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991.
利用Red重组系统构建了大肠杆菌JM109甘油激酶基因(glpK)和甘油脱氢酶基因(gldA)缺失的双突变菌株JM109B,然后将表达酿酒酵母3-磷酸甘油脱氢酶基因(GPD1)和3-磷酸甘油酯酶基因(HOR2)的质粒pSE-gpd1-hor2转化到JM109B突变菌株中,在含1%葡萄糖的摇瓶发酵培养基中37℃发酵24 h,甘油的最高产量为5.61 g/L,是原始菌株JM109/pSE-gpd1-hor2甘油产量的1.59倍;在30 L发酵罐中发酵28 h,甘油的最高产量为103.12 g/L,是原始菌株JM109/pSE-gpd1-hor2甘油产量的1.59倍,是原始菌株BL21/pSE-gpd1-hor2甘油产量的1.41倍,葡萄糖转化率为50.39%。 相似文献
992.
993.
Although male age has often been found to predict success in gaining extra‐pair paternity, it is unclear whether this gain is associated with an individual’s success in avoiding cuckoldry. We examined the relationship between male age and both within‐ and extra‐pair paternity in passerines using a meta‐analytical approach. There was a positive correlation between male age and success in extra‐pair paternity but little evidence for an association between male age and within‐pair paternity. In addition, effect sizes for male within‐pair paternity and male extra‐pair paternity were not significantly correlated. Thus, factors that predict success in obtaining extra‐pair paternity, such as male age, may not necessarily predict success in avoiding cuckoldry. 相似文献
994.
The homologous sequences of human or mouse SOX1, SOX4 and SOX11 , and one novel Sox gene (named Ccf-SoxN ) were identified in the genome of channel catfish Ictalurus punctatus . Identification of these genes is a potential step in understanding development regulations including sex determination in channel catfish. 相似文献
995.
996.
997.
Wounding induces resistance to pathogens with different lifestyles in tomato: role of ethylene in cross-protection 总被引:1,自引:0,他引:1
Francia D Demaria D Calderini O Ferraris L Valentino D Arcioni S Tamietti G Cardinale F 《Plant, cell & environment》2007,30(11):1357-1365
Many reports point to the existence of a network of regulatory signalling occurring in plants during the interaction with micro-organisms (biotic stress) and abiotic stresses such as wounding. However, the focus is on shared intermediates/components and/or common molecular outputs in differently triggered signalling pathways, and not on the degree and modes of effective influence between abiotic and biotic stresses nor the range of true plant-pathogen interactions open to such influence. We report on local and systemic wound-induced protection in tomato (Solanum lycopersicum L.) to four pathogens with a range of lifestyles (Botrytis cinerea, Fusarium oxysporum f.sp. lycopersici, Phytophthora capsici and Pseudomonas syringae pv. tomato). The role of ethylene (ET) in the phenomenon and in the induction by wounding of several markers of defense was investigated by using the never-ripe tomato mutant plants impaired in ET perception. We showed that PINIIb, PR1b, PR5, PR7 and peroxidase (POD) are influenced locally and/or systemically by wounding and, with the exception of POD activity, by ET perception. We also demonstrated that ET, although not essential, is positively (B. cinerea, P. capsici) or negatively (F. oxysporum, P. syringae pv. tomato) involved not only in basal but also in wound-induced resistance to each pathogen. 相似文献
998.
Velamakanni S Wei SL Janvilisri T van Veen HW 《Journal of bioenergetics and biomembranes》2007,39(5-6):465-471
The ATP-binding cassette (ABC) transporter superfamily is one of the largest protein families with representatives in all
kingdoms of life. Members of this superfamily are involved in a wide variety of transport processes with substrates ranging
from small ions to relatively large polypeptides and polysaccharides. The G subfamily of ABC transporters consists of half-transporters,
which oligomerise to form the functional transporter. While ABCG1, ABCG4 and ABCG5/8 are involved in the ATP-dependent translocation
of steroids and, possibly, other lipids, ABCG2 (also termed the breast cancer resistance protein) has been identified as a
multidrug transporter that confers resistance on tumor cells. Evidence will be summarized suggesting that ABCG2 can also mediate
the binding/transport of non-drug substrates, including free and conjugated steroids. The characterization of the substrate
specificities of ABCG proteins at a molecular level might provide further clues about their potential physiological role(s),
and create new opportunities for the modulation of their activities in relation to human disease. 相似文献
999.
1000.
Nozoye T Inoue H Takahashi M Ishimaru Y Nakanishi H Mori S Nishizawa NK 《Plant molecular biology》2007,64(1-2):35-47
To characterize Fe homeostasis during the early stages of seed germination, a microarray analysis was performed. mRNAs extracted
from fully mature seeds or seeds harvested 1–3 days after sowing were hybridized to a rice microarray containing approximately
22,000 cDNA oligo probes. Many Fe deficiency-inducible genes were strongly expressed throughout early seed germination. These
results suggest that the demand for Fe is extremely high during germination.
Under Fe-deficient conditions, rice produces and secretes a metal-cation chelator called deoxymugineic acid (DMA) to acquire
Fe from the soil. In addition, DMA and its intermediate nicotianamine (NA) are thought to be involved in long distance Fe
transport in rice. Using promoter-β-glucuronidase (GUS) analysis, we investigated the expression patterns during seed germination
of the Fe deficiency-inducible genes OsNAS1, OsNAS2, OsNAS3, OsNAAT1, and OsDMAS1, which encode enzymes that participate in the biosynthesis of DMA, and the transporter genes OsYSL2 and OsIRT1, which are involved in Fe transport. All of these genes were expressed in germinating seeds prior to protrusion of the radicle.
These results suggest that DMA and NA are produced and involved in Fe transport during germination.
Electronic supplementary material The online version of this article (doi:) contains supplementary material, which is available to authorized users. 相似文献