子,最终导致圆紫菜的形状为圆形或肾脏形。 相似文献
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Expression of Mammalian Metallothionein-I Gene in Cyanobacteria to Enhance Heavy Metal Resistance 总被引:2,自引:0,他引:2
Metallothionein (MT) from mammals is a low molecular weight (about 6–7 KD), and cystein-rich (20 cystein per molecular) protein (Vallee, 1991). So MT has the strong binding ability of metal such as Cd, Hg and Pd. Wild-typed cyanobacteria have their own metallothionein-like proteins, which are of low cysteine content and have weak ability to bind heavy metal. Therefore, it is imperative to transfer the MT-I gene from mammal into cyanobacteria cell for the absorption and accumulation of heavy metals in aqueous system including marine and lake ( Misra and Gedamu, 1989). We inserted the MT-I cDNA gene after the strong promoter PpsbA or Psmt into the intermediary vector pRL-439, and then pRL-MT was ligated with shuttle vector pKT-210 (a shuttle vector pDC-08 was used at an earlier time) to construct the shuttle expression vector pKT-MT. (The MT-I mutant -KKS- also was selected as aim gene.) Then the constructed vector was introduced into cyanobacterium Anabaena sp. PCC7120, Synechocystis sp. PCC6803 and Synechococcus sp. PCC7942 with triparental conjunctive transfer (Bryant, 1994). The expression efficiency is about 1%. We also used homologous recombination vector pTZ18-8 to introduce MT-I cDNA into chromosomes in cyanobacteria and got higher expression efficiency. Metal tolerance tests show that the transgenic cyanobacteria acquire metal resistance up to 60 μmol/g CdCl2 and expression efficiency up to 1045 μg MT/g fresh cells according to the data of ELISA. 相似文献
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Free-living conchocelis ofPorphyra yezoensis Ueda (Bangiales, Rhodophyta) were treated with60Co-γ rays of different doses (ranging from 100 Gy to 1000 Gy) to induce mutation. Most of the conchocelis maintained the capability
of penetrating into shells, growing and forming colonies in shells, but their vitality was seriously impaired by the irradiation
of γ-rays. A few conchocelis pigments were mutagenized directly into different color pigment mutants whose progeny-conchospores
and foliose thalli had the same colors. However, some irradiated conchocelis did not show the change in color at the conchocelis
stage. The pigment mutation could be observed only after the conchospores of these conchocelis had germinated into young foliose
thalli. Irradiation of low dose (100 Gy) promoted the growth of thallus and many with altered morphology were observed. Conchospores
of the irradiated conchocelis attached to the culture nets were cultured in the sea, and growth of these progenies was observed
and measured. 相似文献
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环状芽胞杆菌(Bacillus circulans)菌株FA13在M2培养基中的发酵无细胞上清液对寄生曲霉(Aspergillus parasiticus)突变菌株NFRI-95菌丝生长和黄曲霉毒素的产生表现出明显的抑制作用。为了最大限度地提高活性物质的产量,本研究对从南大西洋深海沉积物中分离到的环状芽胞杆菌菌株FA13的发酵条件进行了均匀设计发酵优化。优化后,菌株FA13的发酵液10倍稀释液对寄生曲霉突变菌株NFRI-95的菌丝生长抑制率从10.98%提高到70.57%,黄曲霉毒素产生抑制率从41.43%提高到100.00%;对应的发酵条件为发酵温度38.70 ℃,接种量6.00%,海水体积占比0.00%,培养基pH 8.71,培养时间6 d。 相似文献
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采用紫外线辐射的方法对巴氏杜氏藻(Dunaliella bardawil)进行诱变.经过低温(5±1℃)筛选,得到一耐低温的突变株,命名为Dunaliella bardawilvar.L-5 Zhou&Liu(简称L-5).研究表明,在5±1℃光照培养箱中光强1 100 lx培养57 d,L-5仍继续处于对数生长期,而对照组早已进入生长平衡期,此时L-5藻细胞密度为对照的2.59倍.蛋白质SDS-PAGE电泳表明,在大约36和158 kDa处L-5比对照各多出一条新的蛋白带,同时在大约27和29 kDa处L-5出现比对照高得多的两条蛋白表达带.RAPD分析表明两者的遗传相似系数为0.768.由此作者初步认为L-5确为一耐低温的杜氏藻突变株. 相似文献
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从舟山海域潮间带海泥筛选到产碱性蛋白酶的海洋放线菌,利用Folin-酚法进行酶活测定,选取酶活最高的菌株进行鉴定,绘制系统进化树。再通过紫外线和DES诱变从而得到高产碱性蛋白酶的海洋放线菌菌株,并进行初步的发酵条件研究。结果表明:分离筛选得到2株菌株,在脱脂奶筛选平板上能产生较大的水解透明圈,通过Folin-酚法进行酶活测定,挑选出酶活较高的菌株A20(初始酶活为104.7U/mL),生理生化试验和16S rDNA试验结果显示该菌株为Streptomyces roseus。对菌株A20进行紫外线和硫酸二乙酯(DES)诱变,最终得到高产碱性蛋白酶的菌株,酶活为227.5U/mL,酶活提高117.3%,传代试验显示该菌株具有较好的遗传稳定性。单因素试验显示最适发酵温度为50°C、pH值为9.0、培养时间为72h。 相似文献
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