Answer:
Pathogenic fungus Ustilago maydis causing a plant disease which is known as corn smut (smuts on maize). This fungus grows in the ears of corn and changes corn kernels into black, and all above parts of the corn.
Corn smut showing a parasitic relationship with corn so, that it is using the corn as a way to spread spores, and causing pathogenic fungus disease.
Answer:
Pathogenic fungus Ustilago maydis causing a plant disease which is known as corn smut (smuts on maize). This fungus grows in the ears of corn and changes corn kernels into black, and all above parts of the corn.
Corn smut showing a parasitic relationship with corn so, that it is using the corn as a way to spread spores, and causing pathogenic fungus disease.
Explanation:
Answer:producers convert light energy into chemical energy
Explanation:
B. homozygous.
C. recessive.
D. heterozygous
cellular respiration
anaerobic respiration
cellular division
Taxonomic groups are used for biological classification. There are eight main taxonomic groups: domain, kingdom, phylum, class, order, family, genus and species, with the domain as the most inclusive and species as the least inclusive. If we take a look on Mammalia and Hominidae classification, we can assume that Mammalia represents class, and Hominidae represents family:
1. Domain: Eukarya
2. Kingdom: Animalia
3. Phylum: Chordata
4. Class: Mammalia
5. Order: Primates
6. Family: Hominidae
7. Genus: Homo
8. Species: Homo sapiens
Answer:
Class and Family
Explanation:
The type of muscle filaments that are arranged in a disorderly manner are known as smooth muscle filaments.
Smooth muscle is one of the three types of muscle tissue found in the human body, along with skeletal muscle and cardiac muscle. Unlike skeletal and cardiac muscle, which have a highly organized arrangement of filaments, smooth muscle filaments are arranged in a more random and disorderly manner.
Smooth muscle is found in the walls of organs and structures such as the intestines, blood vessels, and uterus. The disorderly arrangement of smooth muscle filaments allows for greater flexibility and adaptability in these organs, as they can stretch and contract in different directions.
The lack of a highly organized pattern in smooth muscle filaments contributes to the smooth muscle's ability to generate slow, sustained contractions over extended periods of time. This is important for functions such as peristalsis in the digestive system or maintaining blood pressure in the blood vessels.
In summary, smooth muscle filaments are arranged in a disorderly manner, which allows for flexibility and sustained contractions in organs and structures throughout the body.