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Dynamic photoelastic study of the transient stress field in solids during shock wave lithotripsy.

Photoelastic and shadowgraph imaging techniques were used to visualize the propagation and evolution of stress waves, and the resultant transient stress fields in solids during shock wave lithotripsy. In parallel, theoretical analysis of the wavefront evolution inside the solids was performed using a ray-tracing method. Excellent agreement between the theoretical prediction and experimental results was observed. Both the sample size and geometry were found to have a significant influence on the wave evolution and associated stress field produced inside the solid. In particular, characteristic patterns of spalling damage (i.e., transverse and longitudinal crack formation) were observed using plaster-of-Paris cylindrical phantoms of rectangular and circular cross sections. It was found that the leading tensile pulse of the reflected longitudinal wave is responsible for the initiation of microcracks in regions inside the phantom where high tensile stresses are produced. In addition, the transmitted shear wave was found to play a critical role in facilitating the extension and propagation of the microcrack.

High-Energy Shock Waves↗

Adaptive molecular evolution of HINTW, a female-specific gene in birds.

It is well established that many genes on the male-specific Y chromosome of organisms such as mammals are involved in male reproduction and may evolve rapidly because of positive selection on male reproductive traits. In contrast, very little is known about the function and evolution of W-linked genes restricted to the female genome of organisms with female heterogamety. For birds (males ZZ, females ZW), only one W-linked gene (HINTW) is sufficiently different from its Z-linked homolog to indicate a female-specific function. Here, we report that HINTW shows evidence of adaptive molecular evolution, implying strong positive selection for new functional properties in female birds. Moreover, because HINTW is expressed in the gonads of female birds just before sexual differentiation and is thus a candidate for sex determination, it suggests adaptive evolution related to female development. This provides the first example of Darwinian evolution of a gene restricted to the female genome of any organism. Given that HINTW exists in multiple copies on W, similar to some testis-specific genes amplified on mammalian Y, avian HINTW may thus potentially represent a female parallel to the organization and evolution of Y chromosome genes involved in male reproduction and development.

Adaptation, Biological↗

Genetic and cytogenetic analyses of breast cancer yield different perspectives of a complex disease.

Genomic instability in breast cancer results in low-level changes in DNA copy number, a significant but poorly understood mechanism underlying the genetic heterogeneity of this disorder. Two different approaches, loss of heterozygosity (LOH) and comparative genomic hybridization (CGH), have been used to probe the genetics of breast cancer evolution. LOH is a locus specific method that detects the variation in the parental origin of DNA, but is not quantitative. CGH provides a genome-wide accounting of the magnitude of DNA copy number changes, but not parental origin. Both methods have identified complex and heterogeneous patterns of DNA losses, duplications, and amplifications during breast cancer evolution. LOH and CGH technologies interrogate very distinct mechanisms driving breast tumor evolution, yet are seldom used in parallel to profile specimens. Thus, the relative significance of genetic versus numerical variations of DNA in breast cancer evolution remains undefined. This review will attempt to summarize some of the successes of these investigations, highlight some complex and confounding observations emerging from these studies, and discuss the potential of these studies to improve our understanding of breast cancer biology and treatment.

Breast Neoplasms↗

Towards an understanding of the molecular mechanisms regulating gene expression during diploidization in phylogenetically polyploid lower vertebrates.

Polyploidization and regional gene duplication have occurred frequently during vertebrate evolution, providing the genetic material necessary for creating evolutionary novelties. Mammals, including man, can be regarded as diploid species with a polyploid history of evolution. Polyploidization steps during the phylogeny of mammals probably took place in the genomes of amphibian- or fish-like mammalian ancestors. The polyploid status has subsequently been shaped by the process of diploidization, leading to genomes that are polyploid with respect to the amount of genetic material and the number of gene copies, and diploid with respect to the level of gene expression and chromosomal characteristics. Phylogenetically tetraploid amphibian and teleost species together with their diploid close relatives can be used as a model system to study the effect of polyploidization and the mechanisms of diploidization of a parallel event during early mammalian evolution. Experimental evidence permits the assumption that the diploidization of gene expression in tetraploid cyprinid fish may be functionally correlated with structural modifications of the ribosomal components, RNA and protein. These findings are discussed in the light of reduced protein synthesis in diploidized tetraploid species and a mechanism to explain diploidization during mammalian evolution.

Amphibians↗

Experimental evolution reveals contrasting adaptive landscapes in lab and field environments.

Experimental evolution is widely used to infer microbial responses to environmental change, yet most laboratory studies impose constant, well-mixed conditions that differ fundamentally from fluctuating, spatially structured field environments. We compared genomic evolution in the leaf litter-associated bacterium Curtobacterium strain MMLR14_002 under control and warming treatments in laboratory culture and in a complementary field experiment. Laboratory-derived isolates accumulated more mutations per genome and exhibited stronger locus-level parallelism, with mutations recurring in a small number of coding loci. Field-derived isolates accumulated fewer mutations per genome, and these mutations rarely occurred in the same coding loci across replicate populations. Instead, field isolates exhibited a higher proportion of intergenic mutations, with mutations recurring in the same intergenic regions across independent field deployments. When coding mutations were detected in the field, they were distributed across functionally diffuse targets and more often involved metabolic pathways than the core cellular processes repeatedly targeted during laboratory evolution. Warming itself did not consistently influence mutation accumulation or the genomic distribution of mutations; instead, laboratory and field contexts primarily shaped the accumulation, targets, and repeatability of genomic change. These results suggest that laboratory thermal evolution identifies adaptive routes favored under sustained selection but may overestimate coding-level parallelism under heterogeneous field conditions. Bridging laboratory and field evolution will likely require experimental designs that incorporate temporal variability and spatial heterogeneity characteristic of natural systems.IMPORTANCEA central goal of experimental evolution is to infer how microbes evolve in nature from laboratory studies. Here, we evaluate this assumption by comparing genomic evolution of a leaf litter-associated Curtobacterium strain in laboratory and field warming experiments to identify broad patterns rather than isolate the contribution of any single environmental factor. We find that the strong parallelism at coding loci observed under laboratory conditions is reduced in the field, while mutations recurring in the same intergenic regions across field deployments suggest that parallel evolution in nature may more often involve regulatory noncoding regions rather than coding targets. These results show that environmental context reshapes adaptive landscapes and may limit the parallelism of coding-level genomic responses inferred from homogeneous laboratory conditions.

experimental evolution↗

Understanding linguistic evolution by visualizing the emergence of topographic mappings.

We show how cultural selection for learnability during the process of linguistic evolution can be visualized using a simple iterated learning model. Computational models of linguistic evolution typically focus on the nature of, and conditions for, stable states. We take a novel approach and focus on understanding the process of linguistic evolution itself. What kind of evolutionary system is this process? Using visualization techniques, we explore the nature of replicators in linguistic evolution, and argue that replicators correspond to local regions of regularity in the mapping between meaning and signals. Based on this argument, we draw parallels between phenomena observed in the model and linguistic phenomena observed across languages. We then go on to identify issues of replication and selection as key points of divergence in the parallels between the processes of linguistic evolution and biological evolution.

Artificial Intelligence↗

Myeloperoxidase and elastase as markers of leukocyte activation during cardiopulmonary bypass in humans.

To assess leukocyte activation during cardiopulmonary bypass, we measured white blood cell and neutrophil counts and lysosomal enzyme release, especially myeloperoxidase and elastase, throughout the operation and for 5 days postoperatively. A newly developed double antibody radioimmunoassay of myeloperoxidase and an enzyme-linked immunosorbent assay for detection of the polymorphonuclear elastase-alpha 1-proteinase inhibitor complex were used to determine their plasma levels in 15 patients undergoing elective aorta-coronary bypass grafting. Preoperatively white blood cell counts and plasmatic levels of myeloperoxidase and elastase-alpha 1-proteinase inhibitor were normal. Because no correlation has yet been established between levels of myeloperoxidase and elastase-alpha 1-proteinase inhibitor, the aim of this prospective study was to evaluate the use of these enzyme levels as markers for leukocyte activation in vivo. We addressed the clinical situation of cardiopulmonary bypass because it offered the possibility of monitoring the comparative evolution of blood levels of these enzymes in parallel to white blood cell counts through well-defined steps corresponding to known events. We document the advantages of myeloperoxidase blood levels over elastase measurement as reflecting more rapidly the in vivo activation of leukocytes. The time course kinetics of these three measurements were not parallel. White blood cell counts remained stable at the beginning of bypass, whereas myeloperoxidase levels increased sharply and continuously as soon as bypass was instituted until the end of bypass. Elastase levels also increased, but later than myeloperoxidase, beginning when the patients was rewarmed. High elastase plasma levels persisted later than myeloperoxidase after bypass, in parallel with white blood cell counts. It thus clearly appears that changes in myeloperoxidase levels more rapidly reflect the activation state of leukocytes induced by cardiopulmonary bypass and surgery, whereas peak levels of elastase were delayed and parallel to white blood cell counts. From this model, in which the evolution of leukocyte numbers could be followed in relation with known steps of stimulation, it appears that myeloperoxidase is a sensitive marker for monitoring in vivo activation of white blood cells.

Adult↗

Reconstruction of human evolution: bringing together genetic, archaeological, and linguistic data.

The genetic information for this work came from a very large collection of gene frequencies for "classical" (non-DNA) polymorphisms of the world aborigines. The data were grouped in 42 populations studied for 120 alleles. The reconstruction of human evolutionary history thus generated was checked with statistical techniques such as "boot-strapping". It changes some earlier conclusions and is in agreement with more recent ones, including published and unpublished DNA-marker results. The first split in the phylogenetic tree separates Africans from non-Africans, and the second separates two major clusters, one corresponding to Caucasoids, East Asians, Arctic populations, and American natives, and the other to Southeast Asians (mainland and insular), Pacific islanders, and New Guineans and Australians. Average genetic distances between the most important clusters are proportional to archaeological separation times. Linguistic families correspond to groups of populations with very few, easily understood overlaps, and their origin can be given a time frame. Linguistic superfamilies show remarkable correspondence with the two major clusters, indicating considerable parallelism between genetic and linguistic evolution. The latest step in language development may have been an important factor determining the rapid expansion that followed the appearance of modern humans and the demise of Neanderthals.

Archaeology↗

Molecular evolution and phylogeny of the buzzatii complex (Drosophila repleta group): a maximum-likelihood approach.

The buzzatii complex of the mulleri subgroup (Drosophila repleta group) consists of three clusters of species whose evolutionary relationships are poorly known. We analyzed 2,085 coding nucleotides from the xanthine dehydrogenase (XDH:) gene in the 10 available species of the complex and Drosophila mulleri and Drosophila hydei. We adopted a statistical model-fitting approach within the maximum-likelihood (ML) framework of phylogenetic inference. We first modeled the process of nucleotide substitution using a tree topology which was reasonably accurate. Then we used the most satisfactory description so attained to reconstruct the evolutionary relationships in the buzzatii complex. We found that a minimally realistic description of the substitution process of XDH: should allow six substitution types and different substitution rates for codon positions. Using this description we obtained a strongly supported, fully resolved tree which is congruent with the already-known (yet few) relationships. We also analyzed published data from three mitochondrial cytochrome oxidases (CO I, II, and III). In our analyses, these relatively short DNA sequences failed to discriminate statistically among alternative phylogenies. When the data of these three gene regions are combined with the XDH: sequences, the phylogenetic signal emerging from XDH: becomes reinforced. All four of the gene regions evolve faster in the buzzatii and martensis clusters than in the stalkeri cluster, paralleling the amount of chromosomal evolution.

Animals↗

The Effects of Excess Irradiance on Photosynthesis in the Marine Diatom Phaeodactylum tricornutum.

The response of Phaeodactylum tricornutum to excess light was remarkably similar to that observed in higher plants and green algae and was characterized by complex changes in minimal fluorescence yields of fully dark-adapted samples and declines in maximum variable fluorescence levels and oxygen evolution rates. In our study the parallel decreases in the effective rate constant for photosystem II (PSII) photochemistry, the variable fluorescence yield of a dark-adapted sample, and light-limited O2 evolution rates after short (0-10 min) exposures to photoinhibitory conditions could not be attributed to damage or down-regulation of PSII reaction centers. Instead, these changes were consistent with the presence of nonphotochemical quenching of PSII excitation energy in the antennae. This quenching was analogous to that component of nonphotochemical quenching studied in higher plants that is associated with photoinhibition of photosynthesis and/or processes protecting against photoinhibition in that it did not relax readily in the dark and persisted in the absence of a bulk transthylakoid proton gradient. The quenching was most likely associated with photoprotective processes in the PSII antenna that reduced the extent of photoinhibitory damage, particularly after longer exposures. Our results suggest that a large population of damaged, slowly recovering PSII centers did not form in Phaeodactylum even after 60 min of exposure to excess actinic light.

Journal Article↗

[Multifactorial disorder: molecular and evolutionary insights of uric acid nephrolithiasis].

Nephrolithiasis is a common multifactorial disorder affecting about 10% of the Western populations and it is characterized by the presence of small crystals and stones in the urinary tract. Uric acid nephrolithiasis (UAN) accounts for 20% of all stones but its prevalence varies between countries. Nephrolithiasis is likely caused by several factors but a genetic component has clearly been demonstrated. While studying an ancient founder population in Sardinia, we recently identified a susceptibility locus for UAN on chromosome 10. In this region we identified a missense mutation in a specific isoform of a novel gene is strongly associated with UAN. Through a comparative genomic approach, we did not found a mouse homolog even if we were able to identify the corresponding genomic region, while in Old World monkey we found a canonical gene structure with several stop codons preventing protein production. We detected expression in New World monkeys while in humans we observe a functional protein. It seems, therefore, that, to avoid human disease, a fierce selection worked to develop a renal-haematic urate homeostasis system against excessive hyperuricaemia. ZNF365 emerged during primate evolution and assumed its role in parallel with the disappearance of uricase, probably against a disadvantageous excessive hyperuricaemia.

Animals↗

[Evolutionary histology and the theory of evolution (on the 100th anniversary of the birth of Academician A. A. Zavarzin].

Darwin's theory did not touch upon the problem of evolution of tissues. An attempt made by Heckel to explain phylogeny of tissues, basing on principles of selection and divergence, failed. It was not at once understood that evolution of separate levels of organization possessed certain specificity. The theory of parallelism, suggested by A. A. Zavarzin, stated the notion on specific regularities in evolution of tissues. Having analysed the correlation between the theory of evolution and evolutional histology, A. A. Zavarzin demonstrated that darwinism developed predominantly at the theory of speciation. This approach is correct for the period of the new evolutionary synthesis, too. The synthetic theory of evolution does not take into consideration evolution of tissues. A. A. Zavarzin's theory contributed to reorganization of methodology of the evolutional biology. The historical method was enriched by a certain principle on specific regularities of evolution for each level of organization in the alive. Simultaneously, the genesis of the parallelism theory discovered that correct explanation of the regularities in evolution of tissues is possible only under conditions that the evolution of histostructures can be inserted into the evolution of ontogenesis and species.

Biological Evolution↗

Multiple origins of cyclodiene insecticide resistance in Tribolium castaneum (Coleoptera: Tenebrionidae).

The number of origins of pesticide resistance-associated mutations is important not only to our understanding of the evolution of resistance but also in modeling its spread. Previous studies of amplified esterase genes in a highly dispersive Culex mosquito have suggested that insecticide resistance-associated mutations (specifically a single-gene duplication event) can occur a single time and then spread throughout global populations. In order to provide data for resistance-associated point mutations, which are more typical of pesticide mechanisms as a whole, we studied the number of independent origins of cyclodiene insecticide resistance in the red flour beetle Tribolium castaneum. Target-site insensitivity to cyclodienes is conferred by single point mutations in the gene Resistance to dieldrin (Rdl), which codes for a subunit of a gamma-aminobutyric acid (GABA) receptor. These point mutations are associated with replacements of alanine 302 which render the receptor insensitive to block by the insecticide. We collected 141 strains of Tribolium worldwide and screened them for resistance. Twenty-four strains contained resistant individuals. After homozygosing 23 of these resistance alleles we derived a nucleotide sequence phylogeny of the resistant strains from a 694-bp section of Rdl, encompassing exon 7 (which contains the resistance-associated mutation) and part of a flanking intron. The phylogeny also included six susceptible alleles chosen at random from a range of geographical locations. Resistance alleles fell into six clades and three clades contained both resistant and susceptible alleles. Although statistical analysis provided support at only the 5-6% level, the pattern of variation in resistance alleles is more readily explained by multiple independent origins of resistance than by spread of a single resistance-associated mutation. For example, two resistance alleles differed from two susceptible alleles only by the resistance-associated mutation itself, suggesting that they form the susceptible ancestors and that resistance arose independently in several susceptible backgrounds. This suggests that in Tribolium Rdl, de novo mutations for resistance have arisen independently in several populations. Identical alleles were found in geographically distant regions as well, also implying that some Rdl alleles have been exported in stored grain. These differences from the Culex study may stem both from differences in the population genetics of Tribolium versus that of mosquitoes and differences in mutation rates associated with point mutations versus gene duplication events. The Tribolium data therefore suggest that multiple origins of insecticide resistance (associated with specific point mutations) may be more common than the spread of single events. These findings have implications for the way in which we model the evolution and spread of insecticide resistance genes and also suggest that parallel adaptive substitutions may not be uncommon in phyletic evolution.

Animals↗

[Study of active myocardial damage in children with suspected myocarditis using antimyosin monoclonal antibodies (AMMoAb-111In)].

BACKGROUND: The study with monoclonal antimyosin antibody-111In has proved to be useful in the detection of the myocardial damage present in different processes. There is active myocardial damage and specific antimyosin uptake in myocarditis, as both experimental and clinical trials have shown. In experimental models the evolution of myocardial damage has been studied, where a parallelism between the histological changes of the myocardial damage and the evolution on the antimyosin uptake has been found. In clinical myocarditis it is difficult to do an histological follow up of the inflammatory process, and therefore the evolution of myocardial damage present in myocarditis is unknown. The antimyosin antibody images allow a non-invasive study of this evolution. OBJECTIVES: a) to study with monoclonal antimyosin antibody-111In, the myocardial damage present regarding the disease evolution in children with suspected clinical diagnosis of myocarditis; b) to evaluate the evolution of the active myocardial damage reflected on the changes on the monoclonal antimyosin antibody-111In uptake. METHODS: A study with monoclonal antimyosin antibody-111In was carried out on 43 children, 16 males and 27 females with a median age of 39 months (SD 48 m; range: 2-167) with suspected diagnosis of acute myocarditis defined as the presence of congestive cardiac failure or severe ventricular arrhythmia with less than 12 months of evolution. The image evaluation was done visually and through the heart to lung ratio. Twenty of these patients were also followed up with antimyosin antibody scan for a period of 19 +/- 9 months, and 3.8 +/- 1.7 studies were performed on them in this time. RESULTS: The prevalence of positive myocardial uptake was 83.72%. There is a negative correlation (r = -0.352; p < 0.02) between the evolution time of the process and the heart to lung ratio: patients studied before two months, have a higher heart to lung ratio and greater prevalence of positive studies than those studied later (heart to lung ratio 2.09 vs 1.74; p = 0.013; 90% vs 69.2%). Of the patients followed up with antimyosin antibody scans, 6 showed a clinical relapse which increased their heart to lung ratio. The other 14 showed an progressive decrease of the heart to lung ratio reaching normality in 14 +/- 6 months. CONCLUSIONS: a) the uptake intensity of monoclonal antimyosin antibody-111In, as a reflection of the myocardial damage, depends on the disease evolution time, as in the first two months is when the major damage happens; b) the uptake intensity slowly decreases, tending to normality around the 14th month, although this evolution may be altered by the appearance of relapses.

Antibodies, Monoclonal↗

Molecular evolution of the brain size regulator genes CDK5RAP2 and CENPJ.

Primary microcephaly is a developmental defect of the brain characterized by severely reduced brain size but an absence of other overt abnormalities. Mutations in several loci have been linked to primary microcephaly. The underlying genes for two of these were recently identified as CDK5RAP2 and CENPJ. Here, we focus on CDK5RAP2 and show that the protein evolutionary rate of this gene is significantly higher in primates than rodents or carnivores. We further show that the evolutionary rate within primates is particularly high in the human and chimpanzee terminal branches. Thus, the pattern of molecular evolution seen in CDK5RAP2 appears to parallel, at least approximately, that seen in two other previously identified primary microcephaly genes, microcephalin and ASPM. We also briefly discuss CENPJ, which similarly exhibits higher rate of protein evolution in primates as compared to rodents and carnivores. Together, the evolutionary patterns of all four presently known primary microcephaly genes are consistent with the hypothesis that genes regulating brain size during development might also play a role in brain evolution in primates and especially humans.

Animals↗

Rapid evolution of wing size clines in Drosophila subobscura.

Parallel latitudinal clines across species and continents provide dramatic evidence of the efficacy of natural selection, however little is known about the dynamics involved in cline formation. For example, several drosophilids and other ectotherms increase in body and wing size at higher latitudes. Here we compare evolution in an ancestral European and a recently introduced (North America) cline in wing size and shape in Drosophila subobscura. We show that clinal variation in wing size, spanning more than 15 degrees of latitude, has evolved in less than two decades. In females from Europe and North America, the clines are statistically indistinguishable however the cline for North American males is significantly shallower than that for European males. We document that while overall patterns of wing size are similar on two continents, the European cline is obtained largely through changing the proximal portion of the wing, whereas the North American cline is largely in the distal portion. We use data from sites collected in 1986/1988 (Pegueroles et al. 1995) and our 1997 collections to compare synchronic (divergence between contemporary populations that share a common ancestor) and allochronic (changes over time within a population) estimates of the rates of evolution. We find that, for these populations, allochronically estimated evolutionary rates within a single population are over 0.02 haldanes (2800 darwins), a value similar in magnitude to the synchronic estimates from the extremes of the cline. This paper represents an expanded analysis of data partially presented in Huey et al. (2000).

Animals↗

The history of anatomy and surgery of the preperitoneal space.

Preperitoneal (properitoneal) space is the space between the peritoneum and transversalis fascia. Bogros (1786-1825) described a triangular space in the iliac region between the iliac fascia, transversalis fascia, and parietal peritoneum. In the modern concept, this space lies between the peritoneum and posterior lamina of the transversalis fascia. In 1858, Retzius described the homonymous space, situated anterior and lateral to the urinary bladder (prevesical space). In 1975, Fowler reported that the preperitoneal fascia of the groin is distinct from the transversalis fascia. Preperitoneal herniorrhaphy may be subdivided into 2 approaches: transperitoneal and inguinal. We present herein the evolution of approaches to the preperitoneal space from use of the transperitoneal (or posterior) to use of the anterior preperitoneal and posterior preperitoneal approaches. As anatomic knowledge has increased, the evolution of laparoscopic surgery has paralleled that of open procedures.

Fascia↗

Invariant glycines and prolines flanking in loops the strand beta 2 of various (alpha/beta)8-barrel enzymes: a hidden homology?

The question of parallel (alpha/beta)8-barrel fold evolution remains unclear, owing mainly to the lack of sequence homology throughout the amino acid sequences of (alpha/beta)8-barrel enzymes. The "classical" approaches used in the search for homologies among (alpha/beta)8-barrels (e.g., production of structurally based alignments) have yielded alignments perfect from the structural point of view, but the approaches have been unable to reveal the homologies. These are proposed to be "hidden" in (alpha/beta)8-barrel enzymes. The term "hidden homology" means that the alignment of sequence stretches proposed to be homologous need not be structurally fully satisfactory. This is due to the very long evolutionary history of all (alpha/beta)8-barrels. This work identifies so-called hidden homology around the strand beta 2 that is flanked by loops containing invariant glycines and prolines in 17 different (alpha/beta)8-barrel enzymes, i.e., roughly in half of all currently known (alpha/beta)8-barrel proteins. The search was based on the idea that a conserved sequence region of an (alpha/beta)8-barrel enzyme should be more or less conserved also in the equivalent part of the structure of the other enzymes with this folding motif, given their mutual evolutionary relatedness. For this purpose, the sequence region around the well-conserved second beta-strand of alpha-amylase flanked by the invariant glycine and proline (56_GFTAIWITP, Aspergillus oryzae alpha-amylase numbering), was used as the sequence-structural template. The proposal that the second beta-strand of (alpha/beta)8-barrel fold is important from the evolutionary point of view is strongly supported by the increasing trend of the observed beta 2-strand structural similarity for the pairs of (alpha/beta)8-barrel enzymes: alpha-amylase and the alpha-subunit of tryptophan synthase, alpha-amylase and mandelate racemase, and alpha-amylase and cyclodextrin glycosyltransferase. This trend is also in agreement with the existing evolutionary division of the entire family of (alpha/beta)8-barrel proteins.

Amino Acid Sequence↗