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2
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Plant Physiol. 1982 Nov;70(5):1277-82. doi: 10.1104/pp.70.5.1277.
5
Effects of the herbicide san 9789 on photomorphogenic responses.除草剂san 9789对光形态建成反应的影响。
Plant Physiol. 1979 Mar;63(3):481-5. doi: 10.1104/pp.63.3.481.
6
Interaction of Chloroplasts with Inhibitors: Location of Carotenoid Synthesis and Inhibition during Chloroplast Development.叶绿体与抑制剂的相互作用:叶绿体发育过程中类胡萝卜素合成和抑制的位置。
Plant Physiol. 1979 Feb;63(2):392-8. doi: 10.1104/pp.63.2.392.
7
Increase in linolenic Acid is not a prerequisite for development of freezing tolerance in wheat.亚麻酸含量增加不是小麦抗冻性发育的前提条件。
Plant Physiol. 1979 Jan;63(1):5-8. doi: 10.1104/pp.63.1.5.
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Comparative Investigation of the Action of Several Chlorosis-inducing Herbicides on the Biogenesis of Chloroplasts and Leaf Microbodies.几种导致植物缺绿症除草剂对叶绿体和叶质体生物发生作用的比较研究。
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9
Simultaneous Inhibition of Linolenic Acid Synthesis in Winter Wheat Roots and Frost Hardening by BASF 13-338, a Derivative of Pyridazinone.哒嗪酮衍生物巴斯夫13 - 338对冬小麦根系亚麻酸合成及抗冻锻炼的同时抑制作用
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Inhibition of linolenic Acid synthesis and modification of chilling resistance in cotton seedlings.抑制亚麻酸合成与棉花幼苗抗冷性的修饰。
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本文引用的文献

1
Changes in Lipid Composition during Greening of Etiolated Pea Seedlings.叶绿素合成过程中黄化豌豆幼苗脂类成分的变化。
Plant Physiol. 1971 Feb;47(2):329-34. doi: 10.1104/pp.47.2.329.
2
Chloroplast composition and structure differences in a soybean mutant.大豆突变体的叶绿体组成和结构差异。
Plant Physiol. 1970 Nov;46(5):692-8. doi: 10.1104/pp.46.5.692.
3
Chloroplast Development in 4-Chloro-5-(dimethylamino)-2-(alpha,alpha,alpha-trifluoro-m-tolyl)-3 (2H)-pyridazinone (Sandoz 6706)-treated Wheat Seedlings: A Pigment, Ultrastructural, and Ultracentrifugal Study.4-氯-5-(二甲基氨基)-2-(α,α,α-三氟间甲苯基)-3(2H)-哒嗪酮(山道士6706)处理的小麦幼苗中的叶绿体发育:色素、超微结构及超速离心研究
Plant Physiol. 1970 Jun;45(6):807-10. doi: 10.1104/pp.45.6.807.
4
Uptake and metabolism of vitamins e and k by pea stem sections.豌豆茎段对维生素 E 和 K 的吸收与代谢。
Plant Physiol. 1967 Jun;42(6):859-62. doi: 10.1104/pp.42.6.859.
5
Growth Promotion in Pea Stem Sections. II. By Natural Oils & Isoprenoid Vitamins.豌豆茎段中的生长促进作用。II. 天然油类与类异戊二烯维生素
Plant Physiol. 1962 Mar;37(2):158-64. doi: 10.1104/pp.37.2.158.
6
Growth Promotion in Pea Stem Sections. I. Stimulation of Auxin and Gibberellin Action by Alkyl Lipids.豌豆茎段的生长促进作用。I. 烷基脂质对生长素和赤霉素作用的刺激
Plant Physiol. 1960 Mar;35(2):262-9. doi: 10.1104/pp.35.2.262.
7
Fat-soluble vitamins.脂溶性维生素。
Annu Rev Biochem. 1962;31:491-514. doi: 10.1146/annurev.bi.31.070162.002423.
8
A simple method for the isolation and purification of total lipides from animal tissues.一种从动物组织中分离和纯化总脂质的简单方法。
J Biol Chem. 1957 May;226(1):497-509.
9
Some factors affecting the Hill reaction activity in cotton chloroplasts.一些影响棉花叶绿体中希尔反应活性的因素。
Plant Physiol. 1970 Apr;45(4):465-9. doi: 10.1104/pp.45.4.465.
10
Quantitative analysis of sulfolipid (sulfoquinovosyl diglyceride) and galactolipids (monogalactosyl and digalactosyl diglycerides) in plant tissues.植物组织中硫脂(磺基喹喔啉二甘油酯)和半乳糖脂(单半乳糖基二甘油酯和二半乳糖基二甘油酯)的定量分析。
Anal Biochem. 1968 Jan;22(1):74-88. doi: 10.1016/0003-2697(68)90261-3.

脂类物质与一种叶绿体发育的哒嗪酮抑制剂之间的相互作用。

Interactions of lipoidal materials and a pyridazinone inhibitor of chloroplast development.

作者信息

Hilton J L, John J B, Christiansen M N

机构信息

Plant Science Research Division, Agricultural Research Service, United States Department of Agriculture, Beltsville, Maryland 20705.

出版信息

Plant Physiol. 1971 Aug;48(2):171-7. doi: 10.1104/pp.48.2.171.

DOI:10.1104/pp.48.2.171
PMID:16657757
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC396825/
Abstract

Formation of chloroplast pigments was inhibited, and free fatty acids accumulated in mustard (Brassica juncea [L.] Coss.) cotyledons and in barley (Hordeum vulgare L.) first leaves developed after treatment with 4-chloro-5- (dimethylamino)-2- (alpha, alpha, alpha-trifluoro-m-tolyl) -3 (2H) -pyridazinone. The inhibitor reduced the amount of fatty acids found in polar lipids (galactolipids) of barley chloroplasts and increased the amount in nonpolar lipids while having little effect on total content of bound fatty acids. The inhibition of chlorophyll formation was circumvented by D-alpha-tocopherol acetate, phytol, farnesol, and squalene, and by unsaturated fatty acids and their methyl esters. The protective action can be explained partially by an interaction external to the plant whereby 4-chloro-5- (dimethylamino) -2- (alpha, alpha, alpha-trifluoro-m-tolyl) -3 (2H) -pyridazinone partitioned out of the aqueous phase and into the lipid phase, thus limiting availability of the inhibitor to plants. However, the amount of inhibitor reaching the cotyledons of tocopherol-protected mustard seedlngs was still in excess of the amount necessary to cause white foliage, but it failed to produce the effect. Tocopherol treatment did not prevent the 4-chloro-5- (dimethylamino) -2- (alpha, alpha, alpha-trifluoro-m-tolyl) -3 (2H) -pyridazinone-induced buildup of fatty acids in mustard cotyledons but did partially circumvent the effect in barley leaves. The amount of linolenic acid relative to linoleic acid was reduced in barley leaves and chloroplasts by 4-chloro-5- (dimethylamino) -2- (alpha, alpha, alpha-trifluoro-m-tolyl) -3 (2H) -pyridazinone action and this effect was circumvented by tocopherol.

摘要

用4-氯-5-(二甲基氨基)-2-(α,α,α-三氟间甲苯基)-3(2H)-哒嗪酮处理后,芥菜(Brassica juncea [L.] Coss.)子叶和大麦(Hordeum vulgare L.)第一片叶子中叶绿体色素的形成受到抑制,游离脂肪酸积累。该抑制剂减少了大麦叶绿体极性脂质(半乳糖脂)中脂肪酸的含量,增加了非极性脂质中脂肪酸的含量,而对结合脂肪酸的总含量影响不大。D-α-生育酚醋酸酯、叶绿醇、法尼醇、角鲨烯、不饱和脂肪酸及其甲酯可规避叶绿素形成的抑制作用。这种保护作用部分可通过植物外部的相互作用来解释,即4-氯-5-(二甲基氨基)-2-(α,α,α-三氟间甲苯基)-3(2H)-哒嗪酮从水相分配到脂质相,从而限制了抑制剂对植物的可用性。然而,到达生育酚保护的芥菜幼苗子叶的抑制剂量仍超过导致叶片变白所需的量,但未产生该效果。生育酚处理并未阻止4-氯-5-(二甲基氨基)-2-(α,α,α-三氟间甲苯基)-3(2H)-哒嗪酮诱导的芥菜子叶中脂肪酸的积累,但部分规避了对大麦叶片的影响。4-氯-5-(二甲基氨基)-2-(α,α,α-三氟间甲苯基)-3(2H)-哒嗪酮的作用使大麦叶片和叶绿体中亚麻酸相对于亚油酸的含量降低,而生育酚可规避这种影响。