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花粉液泡及其意义。

Pollen vacuoles and their significance.

机构信息

Dipartamento di Scienze Ambientali Giacomino Sarfatti, Universita degli Studi di Siena, via PA Mattioli 4, 53100, Siena, Italy.

出版信息

Planta. 2011 Aug;234(2):217-27. doi: 10.1007/s00425-011-1462-4. Epub 2011 Jun 26.

Abstract

Vacuoles of several types can be observed in pollen throughout its development. Their physiological significance reflects the complexity of the biological process leading to functional pollen grains. Vacuolisation always occurs during pollen development but when ripe pollen is shed the extensive translucent vacuoles present in the vegetative parts in previous stages are absent. Vacuole functions vary according to developmental stage but in ripe pollen they are mainly storage sites for reserves. Vacuoles cause pollen to increase in size by water accumulation and therefore confer some degree of resistance to water stress. Modalities of vacuolisation occur in pollen in the same manner as in other tissues. In most cases, autophagic vacuoles degrade organelles, as in the microspore after meiosis, and can be regarded as cytoplasm clean-up following the transition from the diploid sporophytic to the haploid gametophytic state. This also occurs in the generative cell but not in sperm cells. Finally, vacuoles have a function when microspores are used for pollen embryogenesis in biotechnology being targets for stress induction and afterwards contributing to cytoplasmic rearrangement in competent microspores.

摘要

在花粉的整个发育过程中,可以观察到几种类型的液泡。它们的生理意义反映了导致功能性花粉粒的生物过程的复杂性。液泡化总是在花粉发育过程中发生,但当成熟花粉脱落时,在前一阶段的营养部分中存在的广泛的半透明液泡就不存在了。液泡的功能根据发育阶段而有所不同,但在成熟花粉中,它们主要是储备物质的储存场所。液泡通过水分积累使花粉增大,从而赋予花粉一定程度的抗水胁迫能力。液泡化的方式在花粉中与在其他组织中相同。在大多数情况下,自噬泡降解细胞器,如减数分裂后的小孢子,并且可以被视为从二倍体孢子体向单倍体配子体状态过渡后的细胞质清理。这也发生在生殖细胞中,但不在精子细胞中。最后,当微孢子用于生物技术中的花粉胚胎发生时,液泡具有功能,它们是应激诱导的靶标,随后有助于有能力的微孢子中的细胞质重排。

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