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Caspase-Like Activities Accompany Programmed Cell Death Events in Developing Barley Grains

机译:与半胱天冬酶类似的活动伴随着大麦籽粒发育过程中的程序性细胞死亡事件

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摘要

Programmed cell death is essential part of development and cell homeostasis of any multicellular organism. We have analyzed programmed cell death in developing barley caryopsis at histological, biochemical and molecular level. Caspase-1, -3, -4, -6 and -8-like activities increased with aging of pericarp coinciding with abundance of TUNEL positive nuclei and expression of HvVPE4 and HvPhS2 genes in the tissue. TUNEL-positive nuclei were also detected in nucellus and nucellar projection as well as in embryo surrounding region during early caryopsis development. Quantitative RT-PCR analysis of micro-dissected grain tissues revealed the expression of HvVPE2a, HvVPE2b, HvVPE2d, HvPhS2 and HvPhS3 genes exclusively in the nucellus/nucellar projection. The first increase in cascade of caspase-1, -3, -4, -6 and -8-like activities in the endosperm fraction may be related to programmed cell death in the nucellus and nucellar projection. The second increase of all above caspase-like activities including of caspase-9-like was detected in the maturating endosperm and coincided with expression of HvVPE1 and HvPhS1 genes as well as with degeneration of nuclei in starchy endosperm and transfer cells. The distribution of the TUNEL-positive nuclei, tissues-specific expression of genes encoding proteases with potential caspase activities and cascades of caspase-like activities suggest that each seed tissue follows individual pattern of development and disintegration, which however harmonizes with growth of the other tissues in order to achieve proper caryopsis development.
机译:程序性细胞死亡是任何多细胞生物发育和细胞稳态的重要组成部分。我们已经在组织学,生化和分子水平上分析了大麦颖果发育过程中的程序性细胞死亡。 Caspase-1,-3,-4,-6和-8样活性随果皮的衰老而增加,这与TUNEL阳性核的丰富以及组织中HvVPE4和HvPhS2基因的表达相吻合。在早期颖果发育过程中,在细胞核和细胞核投影以及胚胎周围区域中也检测到了TUNEL阳性细胞核。显微解剖组织的定量RT-PCR分析显示,HvVPE2a,HvVPE2b,HvVPE2d,HvPhS2和HvPhS3基因仅在细胞核/细胞核投影中表达。胚乳级分中半胱天冬酶-1,-3,-4,-6和-8样活性级联反应的首次增加可能与细胞的程序性细胞死亡和细胞核投射有关。在成熟的胚乳中检测到所有上述caspase样活性的第二次增加,包括caspase-9样,并与HvVPE1和HvPhS1基因的表达以及淀粉质胚乳和转移细胞中的核变性相符。 TUNEL阳性细胞核的分布,具有潜在caspase活性的蛋白酶编码基因的组织特异性表达以及caspase样活性的级联反应表明,每个种子组织遵循各自的发育和瓦解模式,但与其他组织的生长协调一致为了实现适当的颖果发育。

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