Oxygen-depleted zones inside reproductive structures of Brassicaceae: implications for oxygen control of seed development.

D. Porterfield, A. Kuang, P. Smith, M. Crispi, M. Musgrave
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引用次数: 75

Abstract

Growth of Arabidopsis thaliana (L.) Heynh. in decreasing oxygen partial pressures revealed a linear decrease in seed production below 15 kPa, with a complete absence of seed production at 2.5 kPa oxygen. This control of plant reproduction by oxygen had previously been attributed to an oxygen effect on the partitioning between vegetative and reproductive growth. However, plants grown in a series of decreasing oxygen concentrations produced progressively smaller embryos that had stopped developing at progressively younger stages, suggesting instead that their growth is limited by oxygen. Internal oxygen concentrations of buds, pistils, and developing siliques of Brassica rapa L. and siliques of Arabidopsis were measured using a small-diameter glass electrode that was moved into the structures using a micromanipulator. Oxygen partial pressures were found to be lowest in the developing perianth (11.1 kPa) and pistils (15.2 kPa) of the unopened buds. Pollination reduced oxygen concentration inside the pistils by 3 kPa after just 24 h. Inside Brassica silique locules, partial pressures of oxygen averaged 12.2 kPa in darkness, and increased linearly with increasing light levels to 16.2 kPa. Measurements inside Arabidopsis siliques averaged 6.1 kPa in the dark and rose to 12.2 kPa with light. Hypoxia in these microenvironments is postulated to be the point of control of plant reproduction by oxygen.
芸苔科植物生殖结构内的缺氧带:对种子发育氧控制的意义。
拟南芥的生长Heynh。在降低氧分压时,种子产量在15 kPa以下呈线性下降,在2.5 kPa时完全不产生种子。氧气对植物繁殖的控制以前被认为是由于氧气对营养生长和生殖生长之间分配的影响。然而,在一系列氧气浓度下降的环境中生长的植物产生的胚胎越来越小,在越来越年轻的阶段就停止了发育,这表明它们的生长受到氧气的限制。利用微型机械臂将小直径玻璃电极移入结构中,测量了芥蓝和拟南芥芽、雌蕊、发育中的硅油和硅油的内部氧浓度。未开放芽发育中的花被(11.1 kPa)和雌蕊(15.2 kPa)的氧分压最低。授粉24 h后雌花内氧浓度降低3 kPa。在黑暗条件下,芸蓝花室内氧分压平均为12.2 kPa,随着光照水平的增加,氧分压呈线性增加,达到16.2 kPa。在黑暗条件下,拟南芥内部的测量值平均为6.1 kPa,在光照条件下上升到12.2 kPa。这些微环境中的缺氧被认为是植物通过氧气繁殖的控制点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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