通过减数分裂核恢复形成配子产生可育的两倍体F1 (oat×maize)植株。

Sexual Plant Reproduction Pub Date : 2012-06-01 Epub Date: 2012-02-25 DOI:10.1007/s00497-012-0182-7
R G Kynast, D W Davis, R L Phillips, H W Rines
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引用次数: 13

摘要

杂交(oat×maize)受精卵发育成具有完整的燕麦染色体补体但没有玉米染色体的真单倍体植株和具有完整的燕麦染色体补体但保留不同数量的玉米染色体的非真单倍体植株。杂交胚胎中玉米染色体的消除是由胚胎发生早期的单系基因组丢失引起的。这些单倍体植物中有一些自花授粉的小穗的结实率高达50%。高育性主要是由数量未减少的雌配子和雄配子的形成(未减少=3x+0…3=21…24条染色体)引起的。配子的形成涉及减数分裂核的恢复。恢复过程是由另一种减数分裂引起的。它遵循levigatu型半异型分裂的模式,但在末期I向运动间期过渡时形成核膜,类似于pygaera型伪同型分裂的模式。我们建议将这种特殊的过程组合命名为单倍体减数分裂恢复。我们讨论了配子形成的特定过程在F1 (oat×maize)植物中的应用和意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gamete formation via meiotic nuclear restitution generates fertile amphiploid F1 (oat×maize) plants.

Hybrid (oat×maize) zygotes developed into euhaploid plants with complete oat chromosome complements without maize chromosomes and into aneuhaploid plants with complete oat chromosome complements and different numbers of retained individual maize chromosomes. The elimination of maize chromosomes in the hybrid embryo is caused by uniparental genome loss during early steps of embryogenesis. Some of these haploid plants set seed in up to 50% of their self-pollinated spikelets. The high fertility was found to be mainly caused by formation of numerically unreduced female and male gametes (nunreduced=3x+0…3=21…24 chromosomes). Gamete formation involves meiotic nuclear restitution. The restitution process is caused by an alternative type of meiosis. It follows the model of levigatum-type semi-heterotypic divisions, but with a formation of the nuclear membrane at the transition from telophase I to interkinesis, which resembles the model of pygaera-type pseudo-homotypic divisions. We propose the name haploid meiotic restitution for this particular process combination. We discuss the use and implications of the specific process of gamete formation in F1 (oat×maize) plants.

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Sexual Plant Reproduction
Sexual Plant Reproduction 生物-生殖生物学
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