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91.
The genetic diversity of 116 barley accessions, representing five Chinese eco-geographic populations, was studied using simple sequence repeat (SSR) markers. The 21 SSR loci revealed 128 alleles with an average of 6.1 alleles per locus. The highest values of proportion of polymorphic loci (P) and gene diversity index (He) were obtained in the Northern (P = 1.00; He = 0.60) and the Yangtze River reaches and Southern populations (P = 1.00; He = 0.59). The lowest values were in the populations of the Yellow River reaches (P = 0.86; He = 0.44). The highest average number of alleles per locus (4.52) and number of unique alleles (7) were found in the Qinghai–Tibet plateau population. Cluster analysis revealed that together with the row type, strong eco-geographic variables influenced the classification. Associations of SSR and eco-geographic values were established for 11 SSR loci. Four to six markers were found to discriminate among geographic groups, which may serve as tools for diagnosis of the eco-geographic populations and provide evidence for the adaptive nature of SSR markers.  相似文献   
92.
The functional residues of z-class glutathione S-transferase were identified by screening inactive point mutants from a random mutagenesis library. First, a random mutant library was constructed using error-prone polymerase chain reaction, and then candidate inactive mutants were screened by a high-throughput colorimetric assay. Twenty-five mutants were obtained, and 12 that formed inclusion bodies were discarded. The remaining 13 mutants that expressed soluble protein were used for accurate quantification of enzymatic activity and sequencing. The mutants W15R, C19Y, R22H/K83E, P61S, S73P, S109P, and Q112R were found to have activity lower than 1% of the wild-type and were considered as “inactive mutants”, whereas the mutants K83E, Q102R, and L147F still have a large fraction of the activity and were thus considered as “partially inactivated mutants”. Molecular modeling experiments disclosed that mutations resulting in inactivation of the enzyme were found in or near the binding pocket, whereas mutations resulting in partial inactivation were distant from both substrates. The role of the residue Ser73 in the enzyme was verified by site-directed mutagenesis. The result suggested that screening inactive point mutants from a random mutagenesis library is an efficient way of identifying functional residues in enzymes.  相似文献   
93.
The CLC chloride channel gene CLC-A of the pathogen yeast Cryptococcus neoformans was previously reported to be critical for multicopper laccase activity and growth at an elevated pH.This study reports that copper homeostasis was impaired in the clc-a mutant.This was demonstrated by the substantial decrease of the intracellular quantity of copper under copper-limited growth as determined by flame atomic absorption spectrometry.CLC-A is a critical factor in copper homeostasis which is required for copper acq...  相似文献   
94.
The lethal giant larvae (lgl) gene was first identified more than 30 years ago in Drosophila and characterized as a tumor suppressor gene. Studies in budding yeast, flies and mammals all indicate that the evolutionarily conserved Lgl family proteins play an important role in cell polarity. Sro7/77, the yeast Lgl homologues, are important for the establishment and reinforcement of cell polarity through their localized interaction and kinetic activation of the post-Golgi secretion machinery. As for higher eukaryotes, both in epithelial polarity and asymmetric cell division, the role of Lgl protein is deployed by localizing proteins to the membrane in a polarized fashion. In addition, Lgl is transiently required during the establishment phase of polarity, implicating that Lgl functions at strategic time points for proliferation control. Studies in cancer biology provide direct connections between malfunction of Lgl and formation, progression and metastasis of various cancers. Here, we review recent advances in the field, focusing on the function of the Lgl family in cellular polarization.  相似文献   
95.
铬渣堆放场地土壤的污染过程、影响因素及植物修复   总被引:6,自引:0,他引:6  
铬渣堆放场地的土壤污染已成为重要的环境问题之一,并引起广泛关注。为了对铬渣堆场铬污染情况有更加详细的了解,本文对铬渣污染土壤的2个基本过程(铬渣中铬的水平迁移过程与垂直运移过程)、土壤有机质、pH、Eh和含水量、土壤类型及其无机胶体组成以及地下水运动方向等影响其迁移的因素进行了分析。在此基础上,对铬超积累植物的筛选、铬超积累植物的富集机制、铬渣堆场周围污染土壤的植物修复及其机理进行了概述。虽然目前对铬污染土壤的植物修复还处于起步阶段,但利用超积累植物对铬渣污染场地进行修复前景广阔。  相似文献   
96.
围产期食物限制导致子代大鼠学习和记忆能力等的神经生物学变化,但其机制并不清楚。将成年Wistar雌性大鼠与雄性大鼠同笼,受孕后随机分为对照组 (n=9) 和食物限制组 (n=8) 。对照组母鼠在妊娠期和哺乳期自由进食和饮水,食物限制组母鼠从妊娠的第7天到子代大鼠出生后21天进行食物限制,食物限制量为对照组大鼠的50%。子代雄性大鼠成年后,通过Morris 水迷宫测试空间学习和记忆能力。之后,在海马CA1区在体记录场兴奋性突触后电位 (field excitatory postsynaptic potential,fEPSP),并采用免疫组织化学方法观察海马CA1区神经元型一氧化氮合酶 (nNOS) 阳性细胞密度的变化。结果表明,围产期食物限制降低了子代大鼠出生后第1、7、10、14和21天的体重,并减弱了成年子代大鼠的学习和记忆能力,海马CA1区fEPSP的斜率和nNOS阳性细胞的密度也明显降低。结果提示,围产期食物限制可能通过抑制NO的产生降低了海马突触可塑性,从而影响了子代大鼠的学习和记忆能力。  相似文献   
97.
选用成年健康家鸽,对小脑进行连续电刺激后,分别抽取家鸽外周血清及全脑测定乙酰胆碱酯酶活力变化,以探讨鸟类小脑刺激与乙酰胆碱酯酶活力变化之间的相关性.结果 表明:在刺激小脑皮层后,家鸽外周血清中乙酰胆碱酯酶活力显著上升(P<0.05);而在刺激小脑皮层后,脑组织中乙酰胆碱酯酶活力显著降低(P<0.05).推测电刺激引起外周组织乙酰胆碱释放,从而引起肌肉强直,血清中胆碱酯酶的活力升高.而电刺激小脑使抑制性神经元功能兴奋,脑中胆碱能神经元功能减弱,乙酰胆碱的释放减少,脑组织中胆碱酯酶的活力降低.  相似文献   
98.
根际微生物群落是随植物长期进化及地球生境变迁而形成的动态微生物系统。随着多组学技术的不断发展,人们对根际微生物群落结构与功能的研究日益深入。根际微生物群落中的功能微生物类群,如植物促生细菌、植物促生真菌等,通过与植物建立紧密的物质、能量与信息联系,参与植物激素合成、难溶营养物解离、生物固氮、微生物拮抗、生长因子供应等系列生物学过程,从而提高植物营养物质吸收与抗逆能力,为植物的健康和高效生长提供重要保障。这些微生物中的某些成员已被开发成微生物刺激剂,广泛应用于作物增产抗逆与农田地力提升。近年来,多学科的交叉融合为根际微生物群落结构-功能-调控策略的交互式研究提供新的机遇,推动了基于合成生物学与材料科学技术的合成微生物组的发展。尤其是在核心微生物互作方面,人工蛋白创制、磁性组装、生物炭强化等策略能够增强核心微生物与目标植物之间的物理连接作用,大幅提高合成微生物组的工作效率和稳定性,从而有效驱动作物增产增收,提高污染修复效率。因此,根际微生物群落结构、功能与调控的深入研究,必将为绿色农业发展提供不竭动力。  相似文献   
99.
Changes in the activity of antioxidant enzymes including superoxide dismutase (SOD), peroxidase (POD), catalase (CAT) and the contents of malondialdehyde (MDA), chlorophyll, free proline and phytochelatins (PCs) in Solanum nigrum, the newly discovered Cd-hyperaccumulator were examined and compared with a non-hyperaccumulator Solanum melongena. It was indicated that leaf SOD and POD activity of S. nigrum was significantly higher than that of S. melongena. The Cd treatments significantly increased root SOD activity, leaf POD activity, and CAT activity and free proline content in the leaves and roots of S. nigrum. On the contrary, the Cd treatments decreased SOD activity, and did not change CAT activity in the leaves and roots of S. melongena. Moreover, there were no significant differences in free proline levels in the roots of S. melongena. These results validated that S. nigrum had a greater capacity than S. melongena to adapt to oxidative stress caused by Cd and free proline accumulation might be responsible for the tolerance of S. nigrum to Cd. Treated with 10 μg Cd g−1, growth of S. nigrum and its contents of chlorophyll and MDA were basically unaffected. In contrast, there were a decrease in the growth and chlorophyll content, and an increase in MDA in the roots of S. melongena. Although lipid peroxidation was promoted in both the hyperaccumulator and non-hyperaccumulator by high Cd stress, the greater increase took place in the tissues of S. melongena. The PCs level in roots of S. nigrum was significantly lower than that of S. melongena. On the contrary, the content of leaf PCs was much higher in S. nigrum than that in S. melongena. These results further suggested that antioxidative defense in the Cd-hyperaccumulator might play an important role in Cd tolerance, and PCs synthesis is not the primary reason for Cd tolerance although PCs in S. nigrum increased significantly by Cd.  相似文献   
100.
In this study, we have investigated the plant growth promoting effect of Bacillus mucilaginosus strain D4B1, a rhizosphere soil organism, and its transgenic strain NKTS-3 on tobacco planting. The transgenic strain contains a phytase expression cassette that can express high active phytase extracellularly and hydrolyze phytate in the soil to liberate inorganic phosphorus for the growth of tobacco plants. Greenhouse study and field experiments showed that both wild-type B. mucilaginosus and the transgenic strain could promote tobacco plant growth. Moreover, the transgenic strain promoted tobacco plant growth (235% more than control in pot experiments and 125% more than control in field experiments) was higher than the wild-type B. mucilaginosus (183% more than control in pot experiments and 108% more than control in field experiments). In addition, the inoculation with transgenic rhizobacteria could significantly improve root acquisition of phosphorus and increase the phosphorus content of the plant.  相似文献   
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