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2
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本文引用的文献

1
Photophysiology of the Elongated Internode (ein) Mutant of Brassica rapa: ein Mutant Lacks a Detectable Phytochrome B-Like Polypeptide.甘蓝型油菜伸长节间突变体 ein 的光生理学研究:ein 突变体缺乏可检测的光敏色素 B 类似多肽。
Plant Physiol. 1992 Nov;100(3):1442-7. doi: 10.1104/pp.100.3.1442.
2
Agrobacterium tumefaciens-mediated transformation of Arabidopsis thaliana root explants by using kanamycin selection.利用卡那霉素筛选进行拟南芥根外植体的根癌农杆菌介导转化。
Proc Natl Acad Sci U S A. 1988 Aug;85(15):5536-40. doi: 10.1073/pnas.85.15.5536.
3
The hy3 Long Hypocotyl Mutant of Arabidopsis Is Deficient in Phytochrome B.拟南芥hy3长下胚轴突变体缺乏光敏色素B。
Plant Cell. 1991 Dec;3(12):1263-1274. doi: 10.1105/tpc.3.12.1263.
4
Phytochrome B and at Least One Other Phytochrome Mediate the Accelerated Flowering Response of Arabidopsis thaliana L. to Low Red/Far-Red Ratio.光敏色素B和至少一种其他光敏色素介导拟南芥对低红/远红比率的加速开花反应。
Plant Physiol. 1994 Apr;104(4):1311-1315. doi: 10.1104/pp.104.4.1311.
5
Selected Components of the Shade-Avoidance Syndrome Are Displayed in a Normal Manner in Mutants of Arabidopsis thaliana and Brassica rapa Deficient in Phytochrome B.在拟南芥和白菜型油菜中缺乏光敏色素B的突变体中,避荫综合征的某些选定成分以正常方式表现出来。
Plant Physiol. 1993 Aug;102(4):1179-1184. doi: 10.1104/pp.102.4.1179.
6
Isolation and Initial Characterization of Arabidopsis Mutants That Are Deficient in Phytochrome A.拟南芥光敏色素A缺陷突变体的分离与初步鉴定
Plant Physiol. 1993 May;102(1):269-277. doi: 10.1104/pp.102.1.269.
7
A Temporarily Red Light-Insensitive Mutant of Tomato Lacks a Light-Stable, B-Like Phytochrome.番茄的一种暂时对红光不敏感的突变体缺乏一种光稳定的B类光敏色素。
Plant Physiol. 1995 Jul;108(3):939-947. doi: 10.1104/pp.108.3.939.
8
New lv Mutants of Pea Are Deficient in Phytochrome B.豌豆新的光敏感色素突变体缺乏光敏色素B。
Plant Physiol. 1995 Jun;108(2):525-532. doi: 10.1104/pp.108.2.525.
9
Primary Gastric Lymphoma.原发性胃淋巴瘤
Pathol Oncol Res. 1996;2(1-2):5-10. doi: 10.1007/BF02893940.
10
The rosette habit of Arabidopsis thaliana is dependent upon phytochrome action: novel phytochromes control internode elongation and flowering time.拟南芥的莲座状习性取决于光敏色素的作用:新型光敏色素控制节间伸长和开花时间。
Plant J. 1996 Dec;10(6):1127-34. doi: 10.1046/j.1365-313x.1996.10061127.x.

拟南芥生态型瓦西列夫斯基(Wassilewskija)的PHYD基因缺失揭示了光敏色素D在红/远红光感知中的作用。

A deletion in the PHYD gene of the Arabidopsis Wassilewskija ecotype defines a role for phytochrome D in red/far-red light sensing.

作者信息

Aukerman M J, Hirschfeld M, Wester L, Weaver M, Clack T, Amasino R M, Sharrock R A

机构信息

Department of Biochemistry, University of Wisconsin, Madison 53706, USA.

出版信息

Plant Cell. 1997 Aug;9(8):1317-26. doi: 10.1105/tpc.9.8.1317.

DOI:10.1105/tpc.9.8.1317
PMID:9286109
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC157000/
Abstract

The PHYD gene of the Wassilewskija (Ws) ecotype of Arabidopsis contains a 14-bp deletion (the phyD-1 mutation) beginning at amino acid 29 of the reading frame, resulting in translation termination at a nonsense codon 138 nucleotides downstream of the deletion end point. Immunoblot analyses showed that Ws lacks phyD but contains normal levels of phyA, phyB, and phyC. By backcrossing into the Ws and Landsberg erecta genetic backgrounds, we constructed sibling pairs of PHYD+ and phyD-1 lines and of phyB- PHYD+ and phyB- phyD- lines. Hypocotyl lengths after growth under white or red light increased sequentially in strains that were B+D+, B+D-, B-D+, and B-D-. In the Ws genetic background, an increase in petiole length, a reduction in cotyledon area and in anthocyanin accumulation in seedling stems, a diminished effect of an end-of-day pulse of far-red light on hypocotyl elongation, and a decrease in the number of rosette leaves at the onset of flowering were also seen sequentially in these lines. Thus, phyD, which is approximately 80% identical in amino acid sequence to phyB, acts in conjunction with phyB in regulating many shade avoidance responses. The existence of the apparently naturally occurring phyD-1 mutation indicates that phyD is not essential in some natural environments.

摘要

拟南芥Wassilewskija(Ws)生态型的PHYD基因在阅读框的第29个氨基酸处开始有一个14bp的缺失(phyD - 1突变),导致在缺失终点下游138个核苷酸处的一个无义密码子处翻译终止。免疫印迹分析表明,Ws缺乏phyD,但phyA、phyB和phyC的水平正常。通过回交至Ws和Landsberg erecta遗传背景,我们构建了PHYD +和phyD - 1系以及phyB - PHYD +和phyB - phyD - 系的同胞对。在白光或红光下生长后,B + D +、B + D -、B - D +和B - D -菌株的下胚轴长度依次增加。在Ws遗传背景下,这些品系中还依次观察到叶柄长度增加、子叶面积减小、幼苗茎中花青素积累减少、远红光日终脉冲对下胚轴伸长的影响减弱以及开花初期莲座叶数量减少。因此,phyD与phyB在氨基酸序列上约80%相同,它与phyB共同作用来调节许多避荫反应。明显自然发生的phyD - 1突变的存在表明,phyD在某些自然环境中并非必不可少。