Proteomics

Dataset Information

0

Centipedegrass tiller bud and internode proteome


ABSTRACT: This study investigate the differentially expressed proteins in tiller bud and internode between a high tillering mutant and wild type.

INSTRUMENT(S): Q Exactive HF

ORGANISM(S): Eremochloa Ophiuroides

TISSUE(S): Shoot

SUBMITTER: Ling Li  

LAB HEAD: Ling Li

PROVIDER: PXD047559 | Pride | 2024-06-16

REPOSITORIES: Pride

Dataset's files

Source:
Action DRS
Fi07LL_MTN1_J1_7_A4_1_962.RAW.rar Raw
Fi07LL_MTN1_J2_8_B4_1_963.d.rar Other
Fi07LL_MTN1_J3_9_C4_1_964.d.rar Other
Fi07LL_MTN1_Y1_10_D4_1_965.d.rar Other
Fi07LL_MTN1_Y2_11_E4_1_966.d.rar Other
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Publications

Physiological and Proteomic Analyses of <i>mtn1</i> Mutant Reveal Key Players in Centipedegrass Tiller Development.

Xie Chenming C   Chen Rongrong R   Sun Qixue Q   Hao Dongli D   Zong Junqin J   Guo Hailin H   Liu Jianxiu J   Li Ling L  

Plants (Basel, Switzerland) 20240404 7


Tillering directly determines the seed production and propagation capacity of clonal plants. However, the molecular mechanisms involved in the tiller development of clonal plants are still not fully understood. In this study, we conducted a proteome comparison between the tiller buds and stem node of a multiple-tiller mutant <i>mtn1</i> (<i>more tillering number 1</i>) and a wild type of centipedegrass. The results showed significant increases of 29.03% and 27.89% in the first and secondary till  ...[more]

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