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首页> 外文期刊>Journal of Plant Physiology >Expression analysis of ethylene synthesis and signalling genes in kiwifruit stigmatic arms and their involvement in programmed cell death processes
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Expression analysis of ethylene synthesis and signalling genes in kiwifruit stigmatic arms and their involvement in programmed cell death processes

机译:乙烯合成术中乙烯合成与信号基因的表达分析及其在编程细胞死亡过程中的参与

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摘要

Kiwifruit (Actinidia chinensis var. deliciosa (A. Chev) A. Chev.) is a widely cultivated crop due to the nutritional value of its fruits. Its commercialization is related to the fruit size, which is directly linked with the number of seeds and, consequently, with pollination. In this dioecious species pollination is dependent on a short effective pollination period which is related to a Programmed Cell Death (PCD) process. M the same time, this PCD process allows the growth of many pollen tubes. Several studies suggest that ethylene can play an important role in PCD in a number of systems. In this report, we determined the full sequence of the AcACS gene, encoding the enzyme that catalyses a rate-limiting step of the ethylene synthesis. Next, we monitored the expression pattern of this gene as well as of other genes involved in ethylene synthesis (ACO2-5) and signalling (AdERS1 alpha, AdERS1b, AdETR1, AdETR2, AdETR3, AdCTR1, AdCTR2, AdEIL1) in pollinated and non-pollinated stigmatic arms of kiwifruit female flowers. The relative expression patterns observed for AcACS, ACOs and ethylene perception and signalling genes (AdERS1, AdETR1, AdCTR1 and AdEIL1) showed that they are expressed before anthesis. After anthesis, expression of the studied genes was detected earlier in pollinated than in non-pollinated stigmatic arms, as it was previously determined for PCD hallmarks. In addition, the expression pattern of the studied genes showed a clear relationship with the PCD hallmarks described in a previous report in the secretory tissue both in non-pollinated stigmatic arms (related to the short EPP in this species) and in pollinated ones (related to the growth of many pollen tubes during progamic phase). Overall, these results suggest an involvement of ethylene with PCD contributing to the high reproductive success of this species.
机译:Kiwifruit(Actinidia chinensis var。Deliciosa(A.Chev)A. Chev。)由于其水果的营养价值,是一种广泛栽培的作物。其商业化与果实尺寸有关,果实尺寸与种子的数量直接与授粉有关。在这种小型物种授粉中取决于与编程的细胞死亡(PCD)过程有关的短暂有效授粉期。 M同时,这种PCD过程允许许多花粉管的生长。一些研究表明,乙烯可以在许多系统中在PCD中发挥重要作用。在本报告中,我们确定了ACACS基因的全序列,编码催化乙烯合成率限制步骤的酶。接下来,我们监测该基因的表达模式以及授予授粉和非 - 猕猴桃女性花授粉的魔术臂。为ACACS,ACOS和乙烯感知和信号基因(Aders1,AdEt1,AdCTR1和Adeil1)观察到的相对表达模式表明它们在波动前表达。在开花前后,在授粉之前检测研究的基因的表达,而不是在非授粉的耻骨臂中检测到,因为它以前确定了PCD标志。此外,研究的基因的表达模式与在非授粉的耻骨(与该物种的短EPP相关)和授粉中的分泌物组织中的先前报告中描述的PCD标志的表达模式显示了明显的关系(相关在突发期期间许多花粉管的生长)。总体而言,这些结果表明乙烯与PCD的涉及有助于这种物种的高生殖成功。

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