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[吲哚乙酸和模拟微重力对大白菜不定根形成的影响]

[Effects of IAA and stimulated microgravity on formation of adventitious roots of Chinese cabbage].

作者信息

Li X F, He Y K, Tang Z C

机构信息

Shanghai Institute of Plant Physiology, Chinese Academy of Sciences, 300 Fenglin Road, Shanghai 200032.

出版信息

Shi Yan Sheng Wu Xue Bao. 2000 Jun;33(2):179-87.

Abstract

Under the induction of indole-3-acetic acid (IAA), adventitious roots were differentiated on hypocotyl segments derived from seedlings of Chinese cabbage (Brassica campestris spp. pekinensis). IAA at concentration of 0.4-1.0 mg/L in solid MS medium incited many adventitious roots on hypocotyl segments. The earliest anatomic changes were observed on cut surface of hypocotyl segments under optical microscope 24 hours after IAA treatment: cytoplasmic and nuclear density became higher in a few of parenchytmatous cells adjacent to phloem in tissue of pericycle, followed by cell divisions. Lately, the dividing cells expanded and developed into root primordium from which root cap was differentiated. After five days, most roots protruded through hypocotyl cortex and appeared just below the cut surface. The rooting capacity of the segments derived from three regions of each hypocotyl was different. High level of IAA modified the polarity of root formation on segment inserted upside down and sucrose increased the function of IAA. Additionally, microgravity did not significantly change the rooting polarity under the condition of stimulated microgravity, but it increased the competence of explants to IAA treatment. The results presented here provided an experimental system for further investigation of molecular events associated with adventitious root initiation.

摘要

在吲哚 - 3 - 乙酸(IAA)的诱导下,大白菜(Brassica campestris spp. pekinensis)幼苗的下胚轴切段上分化出不定根。在固体MS培养基中,浓度为0.4 - 1.0 mg/L的IAA可促使下胚轴切段上长出许多不定根。IAA处理24小时后,在光学显微镜下观察到下胚轴切段切口表面最早出现的解剖学变化:中柱鞘组织中靠近韧皮部的一些薄壁细胞的细胞质和细胞核密度增加,随后细胞开始分裂。不久之后,分裂的细胞扩展并发育成根原基,根冠从中分化出来。五天后,大多数根穿过下胚轴皮层并出现在切口表面下方。每个下胚轴三个区域的切段生根能力不同。高浓度的IAA改变了倒置插入切段上根形成的极性,蔗糖增强了IAA的作用。此外,在模拟微重力条件下,微重力并未显著改变生根极性,但它提高了外植体对IAA处理的反应能力。本文的结果为进一步研究与不定根起始相关的分子事件提供了一个实验系统。

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