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本文引用的文献

1
Basal localization of the presumptive auxin transport carrier in pea stem cells.拟生长素运输载体在豌豆茎细胞中的基础定位。
Science. 1983 Jun 17;220(4603):1297-300. doi: 10.1126/science.220.4603.1297.
2
Quantification of Indole-3-Acetic Acid in Dark-Grown Seedlings of the Diageotropica and Epinastic Mutants of Tomato (Lycopersicon esculentum Mill.).番茄(Lycopersicon esculentum Mill.)的斜生和偏上性突变体黑暗生长幼苗中吲哚-3-乙酸的定量分析
Plant Physiol. 1988 Nov;88(3):780-4. doi: 10.1104/pp.88.3.780.
3
Insensitivity of the diageotropica tomato mutant to auxin.斜生番茄突变体对生长素不敏感。
Plant Physiol. 1986 Nov;82(3):713-7. doi: 10.1104/pp.82.3.713.
4
Stress-induced Ethylene Production in the Ethylene-requiring Tomato Mutant Diageotropica.胁迫诱导乙烯生成在乙烯需要的番茄突变体 Diageotropica 中。
Plant Physiol. 1980 Feb;65(2):327-30. doi: 10.1104/pp.65.2.327.
5
Some Physiological Characteristics of the Ethylene-requiring Tomato Mutant Diageotropica.需要乙烯的番茄突变体 Diageotropica 的一些生理特性。
Plant Physiol. 1973 Oct;52(4):385-9. doi: 10.1104/pp.52.4.385.
6
Physical nature of irreversible deformation of plant cells.植物细胞不可逆变形的物理性质。
Plant Physiol. 1967 Nov;42(11):1545-52. doi: 10.1104/pp.42.11.1545.
7
The diageotropica mutant of tomato lacks high specific activity auxin binding sites.番茄的斜生突变体缺乏高比活性的生长素结合位点。
Science. 1989 Jul 7;245:52-4. doi: 10.1126/science.245.4913.52.
8
Active auxin uptake by zucchini membrane vesicles: quantitation using ESR volume and delta pH determinations.西葫芦膜囊泡的活性生长素摄取:使用电子自旋共振体积和ΔpH测定进行定量分析。
Proc Natl Acad Sci U S A. 1985 Oct;82(19):6541-5. doi: 10.1073/pnas.82.19.6541.
9
Control of plant cell enlargement by hydrogen ions.氢离子对植物细胞扩张的调控
Curr Top Dev Biol. 1977;11:187-214. doi: 10.1016/s0070-2153(08)60746-2.

番茄突变体“斜生”的生长素生理学

Auxin physiology of the tomato mutant diageotropica.

作者信息

Daniel S G, Rayle D L, Cleland R E

机构信息

Department of Biology and Molecular Biology Institute, San Diego State University, California 92182.

出版信息

Plant Physiol. 1989;91(3):804-7. doi: 10.1104/pp.91.3.804.

DOI:10.1104/pp.91.3.804
PMID:11537464
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1062078/
Abstract

The tomato (Lycopersicon esculentum, Mill.) mutant diageotropica (dgt) exhibits biochemical, physiological, and morphological abnormalities that suggest the mutation may have affected a primary site of auxin perception or action. We have compared two aspects of the auxin physiology of dgt and wild-type (VFN8) seedlings: auxin transport and cellular growth parameters. The rates of basipetal indole-3-acetic acid (IAA) polar transport are identical in hypocotyl sections of the two genotypes, but dgt sections have a slightly greater capacity for IAA transport. 2,3,5-Triiodobenzoic acid and ethylene reduce transport in both mutant and wild-type sections. The kinetics of auxin uptake into VFN8 and dgt sections are nearly identical. These results make it unlikely that an altered IAA efflux carrier or IAA uptake symport are responsible for the pleiotropic effects resulting from the dgt mutation. The lack of auxin-induced cell elongation in dgt plants is not due to insufficient turgor, as the osmotic potential of dgt cell sap is less (more negative) than that of VFN8. An auxin-induced increase in wall extensibility, as measured by the Instron technique, only occurs in the VFN8 plants. These data suggest dgt hypocotyls suffer a defect in the sequence of events culminating in auxin-induced cell wall loosening.

摘要

番茄(Lycopersicon esculentum, Mill.)突变体“斜生”(dgt)表现出生物化学、生理学和形态学异常,这表明该突变可能影响了生长素感知或作用的主要位点。我们比较了dgt和野生型(VFN8)幼苗生长素生理学的两个方面:生长素运输和细胞生长参数。两种基因型的下胚轴切段中,吲哚-3-乙酸(IAA)的向基极性运输速率相同,但dgt切段对IAA的运输能力略强。2,3,5-三碘苯甲酸和乙烯可降低突变体和野生型切段中的运输。VFN8和dgt切段对生长素的摄取动力学几乎相同。这些结果表明,IAA流出载体或IAA摄取同向转运体的改变不太可能是dgt突变导致的多效性效应的原因。dgt植株中生长素诱导的细胞伸长缺乏并非由于膨压不足,因为dgt细胞液的渗透势比VFN8的低(更负)。通过英斯特朗技术测量,生长素诱导的细胞壁伸展性增加仅发生在VFN8植株中。这些数据表明,dgt下胚轴在生长素诱导的细胞壁松弛所涉及的一系列事件中存在缺陷。