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1
Roles of Embryo and Endosperm in Determining Niacin Content of Starchy and Sugary Maize Endosperms.胚和胚乳在决定粉质型和甜质型玉米胚乳烟酸含量中的作用
Plant Physiol. 1955 Jul;30(4):334-7. doi: 10.1104/pp.30.4.334.
2
A debranching enzyme deficiency in endosperms of the sugary-1 mutants of maize.玉米糖突变体胚乳中去分枝酶缺乏。
Plant Physiol. 1984 Feb;74(2):324-8. doi: 10.1104/pp.74.2.324.
3
B Vitamins in Starchy and Sugary Maize Endosperms.淀粉质和含糖玉米胚乳中的B族维生素
Plant Physiol. 1954 Mar;29(2):190-4. doi: 10.1104/pp.29.2.190.
4
Imprinted gene expression in maize starchy endosperm and aleurone tissues of reciprocal F1 hybrids at a defined developmental stage.在特定发育阶段,正反交F1杂种玉米淀粉胚乳和糊粉层组织中的印记基因表达。
Genes Genomics. 2018 Jan;40(1):99-107. doi: 10.1007/s13258-017-0613-9. Epub 2017 Sep 30.
5
Nicotinic acid in sugary and starchy maize.含糖和淀粉质玉米中的烟酸
Nature. 1946 Jan 26;157:109. doi: 10.1038/157109a0.
6
Temporal small RNA transcriptome profiling unraveled partitioned miRNA expression in developing maize endosperms between reciprocal crosses.时序小RNA转录组分析揭示了正反交发育中的玉米胚乳中miRNA表达的分区情况。
Front Plant Sci. 2015 Sep 15;6:744. doi: 10.3389/fpls.2015.00744. eCollection 2015.
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Presence of ADP-Glucose Pyrophosphorylase in Shrunken-2 and Brittle-2 Mutants of Maize Endosperm.ADP-葡萄糖焦磷酸化酶在玉米胚乳皱缩-2 和易碎-2 突变体中的存在。
Plant Physiol. 1969 Jul;44(7):1058-62. doi: 10.1104/pp.44.7.1058.
8
Comparative transcriptomics reveals the difference in early endosperm development between maize with different amylose contents.比较转录组学揭示了不同直链淀粉含量玉米胚乳早期发育的差异。
PeerJ. 2019 Aug 28;7:e7528. doi: 10.7717/peerj.7528. eCollection 2019.
9
Physicochemical properties of starches from vitreous and floury endosperms from the same maize kernels.同一玉米籽粒的玻璃质和粉质胚乳淀粉的理化性质。
Food Chem. 2019 Sep 1;291:149-156. doi: 10.1016/j.foodchem.2019.04.024. Epub 2019 Apr 6.
10
The Linkage Relations between the Factors for Tunicate Ear and Starchy-Sugary Endosperm in Maize.玉米中筒状穗因素与粉质-甜质胚乳之间的连锁关系。
Genetics. 1921 May;6(3):209-40. doi: 10.1093/genetics/6.3.209.

本文引用的文献

1
Mitotic Nondisjunction in the Case of Interchanges Involving the B-Type Chromosome in Maize.玉米中涉及B型染色体互换情况下的有丝分裂不分离
Genetics. 1947 Jul;32(4):391-409. doi: 10.1093/genetics/32.4.391.
2
Selection of Pseudo-Starchy Endosperm in Maize.玉米中假淀粉胚乳的选择
Genetics. 1919 Jul;4(4):364-93. doi: 10.1093/genetics/4.4.364.
3
TRYPTOPHAN, NIACIN, AND INDOLEACETIC ACID IN SEVERAL ENDOSPERM MUTANTS AND STANDARD LINES OF MAIZE.几种玉米胚乳突变体和标准品系中的色氨酸、烟酸和吲哚乙酸
Plant Physiol. 1951 Jul;26(3):494-501. doi: 10.1104/pp.26.3.494.
4
EXPERIMENTS ON THE INHERITANCE OF NIACIN IN CORN (MAIZE).玉米中烟酸遗传的实验
Plant Physiol. 1951 Jul;26(3):475-93. doi: 10.1104/pp.26.3.475.
5
A Morphological Basis for Higher Niacin in Sugary Maize.甜玉米中较高烟酸含量的形态学基础。
Proc Natl Acad Sci U S A. 1952 Sep;38(9):817-22. doi: 10.1073/pnas.38.9.817.
6
The Nature of Gene Action as Shown by Cell-Limited and Cell-Diffusible Gene Products.细胞受限和细胞可扩散基因产物所显示的基因作用本质
Proc Natl Acad Sci U S A. 1947 Dec;33(12):363-5. doi: 10.1073/pnas.33.12.363.
7
The distribution of nicotinic acid in wheat and maize.烟酸在小麦和玉米中的分布。
Proc R Soc Lond B Biol Sci. 1952 Feb 28;139(895):276-87. doi: 10.1098/rspb.1952.0012.

Roles of Embryo and Endosperm in Determining Niacin Content of Starchy and Sugary Maize Endosperms.

作者信息

Teas H J, Anderson E G, Cameron J W

机构信息

KERCKHOFF LABORATORIES OF BIOLOGY, CALIFORNIA INSTITUTE OF TECHNOLOGY, PASADENA, CALIFORNIA.

出版信息

Plant Physiol. 1955 Jul;30(4):334-7. doi: 10.1104/pp.30.4.334.

DOI:10.1104/pp.30.4.334
PMID:16654780
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC540657/
Abstract
摘要