기관회원 [로그인]
소속기관에서 받은 아이디, 비밀번호를 입력해 주세요.
개인회원 [로그인]

비회원 구매시 입력하신 핸드폰번호를 입력해 주세요.
본인 인증 후 구매내역을 확인하실 수 있습니다.

회원가입
서지반출
Membrane Degradation, Accumulation of Phosphatidic Acid, Stimulation of Catalase Activity and Nuclear DNA Fragmentation during 2,4-D-Induced Leaf Senescence in Mustard
[STEP1]서지반출 형식 선택
파일형식
@
서지도구
SNS
기타
[STEP2]서지반출 정보 선택
  • 제목
  • URL
돌아가기
확인
취소
  • Membrane Degradation, Accumulation of Phosphatidic Acid, Stimulation of Catalase Activity and Nuclear DNA Fragmentation during 2,4-D-Induced Leaf Senescence in Mustard
  • Membrane Degradation, Accumulation of Phosphatidic Acid, Stimulation of Catalase Activity and Nuclear DNA Fragmentation during 2,4-D-Induced Leaf Senescence in Mustard
저자명
Manoharan. Kumariah,Karuppanapandian. Thirupathi,Sinha. Pritam Bala,Prasad. Rajendra
간행물명
Journal of plant biology
권/호정보
2005년|48권 4호|pp.394-403 (10 pages)
발행정보
한국식물학회
파일정보
정기간행물|ENG|
PDF텍스트
주제분야
기타
이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
서지반출

기타언어초록

We investigated 2,4-D-induced leaf senescence in young mustard seedlings. A set of morphometric, biochemical and molecular parameters were analyzed to characterize senescence markers. In accordance with earlier reports, chloroplast-membrane degradation marked the early phase of leaf senescence based on the analysis of the galactolipid fraction. Degradation of grana occurred earlier to that of the envelope, as revealed by the relative level of their specific galactolipids, namely, monogalactosyl diglyceride and digalactosyl diglyceride. Phospholipids showed extensive degradation resulting in the accumulation of Iyso-derivatives of major phospholipids and phosphatidic acid (PA) in senescing leaves. Catalase activity was stimulated by 2,4-D and reflected scavenging of reactive oxygen species. Nuclear DNA degradation, a previously known death signal that represented a point of no return from progression of senescence, occurred late on the 4th day subsequent to 2,4-D supplementation. $AgNO_3$, an inhibitor of ethylene biosynthesis, inhibited leaf senescence by ca. $54\%$ based on PA content. Involvement of 2,4-D, ethylene and abscisic acid in leaf senescence is discussed in relation to hormonal interplay.