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Delayed pollination and low availability of assimilates are major factors causing maize kernel abortion

机译:授粉延迟和同化物利用率低是造成玉米粒流产的主要因素

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摘要

Selective seed abortion is a survival strategy adopted by many species that sacrifices some seeds to allow the remaining ones to set. While in evolutionary terms this is a successful approach, it causes huge losses to crop yields. A pollination time gap (PTG) has been suggested to be associated with position-related grain abortion. To test this hypothesis, we developed a novel approach to alter the natural pattern of maize (Zea mays L.) pollination and to examine the impact of PTGs on kernel growth and the underlying physiological basis. When apical and basal kernels were synchronously pollinated, the basal kernels set and matured but the apical kernels were aborted at an early stage. Delaying pollination to the basal ovaries suppressed their development and reduced invertase activity and sugar levels, which allowed the apical kernels to set and grow normally. In situ localization revealed normal cell wall invertase activity in apical and basal kernels under synchronous pollination but reduced activity in the delayed-pollinated kernels independent of their position. Starch, which was abundant in basal kernel areas, was absent in the apical kernel regions under synchronous pollination but apparent with delayed pollination. Our analyses identified PTG-related sink strength and a low level of local assimilates as the main causes of grain abortion.
机译:选择性种子流产是许多物种采用的生存策略,即牺牲一些种子以允许剩余的种子结实。虽然从进化的角度来看,这是一种成功的方法,但它却给作物的单产带来了巨大的损失。授粉时间间隔(PTG)被认为与位置相关的谷粒流产有关。为了验证该假设,我们开发了一种新颖的方法来改变玉米(Zea mays L.)传粉的自然模式,并研究PTG对籽粒生长和潜在生理基础的影响。当顶核和基核被同步授粉时,基核凝结并成熟,但顶核在早期被中止。延迟授粉至基底卵巢抑制了它们的发育并降低了其转化酶活性和糖水平,这使得根尖能够正常生长。原位定位揭示了在同步授粉条件下顶端和基部籽粒中正常的细胞壁转化酶活性,但延迟授粉的籽粒中的细胞活性降低,而与它们的位置无关。在基础花粉区中富含淀粉,但在同步授粉的情况下,在顶粒区中没有淀粉,但延迟授粉时很明显。我们的分析确定了PTG相关的下沉强度和低水平的同化物是造成谷物流产的主要原因。

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