logo
calendar7 Sentabr 2022
view64
Main language:Uzbek

SALINE TOLERANT GENES AND ITS APPLICATION IN PLANT BIOTECHNOLOGY

Field of Science:
pdf

63187b9dce51c.pdf

PDF

ARTICLE ANNOTATION

quote
This article provides data on methods for producing by scientists salt tolerant biotechnological plants by transforming stress resistance genes from salt tolerant plants or altering the expression of existing genes, as well as data on the activity of these genes.

AUTHORS

V.Kamburova

ЎзР ФА Геномика ва биоинформатика маркази

A.Makamov

ЎзР ФА Геномика ва биоинформатика маркази

G.Mamatkulova

ЎзР ФА Геномика ва биоинформатика маркази

F.Radjabov

ЎзР ФА Геномика ва биоинформатика маркази

I.Salaxutdinov

ЎзР ФА Геномика ва биоинформатика маркази

N.Raxmatova

ЎзР ФА Геномика ва биоинформатика маркази

SH.Mamatkulova

ЎзР ФА Геномика ва биоинформатика маркази

Tags

# трансформация# transformation# стресс# stress# salt tolerance# gene# ген# солеустойчивость# шўрга чидамлилик# транскрипцион факторлар# A.thaliana# оверэкспрессия# транскрипционные факторы# transcription factors# A. thaliana# overexpression

OTHER ARTICLES IN THIS JOURNAL

Rate Article

0
0 ratings
5
4
3
2
1

Article Identifiers

References

Abebe T, Guenzi AC, Martin B, (2003) Tolerance of mannitol-accumulating transgenic wheat to water stress and salinity. Plant Physiol 131:1748-1755

Ahmad R, Kim MD, Back KH, Kim HS, Lee HS, Kwon SY, Murata N, Chung WI, Kwak SS (2008) Stress-induced expression of choline oxidase in potato plant chloroplasts confers enhanced tolerance to oxidative, salt, and drought stresses. Plant Cell Rep 27:687-698

Cortina C, Culiáñez-Macià FA (2005) Tomato abiotic stress enhanced tolerance by trehalose biosynthesis. Plant Sci 169:75-82