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991.
Efficient syntheses of statine and its analogues have been attained from aziridine diols 3 and ent-3, which were prepared via iodocyclization of trichloroacetimidates of chiral 3-buten-1,2-diols 1 and ent-1.  相似文献   
992.
Transverse myelitis (TM) is associated with neuromyelitis optica (NMO) and multiple sclerosis (MS). Early recognition of useful parameters may be helpful to distinguish their difference. This retrospective study analyzed thyroid parameters from 243 serum samples (relapse = 128; remission = 115) of 178 patients with demyelinating diseases (NMO, n = 25; TM, n = 48; MS, n = 105). The relationship between thyroid and clinical parameters was analyzed. Patients with NMO and TM had a higher frequency of abnormal thyroid-stimulating hormone (TSH), anti-thyroglobulin antibodies (TG-Ab), and antithyroid peroxidase antibody (TPO-Ab) than MS patients (p<0.05). The level of TSH and TG-Ab returned to normal levels after administration of high-dose intravenous methylprednisolone (p<0.05). In 96 patients (NMO, n = 19; TM, n = 25; MS, n = 52) without treatment, serum levels of TSH, TG-Ab and TPO-Ab were significantly different between patients with and without myelitis (p<0.01). Patients positive for aquaporin-4 (AQP4) antibodies showed higher abnormalities of TSH (p = 0.001), TG-Ab (p = 0.004) and TPO-Ab (p<0.0001) levels than AQP4 antibodies negative patients. Logistic regression analyses revealed independent relationships between TSH (odds ratio [OR]  = 33.994; p<0.0001), TG-Ab (OR = 7.703; p = 0.017) and myelitis occurrence in 96 patients at the active stage. In 52 MS patients experiencing their first attack, MS patients with myelitis were associated with TSH abnormalities (OR = 42.778; p<0.0001). This study showed increased abnormalities of thyroid parameters in patients with NMO and TM than in MS patients. MS patients with myelitis also had greater TSH abnormality than in MS patients without myelitis. Abnormal TSH and TG-Ab were independently associated with myelitis occurrence in central nervous system demyelinating disorders.  相似文献   
993.
The root-knot nematode (Meloidogyne spp.), which represents a global threat to agricultural production, can cause serious losses in both the yield and quality of many crops. Endophytic bacteria are known to have great potential against Meloidogyne incognita. The colonisation ability of endophytic Bacillus cereus BCM2 in tomato roots and its biological control efficacy of M. incognita were investigated. By the end of the growth period of tomato plants, the population of BCM2 in the rhizosphere soils and roots of the tomato were 5.86 and 3.38 log CFU g?1, respectively, indicating that BCM2 can colonise tomato roots for long periods of time. Pre-inoculation with BCM2 resulted in a significant reduction in the population of M. incognita and the gall index of tomato compared to the untreated control, and there was an increase in the tomato yield of 47.4%. Colony counts showed that the population of BCM2 in tomato roots was affected by soil type and pH, and the colonisation of BCM2 in tomato rhizosphere soils was influenced by soil water and organic matter contents. We observed that the biocontrol effects of BCM2 were best when soil pH was 7. Pre-inoculation with BCM2 can inhibit the formation of tomato galls more effectively when soil water content is 25%, and rich organic matter content was conducive to a reduction in the number of M. incognita second stage juveniles (J2s) in soil. These results demonstrated that B. cereus BCM2 has great potential for controlling M. incognita in tomato plants.  相似文献   
994.
BackgroundSelf-incompatibility (SI) systems prevent self-fertilization in several species of Poaceae, many of which are economically important forage, bioenergy and turf grasses. Self-incompatibility ensures cross-pollination and genetic diversity but restricts the ability to fix useful genetic variation. In most inbred crops it is possible to develop high-performing homozygous parental lines by self-pollination, which then enables the creation of F1 hybrid varieties with higher performance, a phenomenon known as heterosis. The inability to fully exploit heterosis in outcrossing grasses is partially responsible for lower levels of improvement in breeding programmes compared with inbred crops. However, SI can be overcome in forage grasses to create self-compatible populations. This is generating interest in understanding the genetical basis of self-compatibility (SC), its significance for reproductive strategies and its exploitation for crop improvement, especially in the context of F1 hybrid breeding.ScopeWe review the literature on SI and SC in outcrossing grass species. We review the currently available genomic tools and approaches used to discover and characterize novel SC sources. We discuss opportunities barely explored for outcrossing grasses that SC facilitates. Specifically, we discuss strategies for wide SC introgression in the context of the LoliumFestuca complex and the use of SC to develop immortalized mapping populations for the dissection of a wide range of agronomically important traits. The germplasm available is a valuable practical resource and will aid understanding the basis of inbreeding depression and hybrid vigour in key temperate forage grass species.ConclusionsA better understanding of the genetic control of additional SC loci offers new insight into SI systems, their evolutionary origins and their reproductive significance. Heterozygous outcrossing grass species that can be readily selfed facilitate studies of heterosis. Moreover, SC introduction into a range of grass species will enable heterosis to be exploited in innovative ways in genetic improvement programmes.  相似文献   
995.
Co-60 radiation has been broadly used for pest management because it results in male sterility and a lack of emergence of unparasitized hosts due to oxidative damage. Insect life is significantly affected by abiotic stress factors, including Co-60 radiation. In the present study, we determined the influence of Co-60 radiation on an important pest in southern China, the oriental fruit fly Bactrocera dorsalis (Diptera: Tephritidae). We exposed 30-h-old B. dorsalis eggs to Co-60 radiation at doses of (0, 5, 10, 15, 20, 25, 30, 35, and 40?Gy) and determined the activity of the antioxidant enzymes superoxide dismutase (SOD), catalase (CAT), and peroxidase (POX). CAT and POX activity significantly increased in B. dorsalis in the 1st larvae instar after high-intensity radiation doses (25–40?Gy) and played an important role in the antioxidant response to intensive radiation. The activity of POX in B. dorsalis at the 2nd larval instar sharply decreased after different doses of radiation, except for 10 and 40?Gy. Our results demonstrated that Co-60 radiation affected the activity of antioxidant enzymes and disturbed the physiology of B. dorsalis, especially at early stages (the 1st, 2nd larvae instar). These three antioxidant defense enzymes cooperatively play an important role in protecting B. dorsalis from oxidative damage.  相似文献   
996.
Anthropogenic global warming and attendant effects like heatwaves affect the biology and ecology of both individuals and species within and across different trophic levels. Here, we examined the effects of a simulated heatwave on development of and competition between two hyperparasitoid wasps, Lysibia nana and Acrolyta nens when attacking the same host, cocoons of the primary parasitoid, Cotesia glomerata. Parasitized hosts were exposed to three different day and night temperature regimes (low, medium and high) that reflect cool, normal and heatwave conditions in the Netherlands. We found that higher temperatures decreased survival to eclosion more strongly in the hyperparasitoids than in their host. Heatwave conditions also shortened development time and led to the production of smaller adult wasps of both hyperparasitoid species in singly parasitized hosts. In multiparasitized hosts, L. nana won most of the contests when it oviposited first, irrespective of the time interval between the first and second parasitism, whereas A. nens only dominated when it had a 24 h head start or longer. Most importantly, our results show that L. nana in particular benefited in competition at higher temperatures, perhaps due to an increase in the metabolic rate and more rapid egg and/or larval development. This may potentially reduce opportunities for coexistence following heat waves. Our results suggest that heatwaves associated with global warming will enhance the rate of development, but negatively affect survival and other fitness‐related traits in (hyper)parasitoids. Moreover, the outcome of larval competition may be determined via physiological responses that are species‐specific and thus influence phenology.  相似文献   
997.
Muscular dysgenesis in mutant mice is characterised by failure of excitation-contraction (E-C) coupling and consequent loss of skeletal muscle contraction. Contractile activity is restored in vitro by the addition of normal mice cells (11) (18) (7). In the present study we show a new model: contraction and ultrastructural organization of dysgenic myotubes are restored by coculture with Schwann cells from normal mice.  相似文献   
998.
MicroRNAs are a group of endogenous regulators that participate in several cellular physiological processes. However, the role of miR-137 in the osteogenic differentiation of human adipose-derived stem cells (hASCs) has not been reported. This study verified a general downward trend in miR-137 expression during the osteogenic differentiation of hASCs. MiR-137 knockdown promoted the osteogenesis of hASCs in vitro and in vivo. Mechanistically, inhibition of miR-137 activated the bone morphogenetic protein 2 (BMP2)-mothers against the decapentaplegic homolog 4 (SMAD4) pathway, whereas repressed lysine-specific histone demethylase 1 (LSD1), which was confirmed as a negative regulator of osteogenesis in our previous studies. Furthermore, LSD1 knockdown enhanced the expression of BMP2 and SMAD4, suggesting the coordination of LSD1 in the osteogenic regulation of miR-137. This study indicated that miR-137 negatively regulated the osteogenic differentiation of hASCs via the LSD1/BMP2/SMAD4 signaling network, revealing a new potential therapeutic target of hASC-based bone tissue engineering.  相似文献   
999.
1000.
[目的] 通过克隆苹果蠹蛾气味结合蛋白CpomOBP20基因cDNA序列,分析其序列特征和表达谱,旨在更好地了解OBP基因在苹果蠹蛾生命活动过程中的作用,为该害虫的绿色防控提供理论支撑。[方法] 采用RT-PCR法扩增苹果蠹蛾气味结合蛋白CpomOBP20基因cDNA序列,并使用生物信息学软件对其核苷酸和氨基酸序列进行分析;基于qPCR技术分析CpomOBP20基因在苹果蠹蛾4龄幼虫不同组织(头、血淋巴、表皮、脂肪体、中肠、马氏管和唾液腺)以及雌雄成虫不同末端组织(头、触角、下唇须、喙、足和翅)中的表达情况,利用分子对接研究了CpomOBP20与3种保幼激素的结合能力。[结果] 苹果蠹蛾气味结合蛋白CpomOBP20基因的开放阅读框长459 bp,共编码152个氨基酸,等电点为6.30,蛋白分子质量为16.264 ku,N末端具有20个氨基酸组成的信号肽序列,蛋白质序列中具有6个保守的半胱氨酸残基,属于Classical OBP。序列分析表明,CpomOBP20的氨基酸序列与小菜蛾OBP (XP_011557123.1)的一致性最高,在亲缘关系上更加接近。qPCR结果表明,CpomOBP20基因在苹果蠹蛾4龄幼虫以及雌雄成虫不同组织中均有表达,其中在4龄幼虫的血淋巴中表达量最高,在雌雄成虫表达量最高的分别是翅和足,其次是头部。分子对接结果表明,CpomOBP20与3种保幼激素均具有较好的结合能力,可能参与保幼激素的结合与转运。[结论] 本研究明确了CpomOBP20的核苷酸和氨基酸序列的组成及编码蛋白的理化性质,并推测CpomOBP20的作用可能不仅局限于嗅觉识别,在非嗅觉器官中也可能起着重要的生理作用,为今后更深入地探究气味结合蛋白在苹果蠹蛾生命活动中的作用机理提供数据支撑。  相似文献   
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