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Xochitecatl [ʃot͡ʃiˈtekat͡ɬ] is a pre-Columbian archaeological site located in the Mexican State of Tlaxcala, 18 km southwest of Tlaxcala city. [1] The major architecture dates to the Middle Preclassic Period (1000–400 BC) but occupation continued, with one major interruption, until the Late Classic , when the site was abandoned.
It contains a sprawling palace with vibrantly colored murals painted in Maya style. The nearby site of Xochitecatl was a more public ceremonial complex associated with Cacaxtla. Cacaxtla and Xochitecatl prospered 650–900 CE, probably controlling important trade routes through the region with an enclave population of no more than 10,000 people.
Xochitecatl. Mexico The Pyramid of Flowers 100 by 140 the Preclassic Period: Xochitecatl. Mexico The Spiral Building 700 BCE This is a circular stepped pyramid. The interior consists of volcanic ash. The building has no stairway to the top, it was climbed by following the spiral form of the building itself. Yaxchilan. Mexico Maya: 600 to 900 CE
The general secretion (Sec) involves secretion of unfolded proteins that first remain inside the cells. In Gram-negative bacteria, the secreted protein is sent to either the inner membrane or the periplasm. But in Gram-positive bacteria, the protein can stay in the cell or is mostly transported out of the bacteria using other secretion systems.
Horizontal gene transfer is the primary mechanism for the spread of antibiotic resistance in bacteria, [8] [5] [9] [10] and plays an important role in the evolution of bacteria that can degrade novel compounds such as human-created pesticides [11] and in the evolution, maintenance, and transmission of virulence. [12]
It is primarily found in Gram-negative bacteria, such as Escherichia coli and Salmonella typhimurium. [1] Enterobactin is the strongest siderophore known, binding to the ferric ion (Fe 3+) with affinity K = 10 52 M −1. [2] This value is substantially larger than even some synthetic metal chelators, such as EDTA (K f,Fe3+ ~ 10 25 M −1). [3]
Nitrifying bacteria are present in distinct taxonomical groups and are found in highest numbers where considerable amounts of ammonia are present (such as areas with extensive protein decomposition, and sewage treatment plants). [3] Nitrifying bacteria thrive in lakes, streams, and rivers with high inputs and outputs of sewage, wastewater and ...
There are a large number of known bacteriochlorophylls [4] [9] but all have features in common since the biosynthetic pathway involves chlorophyllide a (Chlide a) as an intermediate. [ 10 ] Chlorin-cored BChls ( c to f ) are produced by a series of enzymatic modifications on the sidechain of Chlide a , much like how Chl b , d , e are made.