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The relatively strong signal at pH 7.5 (Figure 3) was surprising, as all amino acid transporters characterized from plants so far were H+-coupled systems and only a small, residual transport activity was expected at pH 7.5.
The previous literatures also evidenced that, the lipid derivatives including hexadecanoic acid, octadecenoic acid, L--ascorbic acid 2,6-dihexadecanoate, 1,2-benzenedicarboxylic acid, mono (2-ethylhexyl) ester, sigmasterol and γ-sitosterol characterized from plants and marine sources were found to be a powerful antimicrobial, antioxidant and anticancer activities.
During the past few decades, many endo-1,4-β-mannanases have been purified and characterized from plants, bacteria, fungi and metazoans, among which the filamentous fungi are considered to be good candidates for the industrial production of endo-1,4-β-mannanases [ 7].
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Similar genes have previously been characterized from plant parasitic nematodes [ 45], and individual genes have been shown to be expressed in a range of secretory tissues including the gland cells surrounding the main sense organs (amphids) and the hypodermis.
Within the plant-type Bgals, group a, contains 7 OsBgals and many Bgals that have been characterized from other plants (for example, 9 of Arabidopsis, 4 of C. arietinum and 3 of L. esculentum), including some with and some without C-terminal galactose-binding-lectin-like domains.
Polyphenols including flavonoids have been characterized from this plants which could be implicated for its hepatoprotective potential [116].
Genes coding for CKXs have been cloned and characterized from model plants, such as Arabidopsis (Werner et al. 2003; Werner et al. 2001) and rice (Ashikari et al. 2005).
Hundreds of diterpenoids with interesting bioactivities, such as tanshinone IIA (treat cardiovascular diseases), salvicine (a significant antitumor agent), neotanshinlactone (inhibition of breast cancer), and salvinorin A (the first non-nitrogenated opium receptor agonist), have been characterized from the plants within this genus [5, 6, 7, 8].
The first plant MYB, c-MYB-like TF, involved in anthocyanin biosynthesis, was isolated from maize (Paz-Ares et al. 1987); since then a number of MYB TFs have been isolated and characterized from different plants.
The response regulators represent the elements of bacterial two-component system and have been characterized from dicot plants like Arabidopsis but little information is available on the monocots, including the cereal crops.
A great number of PIs have been characterized from different plant species and engineered into crop plants for protections against pest and pathogens [ 1– 4].
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CEO of Professional Science Editing for Scientists @ prosciediting.com