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81.
Lei Su Mengzhou Liu Chengming You Qun Guo Zhongmin Hu Zhongling Yang Guoyong Li 《Ecology and evolution》2021,11(21):15020
Previous studies have demonstrated changes in plant growth and reproduction in response to nutrient availability, but responses of plant growth and reproduction to multiple levels of nutrient enrichment remain unclear. In this study, a factorial field experiment was performed with manipulation of nitrogen (N) and phosphorus (P) availability to examine seed production of the dominant species, Stipa krylovii, in response to N and P addition in a temperate steppe. There were three levels of N and P addition in this experiment, including no N addition (0 g N m−2 year−1), low N addition (10 g N m−2 year−1), and high N addition (40 g N m−2 year−1) for N addition treatment, and no P addition (0 g P m−2 year−1), low P addition (5 g P m−2 year−1), and high P addition (10 g P m−2 year−1) for P addition treatment. Low N addition enhanced seed production by 814%, 1371%, and 1321% under ambient, low, and high P addition levels, respectively. High N addition increased seed production by 2136%, 3560%, and 3550% under ambient, low, and high P addition levels, respectively. However, P addition did not affect seed production in the absence of N addition, but enhanced it under N addition. N addition enhanced seed production mainly by increasing the tiller number and inflorescence abundance per plant, whereas P addition stimulated it by decreasing the plant density yet stimulating height of plants and their seed number per inflorescence. Our results indicate seed production is not limited by P availability but rather by N availability in the temperate steppe, whereas seed production will be increased by P addition when N availability is improved. These findings enable a better understanding of plant reproduction dynamics in the temperate steppe under intensified nutrient enrichment and can inform their improved management in the future. 相似文献
82.
【目的】从基因组序列角度进一步揭示自然界斜纹夜蛾核型多角体病毒(Spodoptera litura nucleopolyhedrovirus, SpltNPV)的基因型多态性。【方法】病毒克隆A5, F1, X3 和 X15分别以活体克隆法分离自SpltNPV埃及株、 日本福冈株和日本小笠原株。根据SpltNPV基因组全序列(GenBank登录号: AF325155)和海灰翅夜蛾核型多角体病毒(S. littoralis NPV, SpliNPV)部分基因序列(GenBank登录号: X99377, X99376 和X98924)设计引物, PCR扩增获得A5, F1, X3 和 X15的多角体蛋白(polyhedrin, polh)基因和ORF18~ORF23序列。【结果】根据多角体蛋白基因序列, X3和X15属于SpltNPV型, 而A5和F1属于SpliNPV型。将A5, F1, X3 和 X15的ORF18~ORF23与SpltNPV和SpliNPV相应的基因序列进行同源性比较。结果发现, F1与SpliNPV以及X3与SpltNPV的核苷酸序列相似性高, 但X3的ORF20在172~558 nt处缺失387 bp。尽管依据多角体蛋白基因序列X15属于SpltNPV型, 但对于ORF18~ORF23序列, X15与SpliNPV的相似性高于与SpltNPV的相似性。同样, A5属于SpliNPV型, ORF18~ORF20与SpliNPV相应的核苷酸序列相似性高, 但ORF21与SpltNPV相应的核苷酸序列一致性为100%, 特别是ORF22, SpltNPV的特有序列出现在A5的基因组中, 而且与SpltNPV的ORF22一致性为100%; 反过来, ORF23又与SpliNPV相应的核苷酸序列相似性高。【结论】所有这些都表明, SpltNPV在自然界不仅存在基因型多态性, 而且即使属于同一基因型, 它们的基因组序列也有显著差异。可利用SpltNPV在自然界的这种异质性筛选适宜防治斜纹夜蛾幼虫的株系。 相似文献
83.
Chemeris Yu. K. Korol'kov N. S. Seifullina N. Kh. Rubin A. B. 《Russian Journal of Plant Physiology》2004,51(6):754-760
Inactivation of photosystem II (PSII) in the alga Chlorella pyrenoidosa Chick induced by photoinhibition (high light illumination at an intensity 10 times higher than photosynthesis-saturating light) or by incubation at a supraoptimum temperature (41°C) in darkness, resulted in a decrease in the relative yield of variable fluorescence due to a selective suppression of the slow phase of its rise. This indicates that low-activity PSII complexes, with a low efficiency of QA
– formation are inactivated first. We suppose that the transition of normal PSII complexes to a low-activity state precedes the complete loss of their photochemical activity. The existence of some common stages of PSII inactivation, when induced by photoinhibition or incubation at supraoptimum temperature in darkness, is discussed. We suggest a scheme of the sequential stages in the regulation of photosynthetic light reactions involving a reversible redox-dependent PSII inactivation. 相似文献
84.
Sophie Calderari Massimiliano Ria Christelle Gérard Tatiane C. Nogueira Olatz Villate Stephan C. Collins Helen Neil Nicolas Gervasi Christophe Hue Nicolas Suarez-Zamorano Cécilia Prado Miriam Cnop Marie-Thérèse Bihoreau Pamela J. Kaisaki Jean-Baptiste Cazier Cécile Julier Mark Lathrop Michel Werner Dominique Gauguier 《Genomics》2018,110(2):98-111
The GLIS family zinc finger 3 isoform (GLIS3) is a risk gene for Type 1 and Type 2 diabetes, glaucoma and Alzheimer's disease endophenotype. We identified GLIS3 binding sites in insulin secreting cells (INS1) (FDR q < 0.05; enrichment range 1.40–9.11 fold) sharing the motif wrGTTCCCArTAGs, which were enriched in genes involved in neuronal function and autophagy and in risk genes for metabolic and neuro-behavioural diseases. We confirmed experimentally Glis3-mediated regulation of the expression of genes involved in autophagy and neuron function in INS1 and neuronal PC12 cells. Naturally-occurring coding polymorphisms in Glis3 in the Goto-Kakizaki rat model of type 2 diabetes were associated with increased insulin production in vitro and in vivo, suggestive alteration of autophagy in PC12 and INS1 and abnormal neurogenesis in hippocampus neurons. Our results support biological pleiotropy of GLIS3 in pathologies affecting β-cells and neurons and underline the existence of trans?nosology pathways in diabetes and its co-morbidities. 相似文献
85.
Progressive island colonization and ancient origin of Hawaiian Metrosideros (Myrtaceae) 总被引:1,自引:0,他引:1
Percy DM Garver AM Wagner WL James HF Cunningham CW Miller SE Fleischer RC 《Proceedings. Biological sciences / The Royal Society》2008,275(1642):1479-1490
Knowledge of the evolutionary history of plants that are ecologically dominant in modern ecosystems is critical to understanding the historical development of those ecosystems. Metrosideros is a plant genus found in many ecological and altitudinal zones throughout the Pacific. In the Hawaiian Islands, Metrosideros polymorpha is an ecologically dominant species and is also highly polymorphic in both growth form and ecology. Using 10 non-coding chloroplast regions, we investigated haplotype diversity in the five currently recognized Hawaiian Metrosideros species and an established out-group, Metrosideros collina, from French Polynesia. Multiple haplotype groups were found, but these did not match morphological delimitations. Alternative morphologies sharing the same haplotype, as well as similar morphologies occurring within several distinct island clades, could be the result of developmental plasticity, parallel evolution or chloroplast capture. The geographical structure of the data is consistent with a pattern of age progressive island colonizations and suggests de novo intra-island diversification. If single colonization events resulted in a similar array of morphologies on each island, this would represent parallel radiations within a single, highly polymorphic species. However, we were unable to resolve whether the pattern is instead explained by ancient introgression and incomplete lineage sorting resulting in repeated chloroplast capture. Using several calibration methods, we estimate the colonization of the Hawaiian Islands to be potentially as old as 3.9 (-6.3) Myr with an ancestral position for Kaua'i in the colonization and evolution of Metrosideros in the Hawaiian Islands. This would represent a more ancient arrival of Metrosideros to this region than previous studies have suggested. 相似文献
86.
《Molecular & cellular proteomics : MCP》2019,18(12):2506-2515
Highlights
- •Method for the analysis of response curves from thermal proteome profiling (TPP).
- •NPARC uses nonparametric statistics and provides false discovery-rate (FDR) control.
- •Increased proteome coverage and sensitivity to identify drug-binding proteins.
87.
88.
89.
Tae-Joon Park Jeong-Hyun Kim Ho Jin Kim Joon Seol Bae Hyun Sub Cheong Byung Lae Park Hyoung Doo Shin 《Gene》2014
Multiple sclerosis (MS) and neuromyelitis optica (NMO) are demyelinating autoimmune inflammatory diseases that affect the central nervous system (CNS). Previous genome-wide or candidate gene studies have suggested that genetic variants might be associated with the risk of MS or NMO. Aquaporin 4 (AQP4) is a commonly distributed water channel in astrocytes of the CNS, and its expression is decreased in NMO lesions due to astrocyte cytotoxicity. Previous studies have suggested the associations of AQP4 single nucleotide polymorphisms (SNPs) with MS and/or NMO. However, there have been few replication studies in various ethnic populations. This study, as the first of its kind performed in an Asian population, investigated associations of AQP4 SNPs with the risk of inflammatory demyelinating disease (IDD), including MS and NMO, in a Korean population. A total of seven common AQP4 SNPs were selected based on status of linkage disequilibrium (LD), and then genotyped in 178 IDD cases (79 MS and 99 NMO patients) and 237 normal controls. Statistical analyses showed no significant associations between AQP4 SNPs/haplotypes and development of IDD, including MS and NMO (P > 0.05). Further replications in larger cohorts and other ethnic groups are needed. 相似文献
90.
We investigated the evolutionary conservation of polyglutamine binding protein-1 (PQBP-1) among Vertebrata. PQBP-1s were highly conserved and shared the same domain features including a WW domain, a polar amino acid rich domain (PRD), a nuclear localization signal (NLS), and a C-terminal domain (CTD) among Eutheria, but not always among Vertebrata. PQBP-1s of Vertebrata contained a variable region in the middle portion corresponding to the position of PRD. The full form of PRD including both 7aa and DR/ER repeats was specific to Eutheria. PRD of non-eutherian Amniota was minimal. Amphibia had no PRD. The DR/ER repeat was solo in fishes. Agnatha PRD was also rich in polar amino acids, but contained no repetitive sequence. We investigated 3 polyQ-containing proteins known to interact with PQBP-1: BRN-2, Huntingtin, and ATAXIN-1, and showed a diverse nature of protein-protein interaction in Vertebrata. There appears to be no interaction between PQBP-1 and BRN-2, Huntingtin, or ATAXIN-1 in Amphibia, while the interaction between PQBP-1 and BRN-2 is expected to be conserved among Mammalia, and the interaction between PQBP-1 and Huntingtin or ATAXIN-1 depends on the lineage in Eutheria. 相似文献