Suppr超能文献

qTSN对水稻穗和剑叶大小的正向影响与分蘖的早期下调有关。

The qTSN Positive Effect on Panicle and Flag Leaf Size of Rice is Associated with an Early Down-Regulation of Tillering.

作者信息

Adriani Dewi E, Lafarge Tanguy, Dardou Audrey, Fabro Aubrey, Clément-Vidal Anne, Yahya Sudirman, Dingkuhn Michael, Luquet Delphine

机构信息

CIRAD, UMR AGAP, F-34398 MontpellierFrance; Faculty of Agriculture, University of Lambung MangkuratBanjarbaru, Indonesia.

CIRAD, UMR AGAP, F-34398 Montpellier France.

出版信息

Front Plant Sci. 2016 Jan 7;6:1197. doi: 10.3389/fpls.2015.01197. eCollection 2015.

Abstract

The qTSN4 was identified as rice QTL (Quantitative Traits Locus) increasing total spikelet number per panicle and flag leaf area but potentially reducing panicle number depending on the environment. So far, this trade-off was mainly observed at grain maturity and not specifically studied in details, limiting the apprehension of the agronomic interest of qTSN4. This study aimed to understand the effect of qTSN4 and of the environment on panicle sizing, its trade-off with panicle number, and finally plant grain production. It compared two high yielding genotypes to their Near Isogenic Lines (NIL) carrying either QTL qTSN4 or qTSN12, two distinct QTLs contributing to the enlarged panicle size, thereafter designated as qTSN. Traits describing C sink (organ appearance rate, size, biomass) and source (leaf area, photosynthesis, sugar availability) were dynamically characterized along plant and/or panicle development within two trials (greenhouse, field), each comparing two treatments contrasting for plant access to light (with or without shading, high or low planting densities). The positive effect of qTSN on panicle size and flag leaf area of the main tiller was confirmed. More precisely, it could be shown that qTSN increased leaf area and internode cross-section, and in some cases of the photosynthetic rate and starch reserves, of the top 3-4 phytomers of the main tiller. This was accompanied by an earlier tillering cessation, that coincided with the initiation of these phytomers, and an enhanced panicle size on the main tiller. Plant leaf area at flowering was not affected by qTSN but fertile tiller number was reduced to an extent that depended on the environment. Accordingly, plant grain production was enhanced by qTSN only under shading in the greenhouse experiment, where panicle number was not affected and photosynthesis and starch storage in internodes was enhanced. The effect of qTSN on rice phenotype was thus expressed before panicle initiation (PI). Whether early tillering reduction or organ oversizing at meristem level is affected first cannot be entirely unraveled. Further studies are needed to better understand any signal involved in this early regulation and the qTSN × Environment interactions underlying its agronomic interest.

摘要

qTSN4被鉴定为水稻数量性状位点(QTL),它能增加每穗总小穗数和剑叶面积,但根据环境不同可能会减少穗数。到目前为止,这种权衡主要在谷物成熟时观察到,尚未进行具体详细研究,这限制了对qTSN4农艺价值的理解。本研究旨在了解qTSN4和环境对穗大小的影响、其与穗数的权衡以及最终对植株籽粒产量的影响。研究比较了两个高产基因型与其携带QTL qTSN4或qTSN12的近等基因系(NIL),这两个不同的QTL都有助于增大穗大小,之后将其指定为qTSN。在两个试验(温室、田间)中,沿着植株和/或穗的发育动态表征了描述碳库(器官出现率、大小、生物量)和源(叶面积、光合作用、糖分可用性)的性状,每个试验都比较了两种因植株光照条件不同而形成对比的处理(有或无遮荫、高或低种植密度)。qTSN对主茎穗大小和剑叶面积的积极作用得到了证实。更确切地说,可以表明qTSN增加了主茎顶部3 - 4个节位的叶面积和节间横截面积,在某些情况下还增加了光合速率和淀粉储备。这伴随着分蘖停止提前,这与这些节位的起始时间一致,并且主茎穗大小增大。开花时植株叶面积不受qTSN影响,但有效分蘖数有所减少,减少程度取决于环境。因此,仅在温室试验的遮荫条件下,qTSN提高了植株籽粒产量,此时穗数不受影响,节间光合作用和淀粉储存增强。qTSN对水稻表型的影响在穗分化(PI)之前就已表现出来。是早期分蘖减少还是分生组织水平上的器官过大先受到影响,目前还无法完全弄清楚。需要进一步研究以更好地理解这种早期调控中涉及的任何信号以及其农艺价值背后的qTSN×环境相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4589/4703761/8a50b33e4f66/fpls-06-01197-g0001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验