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脱落酸对玉米胚乳中程序性细胞死亡的调控

Regulation of programmed cell death in maize endosperm by abscisic acid.

作者信息

Young T E, Gallie D R

机构信息

Department of Biochemistry, University of California, Riverside 92521-0129, USA.

出版信息

Plant Mol Biol. 2000 Jan;42(2):397-414. doi: 10.1023/a:1006333103342.

DOI:10.1023/a:1006333103342
PMID:10794539
Abstract

Cereal endosperm undergoes programmed cell death (PCD) during its development, a process that is controlled, in part, by ethylene. Whether other hormones influence endosperm PCD has not been investigated. Abscisic acid (ABA) plays an essential role during late seed development that enables an embryo to survive desiccation. To examine whether ABA is also involved in regulating the onset of PCD during endosperm development, we have used genetic and biochemical means to disrupt ABA biosynthesis or perception during maize kernel development. The onset and progression of cell death, as determined by viability staining and the appearance of internucleosomal DNA fragmentation, was accelerated in developing endosperm of ABA-insensitive vp1 and ABA-deficient vp9 mutants. Ethylene was synthesized in vp1 and vp9 mutant kernels at levels that were 2-4-fold higher than in wild-type kernels. Moreover, the increase and timing of ethylene production correlated with the premature onset and accelerated progression of internucleosomal fragmentation in these mutants. Treatment of developing wild-type endosperm with fluridone, an inhibitor of ABA biosynthesis, recapitulated the increase in ethylene production and accelerated execution of the PCD program that was observed in the ABA mutant kernels. These data suggest that a balance between ABA and ethylene establishes the appropriate onset and progression of programmed cell death during maize endosperm development.

摘要

谷物胚乳在其发育过程中会经历程序性细胞死亡(PCD),这一过程部分受乙烯调控。其他激素是否影响胚乳PCD尚未得到研究。脱落酸(ABA)在种子发育后期起着至关重要的作用,使胚胎能够在脱水状态下存活。为了研究ABA是否也参与调控胚乳发育过程中PCD的起始,我们利用遗传学和生物化学方法在玉米籽粒发育过程中破坏ABA的生物合成或感知。通过活力染色和核小体间DNA片段化的出现来确定,ABA不敏感的vp1和ABA缺陷的vp9突变体发育中的胚乳中细胞死亡的起始和进程加快。乙烯在vp1和vp9突变体籽粒中的合成水平比野生型籽粒高2至4倍。此外,乙烯产生的增加和时间与这些突变体中核小体间片段化的过早起始和加速进程相关。用ABA生物合成抑制剂氟啶酮处理发育中的野生型胚乳,重现了乙烯产量的增加以及在ABA突变体籽粒中观察到的PCD程序的加速执行。这些数据表明,ABA和乙烯之间的平衡决定了玉米胚乳发育过程中程序性细胞死亡的适当起始和进程。

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