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논문명(한글), 논문명(영문), 성과주관부서, 품목코드, 학술지명, 주저자, 연도, 성과적용일, 첨부파일, 내용으로 구성된 글 상세입니다.
논문명(한글) |
Heat Shock Proteins and Antioxidant Genes Involved in Heat Combined with Drought Stress Responses in Perennial Rye Grass |
논문명(영문) |
Heat Shock Proteins and Antioxidant Genes Involved in Heat Combined with Drought Stress Responses in Perennial Rye Grass |
성과주관부서 |
국립축산과학원 초지사료과 |
품목코드 |
축산 / 조사료 / 사료작물 |
학술지명 |
Life-Basel |
주저자 |
라하만아티쿨 |
성과년도 |
2022 |
성과적용일 |
2022년09월 |
The frequent occurrence of heat and drought stress can severely reduce agricultural production
of field crops. In comparison to a single stress, the combination of both heat (H) and drought
(D) further reduce plant growth, survival and yield. This study aimed to explore the transcriptional
responses of heat shock protein (HSP) and antioxidant genes under H combined D stress in perennial
rye grass (PRG). The results demonstrated that oxidative stress indicators (hydrogen peroxide,
lipid peroxidation) significantly increased, particularly in the case of combined H and D treatment,
suggesting that oxidative stress-induced damage occurred in plants under the combined stresses.
Transcriptional responses of heat shock protein 70 (HSP70), heat shock protein 90-6 (HSP90-6), and
the mitochondrial small heat shock protein HSP26.2 (HSP26.2) occurred rapidly, and showed high
level of expression particularly under H and D stress. Antioxidant genes including ascorbate peroxidase
(APX), glutathione reductase (GR), monodehydroascorbate reductase (MDHAR), dehydroascorbate
reductase (DHAR), catalase (CAT), copper–zinc superoxide dismutase (Cu/ZnSOD),
peroxidase (POD), ferredoxin–thioredoxin (FTR), thioredoxin (Trx), 2-cysteine peroxiredoxin (2-Cys
Prx) showed response to combined H and D, followed by either D or H stress alone in rye grass. An
interactome map revealed the close partnership of these heat shock protein genes and antioxidant
genes, respectively. These candidate genes were predominantly linked to stress responses and antioxidant
defense in plants. These findings may advance our understanding about the HSP and the
antioxidant genes underlying combined abiotic stress response and tolerance in perennial rye grass.