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首页> 外文期刊>Journal of Agricultural Science >Auxins Regulations of Branched Spike Development and Expression of TFL, a LEAFY-Like Gene in Branched Spike Wheat (Triticum aestivum)
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Auxins Regulations of Branched Spike Development and Expression of TFL, a LEAFY-Like Gene in Branched Spike Wheat (Triticum aestivum)

机译:穗状分支小麦(Triticum aestivum)中分支穗发育和TFL(一种类似于LEAFY的基因)表达的生长素调控

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摘要

Branched spike wheat is a hexaploid germplasm with branched rachis on its main rachises, and the crucial period for branched rachises occurrence and development is just after the two ridges stage of shoot apex. Natural [indole-3-acetic acid (IAA), indole-3butyric acid (IBA)] and synthetic [(1-naphthaleneacetic acid (NAA), 2,4-Dichlorophenoxyacetic acid (2,4-D)] auxins were applied at this period to investigate the spike traits, seedling growth and photosynthesis related characters and expression of a putative homologue of the LEAFY in branched spike wheat. The four types of experienced auxins induced similar effects on these foresaid characters, although the impact extents were different among the auxins treatments. More branched rachis, spikelets, fertile florets and longer branched rachis were obtained in plants with IAA and IBA at 0.1 mM or NAA and 2,4-D at 1.0mM than those plants with no auxin treated. Auxin treatments also increased fresh and dry mass, photosynthetic pigment and parameters. TFL, a LEAFY-like gene was cloned in branched spike wheat and TFL mRNA expression was quantified using real-time reverse transcriptase-PCR. Application of the auxins accelerated the rise in TFL expression during the periods of branched rachises occurrence and extension. The data supports the hypothesis that auxins play a central role in the regulation branched spike development and TFL might correlate with the development of branched rachises in branched spike wheat.
机译:分支穗小麦是六倍体种质,在其主要穗状花序上具有分支的穗状花序,分支状穗状花序发生和发育的关键时期就在茎尖的两个脊期之后。天然[吲哚-3-乙酸(IAA),吲哚3-丁酸(IBA)]和合成的[(1-萘乙酸(NAA),2,4-二氯苯氧基乙酸(2,4-D)]植物生长素应用于在这段时期中,研究了支链穗状小麦的穗型性状,幼苗生长和光合作用的相关性状以及LEAFY的推定同源物的表达,尽管四种植物生长素的影响程度不同,但它们对上述前部性状的诱导作用相似。 IAA和IBA浓度为0.1 mM或NAA的植物和1.0mM浓度为2,4-D的植物比未用生长素处理的植物更多的枝条,小穗,可育的小花和更长的枝条。在干重小麦中克隆了LEAFY样基因TFL,并通过实时逆转录酶PCR定量分析了TFL mRNA的表达,生长素的应用促进了TFL表达的增加。分支Rachis发生和扩展期间的裂变。数据支持以下假设,即生长素在调控分支穗发育中起着核心作用,而TFL可能与分支穗小麦中分支羽状核苷的发育相关。

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