Although all flowers are different, they have several things in common that make up their basic anatomy. The four main parts of a flower are the petals, sepals, stamen, and carpel (sometimes known as a pistil). If a flower has all four of these key parts, it is considered to be a ...
Ch 1. Basic Terms & Skills in Biological Science Biology | Definition, Concepts & Fields 7:16 What are the Branches of Biology? 6:17 Science Terms & Vocabulary | Overview & Study Styles 9:01 Scientific Method | Definition, Steps & Examples 8:43 Experimental Design in Science | Def...
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Ch 16. Basic Molecular Biology Laboratory... Ch 17. Geologic Time Scale Ch 18. Evolution Overview Ch 19. Plant Biology Ch 20. Plant Growth and Reproduction Ch 21. Introduction to Fungi Ch 22. Introduction to Invertebrates Ch 23. Introduction to Vertebrates Ch 24. Physiology: Circulatory, Resp...
Flowers come in all shapes and sizes, yet all are designed to perform the same basic function;flowers are the plant’s reproductive organs. Produced inside flowers are the male and female cells that give rise to a plant’s offspring. Fertilization of the egg takes places inside a flower, as...
Sometimes, such as in the family Labiatae, the ovary is lobed and the style arises from the depression in the centre of the ovary. Such a style is termed as gynobasic, e.g., Ocimum. (d) Petaloid: When the style becomes flattened and coloured like petals, e.g., Canna, Iris. ...
The basic algorithms are shown in the table. b, The RNA binding propensity of GRP20 from catRAPID. The propensity ≥ 0.5 indicates potential RNA-binding ability, identifying the region with residue 92 to 115 as an RNA binding domain (highlighted by pink background). The overall interaction ...
extracted with methanol and analyzed using the integrated platform developed by Metabolon® (Durham, USA) consisting of a combination of three independent approaches: ultrahigh perform- ance liquid chromatography/tandem mass spectrometry (UHLC/MS/MS2) optimized for basic species, UHLC/ MS/MS2 optimized...
Basic Eng. 1960, 82, 35–45. [Google Scholar] [CrossRef] [Green Version] Afonso, M.; Fonteijn, H.; Fiorentin, F.S.; Lensink, D.; Mooij, M.; Faber, N.; Polder, G.; Wehrens, R. Tomato Fruit Detection and Counting in Greenhouses Using Deep Learning. Front. Plant Sci. 2020...
with a high correlation with key floral pigments. Gene sequences were converted into protein sequences using MEGA 7 (MEGA 7—Software finder—University of Kent). Subsequently, Basic Local Alignment Search Tool (BLAST) was used to compare homologous sequences and determine significant structural ...