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Precocious pollen germination in Arabidopsis plants with altered callose deposition during microsporogenesis

机译:小孢子发生过程中拟南芥植物中早熟花粉的萌发,其ose质沉积发生改变

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摘要

Pollination is essential for seed reproduction and for exchanges of genetic information between individual plants. In angiosperms, mature pollen grains released from dehisced anthers are transferred to the stigma where they become hydrated and begin to germinate. Pollen grains of wild-type Arabidopsis thaliana do not germinate inside the anther under normal growth conditions. We report two Arabidopsis lines that produced pollen grains able to in situ precociously germinate inside the anther. One of them was a callose synthase 9 (cs9) knockout mutant with a T-DNA insertion in the Callose Synthase 9 gene (CalS9). Male gametophytes carrying a cs9 mutant allele were defective and no homozygous progeny could be produced. Heterozygous mutant plants (cs9/+) produced approximately 50% defective pollen grains with an altered male germ unit (MGU) and aberrant callose deposition in bicellular pollen. Bicellular pollen grains germinated precociously inside the anther. Another line, a transgenic plant expressing callose synthase 5 (CalS5) under the CaMV 35S promoter, also contained abnormal callose deposition during microsporogenesis and displaced MGUs in pollen grains. We also observed that precocious pollen germination could be induced in wild-type plants by incubation with medium containing sucrose and calcium ion and by wounding in the anther. These results demonstrate that precocious pollen germination in Arabidopsis could be triggered by a genetic alteration and a physiological condition. Keywords Arabidopsis - Precocious pollen germination - Callose - Callose synthase - Pollen development
机译:授粉对于种子繁殖和各个植物之间的遗传信息交换至关重要。在被子植物中,从开裂的花药中释放出的成熟花粉粒被转移到柱头,在柱头中它们被水合并开始发芽。在正常生长条件下,野生型拟南芥的花粉粒不会在花药内发芽。我们报告了两个拟南芥品系,它们产生的花粉粒能够在花药内早熟发芽。其中之一是在Callose Synthase 9基因(CalS9)中插入T-DNA的Callose Synthase 9(cs9)敲除突变体。携带cs9突变体等位基因的雄配子体有缺陷,不能产生纯合子代。杂合突变体植物(cs9 / +)产生约50%的花粉粒缺陷,其雄性生殖单位(MGU)发生了变化,双细胞花粉中的call质沉积异常。花药内的双细胞花粉粒早发芽。另一系,在CaMV 35S启动子下表达call质合酶5(CalS5)的转基因植物,在小孢子发生过程中也含有异常的call质沉积,并在花粉粒中置换了MGU。我们还观察到,通过与含蔗糖和钙离子的培养基孵育并在花药中受伤,可以在野生型植物中诱导早熟的花粉萌发。这些结果表明,拟南芥中的早熟花粉萌发可以由遗传改变和生理条件触发。拟南芥-早熟花粉萌发-ose-ose合成酶-花粉发育

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