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Silencing the Hydroxyproline-Rich Glycopeptide Systemin Precursor in Two Accessions of Nicotiana attenuata Alters Flower Morphology and Rates of Self-Pollination

机译:在两个渐弱烟草种中使前体中富含脯氨酸的糖肽系统沉默会改变花的形貌和自花率

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Systemins and their hydroxyproline-rich glycopeptide systemin (ppHS) subfamily members are known to mediate antiherbivore defenses in some solanaceous taxa but not others; functions other than in defense remain largely unexplored. Nicotiana attenuata's ppHS is known not to function in herbivore defense. NappHS transcripts are abundant in flowers, particularly in pistils, and when two N. attenuata accessions from Utah and Arizona were transformed to silence NappHS by RNAi (IRsys), seed capsule production and seed number per capsule were reduced in both accessions. These reductions in reproductive performance could not be attributed to impaired pollen or ovule viability; hand-pollination of all IRsys lines of both accessions restored seed production per capsule to levels found in wild-type plants. Rather, changes in flower morphology that decreased the efficiency of self-pollination are likely responsible: IRsys plants of both accessions have flowers with pistils that protrude beyond their anthers. Because these changes in flower morphology are reminiscent of CORONATINE-INSENSITIVE1-silenced N. attenuata plants, we measured jasmonates (JAs) and their biosynthetic transcripts in different floral developmental stages, and found levels of JA-isoleucine (Ile)/leucine and threonine deaminase transcripts, which are abundant in wild-type pistils, to be significantly reduced in IRsys buds and flowers. Threonine deaminase supplies Ile for JA-Ile biosynthesis, and we propose that ppHS mediates JA signaling during flower development and thereby changes flower morphology. These results suggest that the function of ppHS family members in N. attenuata may have diversified to modulate flower morphology and thereby outcrossing rates in response to biotic or abiotic stresses.
机译:已知Systemin及其富羟基脯氨酸的糖肽systemin(ppHS)亚家族成员在某些茄科类群中介导抗草食动物防御,而在其他类群中则不能。除防御功能外,其他功能仍未开发。已知减毒烟草的ppHS在草食动物防御中不起作用。 NappHS转录本在花中特别是雌蕊中含量很高,并且当两个来自犹他州和亚利桑那州的减毒猪笼草的种被RNAi(IRsys)转化为NappHS沉默时,两种种的种荚产量和每粒种子的数量均减少了。这些生殖能力的下降不能归因于花粉或胚珠活力的降低。对两个种的所有IRsys系进行手工授粉,将每个胶囊的种子产量恢复到野生型植物中发现的水平。相反,花形的变化会降低自花授粉的效率,这可能是造成这种情况的原因:两个种的IRsys植物的花都带有长出其花药的雌蕊。由于花形的这些变化使人联想到CORONATINE-INSENSITIVE1-沉默的淡色猪笼草,我们在不同的花发育阶段测量了茉莉酸酯(JAs)及其生物合成转录本,并发现了JA-异亮氨酸(Ile)/亮氨酸和苏氨酸脱氨酶的水平。在野生型雌蕊中丰富的转录本,在IRsys芽和花中会显着减少。苏氨酸脱氨酶为JA-Ile的生物合成提供了Ile,我们建议ppHS在花发育过程中介导JA信号传导,从而改变花的形态。这些结果表明,ppHS家族成员在淡色猪笼草中的功能可能已经多样化,以调节花的形态,从而响应生物或非生物胁迫而产生异交率。

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