类黄酮途径的遗传修饰改变了生长,并揭示了对增强的紫外线的灵活反应--叶片缩合单宁酸的作用。

Q3 Agricultural and Biological Sciences Plant-environment interactions (Hoboken, N.J.) Pub Date : 2020-12-28 eCollection Date: 2021-02-01 DOI:10.1002/pei3.10036
Paula Thitz, Ann E Hagerman, Tendry R Randriamanana, Virpi Virjamo, Minna Kosonen, Mika Lännenpää, Tommi Nyman, Lauri Mehtätalo, Sari Kontunen-Soppela, Riitta Julkunen-Tiitto
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引用次数: 0

摘要

某些酚类物质的积累是植物对增强的 UVB 辐射(280-315 纳米)的一种众所周知的反应,但很少有实验比较不同酚类物质群对 UVB 抵抗能力的相对重要性。为了研究酚类谱系的改变如何影响银桦(Betula pendula)对增强的 UVB 的反应和恢复能力,我们使用了针对二氢黄酮醇还原酶(DFR)、花青素合成酶(ANS)或花青素还原酶(ANR)的 RNA 干扰(RNAi)来改变酚类物质的积累。未经修饰的对照品系和经 RNAi 修饰的植株在温室中的环境或 +32% 增强紫外线剂量下生长了 51 天。RNAi 极大地影响了酚类物质的分布和植物的生长。RNAi 和 UVB 对生长或光合作用没有交互影响,这表明 RNAi 和未修饰的对照植物具有同等的抗逆性。UVB 的增强导致叶片黄酮类化合物和缩合单宁酸的积累,并增加了对照植物和 RNAi 改造植物上部叶片表面的茎腺和腺毛的密度。我们的研究结果并未表明缩合单宁具有光保护作用。然而,高类黄酮低单宁的DFRi和ANRi植株的生长下降意味着类黄酮和缩合单宁的平衡可能对植物的正常生长很重要。
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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Genetic modification of the flavonoid pathway alters growth and reveals flexible responses to enhanced UVB - Role of foliar condensed tannins.

Accumulation of certain phenolics is a well-known response of plants to enhanced UVB radiation (280-315 nm), but few experiments have compared the relative importance of different phenolic groups for UVB resilience. To study how an altered phenolic profile affects the responses and resilience of silver birch (Betula pendula) to enhanced UVB, we used RNA interference (RNAi) targeting dihydroflavonol reductase (DFR), anthocyanidin synthase (ANS), or anthocyanidin reductase (ANR) to change the accumulation of phenolics. The unmodified control line and RNAi-modified plants were grown for 51 days under ambient or +32% enhanced UVB dose in a greenhouse. RNAi greatly affected phenolic profile and plant growth. There were no interactive effects of RNAi and UVB on growth or photosynthesis, which indicates that the RNAi and unmodified control plants were equally resilient. UVB enhancement led to an accumulation of foliar flavonoids and condensed tannins, and an increase in the density of stem glands and glandular trichomes on upper leaf surfaces in both the control and RNAi-modified plants. Our results do not indicate a photoprotective role for condensed tannins. However, decreased growth of high-flavonoid low-tannin DFRi and ANRi plants implies that the balance of flavonoids and condensed tannins might be important for normal plant growth.

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CiteScore
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