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5-Aminolevulinic Acid Thins Pear Fruits by Inhibiting Pollen Tube Growth via Ca2+-ATPase-Mediated Ca2+ Efflux

机译:5-氨基乙酰丙酸通过抑制Ca2 + -ATPase介导的Ca2 +外流的花粉管生长而使梨果实变薄

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摘要

Chemical fruit thinning has become a popular practice in modern fruit orchards for achieving high quality fruits, reducing costs of hand thinning and promoting return bloom. However, most of the suggested chemical thinners are often concerned for their detrimental effects and environmental problems. 5-Aminolevulic acid (ALA) is a natural, nontoxic, biodegradable, and environment-friendly plant growth regulator. One of its outstanding roles is improving plant photosynthesis and fruit quality. Here, results showed that applying 100–200 mg/L ALA at full bloom stage significantly reduced pear fruit set. Both in vivo and in vitro studies showed that ALA significantly inhibited pollen germination and tube growth. ALA decreased not only cytosolic Ca2+ concentration ([Ca2+]cyt) but also “tip-focused” [Ca2+]cyt gradient, indicating that ALA inhibited pollen tube growth by down-regulating calcium signaling. ALA drastically enhanced pollen Ca2+-ATPase activity, suggesting that ALA-induced decrease of calcium signaling probably resulted from activating calcium pump. The significant negative correlations between Ca2+-ATPase activity and pollen germination or pollen tube length further demonstrated the critical role of calcium pump in ALA's negative effect on pollen germination. Taken together, our results suggest that ALA at low concentrations is a potential biochemical thinner, and it inhibits pollen germination and tube growth via Ca2+ efflux by activating Ca2+-ATPase, thereby thinning fruits by preventing fertilization.
机译:在现代果园中,化学水果稀疏已成为一种流行的做法,以实现高质量的水果,减少手工稀疏的成本并促进返果。但是,大多数建议的化学稀释剂通常会因其有害作用和环境问题而受到关注。 5-氨基乙酰丙酸(ALA)是一种天然,无毒,可生物降解且环保的植物生长调节剂。它的杰出作用之一是改善植物的光合作用和果实品质。在这里,结果表明,在盛花期施用100–200 mg / L ALA可以显着减少梨果实的坐果。体内和体外研究均显示ALA显着抑制花粉萌发和管生长。 ALA不仅降低了胞质Ca 2 + 的浓度([Ca 2 + ] cyt),而且降低了“尖端” [Ca 2 + ] cyt梯度,表明ALA通过下调钙信号传导来抑制花粉管生长。 ALA显着提高了花粉Ca 2 + -ATPase的活性,提示ALA诱导的钙信号下降可能是由激活钙泵引起的。 Ca 2 + -ATPase活性与花粉萌发或花粉管长度之间显着的负相关性进一步证明了钙泵在ALA对花粉萌发的负面影响中的关键作用。综上所述,我们的研究结果表明低浓度的ALA是一种潜在的生化稀释剂,它通过激活Ca 2 + -通过抑制Ca 2 + -的流出而抑制花粉萌发和管的生长。 ATPase,从而通过防止受精来疏果。

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